Difference between revisions of "Team:IIT Kanpur/Model"

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<div class=WordSection1>
 
<div class=WordSection1>
 +
 +
<p class=MsoNormal align=center style='text-align:center'><span
 +
style='font-size:72.0pt;line-height:107%;color:#1F4E79'>&nbsp;</span></p>
 +
 +
<p class=MsoNormal align=center style='text-align:center'><span
 +
style='font-size:72.0pt;line-height:107%;color:#1F4E79'>&nbsp;</span></p>
  
 
<p class=MsoNormal align=center style='text-align:center'><span
 
<p class=MsoNormal align=center style='text-align:center'><span
 
style='font-size:72.0pt;line-height:107%;color:#1F4E79'>Modelling</span></p>
 
style='font-size:72.0pt;line-height:107%;color:#1F4E79'>Modelling</span></p>
  
<p class=MsoNormal><span style='font-size:48.0pt;line-height:107%;color:#C55A11'>Overview
+
<p class=MsoNormal align=center style='text-align:center'><span
</span></p>
+
style='font-size:72.0pt;line-height:107%;color:#1F4E79'>&nbsp;</span></p>
 +
 
 +
<p class=MsoNormal>Overview </p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Mathematical
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Mathematical
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<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal><span style='font-size:48.0pt;line-height:107%;color:#FFC000'>Single
+
<p class=MsoNormal><span style='font-size:20.0pt;line-height:107%'>Single Cell
Cell Modelling</span></p>
+
Modelling</span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
width=580 height=373 id="Picture 9" src="Modelling222_files/image001.jpg"
+
width=580 height=373 id="Picture 9" src="Modelling333_files/image001.jpg"
 
alt="https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44177337_161118344832834_5155785162818060288_n.png?_nc_cat=110&amp;oh=9e7779a555a3f3b881a5adfaa566230f&amp;oe=5C581588"></span></p>
 
alt="https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44177337_161118344832834_5155785162818060288_n.png?_nc_cat=110&amp;oh=9e7779a555a3f3b881a5adfaa566230f&amp;oe=5C581588"></span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>Allows
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Allows to
to model our gene regulatory network (GRN) and the extracellular secretion of
+
model our gene regulatory network (GRN) and the extracellular secretion of our enzyme
our enzyme alkyl sulfatase (SdsA1).</span></p>
+
alkyl sulfatase (SdsA1).</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>This
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>This model
model helped us gain insight into our system in order to understand dependence
+
helped us gain insight into our system in order to understand dependence of
of rate of secretion of alkyl sulfatase in media under varying promoter
+
rate of secretion of alkyl sulfatase in media under varying promoter strengths
strengths and secretion efficiencies due to the different secretion
+
and secretion efficiencies due to the different secretion extracellular
extracellular secretion tags PelB and OmpT.</span></p>
+
secretion tags PelB and OmpT.</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>Our
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Our model is
model is based on overexpression of alkyl sulfatase under constitutive
+
based on overexpression of alkyl sulfatase under constitutive promoters from Anderson
promoters from Anderson promoter collection in iGEM  registry. The
+
promoter collection in iGEM  registry. The concentration of our enzyme SdsA1 is
concentration of our enzyme SdsA1 is then predicted using the rates of
+
then predicted using the rates of transcription, translation and degradation
transcription, translation and degradation (of both mRNA and protein) that are
+
(of both mRNA and protein) that are known in literature.</span></p>
known in literature.</span></p>
+
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>Since
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Since under
under a constitutive gene expression is unregulated, it is always on and its
+
a constitutive gene expression is unregulated, it is always on and its strength
strength could be modelled through the transcription rate constant k1.</span></p>
+
could be modelled through the transcription rate constant k1.</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>&nbsp;</span></p>
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
width=372 height=141 id="Picture 5" src="Modelling222_files/image002.png"></span></p>
+
width=372 height=141 id="Picture 5" src="Modelling333_files/image002.png"></span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>&nbsp;</span></p>
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:#2E75B6'>Using
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:#404040'>Using
 
the law of mass action</span></p>
 
the law of mass action</span></p>
  
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<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
width=387 height=108 id="Picture 6" src="Modelling222_files/image003.png"></span></p>
+
width=387 height=108 id="Picture 6" src="Modelling333_files/image003.png"></span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>&nbsp;</span></p>
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal style='margin-bottom:0cm;margin-bottom:.0001pt;line-height:
+
<p class=MsoNormal>1.Transcription rate k1 is estimated from literature.</p>
normal'><span style='font-size:16.0pt;font-family:"Arial",sans-serif'>Transcription
+
rate k1 is estimated from literature.</span></p>
+
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'</span></p>
+
<p class=MsoNormal> </p>
  
<p class=MsoNormal style='margin-bottom:0cm;margin-bottom:.0001pt;line-height:
+
<p class=MsoNormal>2.Translation rate k2 is estimated from the literature</p>
normal'><span style='font-size:16.0pt;font-family:"Arial",sans-serif'>Translation
+
rate k2 is estimated from the literature</span></p>
+
  
<p class=MsoNormal style='margin-bottom:0cm;margin-bottom:.0001pt;line-height:
+
<p class=MsoNormal>&nbsp;</p>
normal'><span style='font-size:16.0pt;font-family:"Arial",sans-serif'>&nbsp;</span></p>
+
  
<p class=MsoNormal style='margin-bottom:0cm;margin-bottom:.0001pt;line-height:
+
<p class=MsoNormal>3.mRNA degradation (d1) and Protein degradation rate (d2)
normal'><span style='font-size:16.0pt;font-family:"Arial",sans-serif'>mRNA
+
are known for Ecoli through literature.</p>
degradation (d1) and Protein degradation rate (d2) are known for Ecoli through
+
literature.</span></p>
+
  
<p class=MsoNormal style='margin-bottom:0cm;margin-bottom:.0001pt;line-height:
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;font-family:
normal'><span style='font-size:16.0pt;font-family:"Arial",sans-serif'>&nbsp;</span></p>
+
"Arial",sans-serif'>&nbsp;</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>&nbsp;</span></p>
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>&nbsp;</span></p>
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>&nbsp;</span></p>
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>Since
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Since SdsA1
SdsA1 (alkyl sulfatase) a extracellular enzyme, it was essential to understand
+
(alkyl sulfatase) a extracellular enzyme, it was essential to understand effect
effect of secretion efficiencies of our enzyme from Ecoli cells, in order to
+
of secretion efficiencies of our enzyme from Ecoli cells, in order to determine
determine concentration of SdsA1 in the media, which would be needed to model
+
concentration of SdsA1 in the media, which would be needed to model our enzyme
our enzyme substrate kinetics in order to understand SDS(Sodium Dodecyl Sulfate
+
substrate kinetics in order to understand SDS(Sodium Dodecyl Sulfate )
) degradation.</span></p>
+
degradation.</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>We
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>We tried to
tried to model our protein secretion using a empirical secretion law used by
+
model our protein secretion using a empirical secretion law used by iGEM Stuttgart
iGEM Stuttgart 2017 team.</span></p>
+
2017 team.</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>  
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>   </span></p>
</span></p>
+
  
 
<p class=MsoNormal><a href="https://static.igem.org/mediawiki/2017/3/31/Secretion.png"><span
 
<p class=MsoNormal><a href="https://static.igem.org/mediawiki/2017/3/31/Secretion.png"><span
style='font-size:16.0pt;line-height:107%;color:black;text-decoration:none'><img
+
style='font-size:16.0pt;line-height:107%;color:windowtext;text-decoration:none'><img
 
border=0 width=479 height=70 id="Picture 4"
 
border=0 width=479 height=70 id="Picture 4"
src="Modelling222_files/image004.png"
+
src="Modelling333_files/image004.png"
 
alt="https://static.igem.org/mediawiki/2017/3/31/Secretion.png"></span></a></p>
 
alt="https://static.igem.org/mediawiki/2017/3/31/Secretion.png"></span></a></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>&nbsp;</span></p>
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal><span style='font-size:22.0pt;line-height:107%;color:black'>r</span><sub><span
+
<p class=MsoNormal><span style='font-size:14.0pt;line-height:107%'>r<sub>secretion</sub>
style='font-size:16.0pt;line-height:107%;color:black'>secretion</span></sub><span
+
: secretion rate </span></p>
style='font-size:16.0pt;line-height:107%;color:black'> : secretion rate </span></p>
+
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>[enzyme]
+
<p class=MsoNormal><span style='font-size:14.0pt;line-height:107%'>[enzyme] :
: enzyme concentration </span></p>
+
enzyme concentration </span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>s
+
<p class=MsoNormal><span style='font-size:14.0pt;line-height:107%'>s :
: secretion efficiency </span></p>
+
secretion efficiency </span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:black'>t
+
<p class=MsoNormal><span style='font-size:14.0pt;line-height:107%'>t : time </span></p>
: time </span></p>
+
 
 +
<p class=MsoNormal>&nbsp;</p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Here the
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Here the
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<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal align=center style='text-align:center'><span
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
style='font-size:16.0pt;line-height:107%'><img border=0 width=602 height=317
+
border=0 width=602 height=317 id="Picture 8"
id="Picture 8" src="Modelling222_files/image005.png"
+
src="Modelling333_files/image005.png"
 
alt="https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44185937_2064200740556003_6694159164534423552_n.png?_nc_cat=105&amp;oh=040a1b04709ea79fa27d8959210921b6&amp;oe=5C482425"></span></p>
 
alt="https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44185937_2064200740556003_6694159164534423552_n.png?_nc_cat=105&amp;oh=040a1b04709ea79fa27d8959210921b6&amp;oe=5C482425"></span></p>
  
<p class=MsoNormal align=center style='text-align:center'><span
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Fig 1.Simbiology
style='font-size:16.0pt;line-height:107%'>Fig 1.Simbiology implementation of
+
implementation of our Model</span></p>
our Model</span></p>
+
  
<p class=MsoNormal align=center style='text-align:center'><span
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
style='font-size:16.0pt;line-height:107%'><img border=0 width=560 height=363
+
border=0 width=560 height=363 id="Picture 2"
id="Picture 2" src="Modelling222_files/image006.png"
+
src="Modelling333_files/image006.png"
 
alt="https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44351672_551274411976028_2657043464260157440_n.png?_nc_cat=102&amp;oh=ebd37b04550aef2d5e8d2f15364d230b&amp;oe=5C50AC06"></span></p>
 
alt="https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44351672_551274411976028_2657043464260157440_n.png?_nc_cat=102&amp;oh=ebd37b04550aef2d5e8d2f15364d230b&amp;oe=5C50AC06"></span></p>
  
<p class=MsoNormal align=center style='text-align:center'><span
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Fig.2 Effect
style='font-size:16.0pt;line-height:107%'>Fig.2 Effect of secretion efficiency
+
of secretion efficiency on enzyme production</span></p>
on enzyme production</span></p>
+
  
<p class=MsoNormal align=center style='text-align:center'><span
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
style='font-size:16.0pt;line-height:107%'><img border=0 width=560 height=374
+
border=0 width=560 height=374 id="Picture 7"
id="Picture 7" src="Modelling222_files/image007.png"
+
src="Modelling333_files/image007.png"
 
alt="https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44203308_1781628528626872_7513042899114655744_n.png?_nc_cat=111&amp;oh=9400d852e101215b021771e1a18d90f4&amp;oe=5C3F00B1"></span></p>
 
alt="https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44203308_1781628528626872_7513042899114655744_n.png?_nc_cat=111&amp;oh=9400d852e101215b021771e1a18d90f4&amp;oe=5C3F00B1"></span></p>
  
<p class=MsoNormal align=center style='text-align:center'><span
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Fig.3 Effect
style='font-size:16.0pt;line-height:107%'>Fig.3 Effect of promoter strength on
+
of promoter strength on enzyme production</span></p>
enzyme production</span></p>
+
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
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style='font-size:20.0pt;line-height:107%;color:#C00000'>___________________________________________________________________________________________________________________________</span></p>
 
style='font-size:20.0pt;line-height:107%;color:#C00000'>___________________________________________________________________________________________________________________________</span></p>
  
<p class=MsoNormal><span style='font-size:48.0pt;line-height:107%;color:#FFC000'>Enzyme
+
<p class=MsoNormal><span style='font-size:18.0pt;line-height:107%'>Enzyme
 
Kinetics</span></p>
 
Kinetics</span></p>
 +
 +
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>We use the
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>We use the
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<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=252 height=80 id="Picture 1"
 
border=0 width=252 height=80 id="Picture 1"
src="Modelling222_files/image008.jpg"></span></p>
+
src="Modelling333_files/image008.jpg"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>     </span><span
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>     </span><span
 
style='font-size:16.0pt;line-height:107%'><img border=0 width=178 height=93
 
style='font-size:16.0pt;line-height:107%'><img border=0 width=178 height=93
id="Picture 10" src="Modelling222_files/image009.jpg"> </span></p>
+
id="Picture 10" src="Modelling333_files/image009.jpg"> </span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Here, <em><span
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Here, <em><span
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<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=511 height=59 id="Picture 11"
 
border=0 width=511 height=59 id="Picture 11"
src="Modelling222_files/image010.jpg"></span></p>
+
src="Modelling333_files/image010.jpg"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Here k1 is
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Here k1 is
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<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=254 height=145 id="Picture 13"
 
border=0 width=254 height=145 id="Picture 13"
src="Modelling222_files/image011.png"></span></p>
+
src="Modelling333_files/image011.png"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>We assumed a
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>We assumed a
Line 321: Line 358:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal><span style='font-size:22.0pt;line-height:107%;color:#C00000'>_____________________________________________________________________________________________________________________________</span></p>
+
<p class=MsoNormal><span style='color:#C00000'>_____________________________________________________________________________________________________________________________</span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal><span style='font-size:48.0pt;line-height:107%;color:#FFC000'>Continuous
+
<p class=MsoNormal><span style='font-size:18.0pt;line-height:107%'>Continuous
 
Culture Modelling</span></p>
 
Culture Modelling</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
+
<p class=MsoNormal><img width=273 height=339
 
+
src="Modelling333_files/image012.jpg" align=left hspace=12
<p class=MsoNormal><img width=273 height=358
+
src="Modelling222_files/image012.jpg" align=left hspace=12
+
 
alt="https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44236260_489616118186439_8807087846427983872_n.png?_nc_cat=105&amp;oh=12547d5feeea7af7a9a5ca9f30244400&amp;oe=5C52B499"></p>
 
alt="https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44236260_489616118186439_8807087846427983872_n.png?_nc_cat=105&amp;oh=12547d5feeea7af7a9a5ca9f30244400&amp;oe=5C52B499"></p>
  
<p class=MsoNormal align=center style='text-align:center'><span
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
+
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
Line 372: Line 406:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=672 height=66 id="Picture 25"
 
border=0 width=672 height=66 id="Picture 25"
src="Modelling222_files/image013.jpg"></span></p>
+
src="Modelling333_files/image013.jpg"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>where: <br>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>where: <br>
Line 414: Line 448:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>                       
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>                       
 
</span><span style='font-size:16.0pt;line-height:107%'><img border=0 width=622
 
</span><span style='font-size:16.0pt;line-height:107%'><img border=0 width=622
height=76 id="Picture 26" src="Modelling222_files/image014.jpg"></span><span
+
height=76 id="Picture 26" src="Modelling333_files/image014.jpg"></span><span
 
style='font-size:16.0pt;line-height:107%'>     </span></p>
 
style='font-size:16.0pt;line-height:107%'>     </span></p>
  
<p class=MsoNormal><img width=81 height=43 src="Modelling222_files/image015.jpg"
+
<p class=MsoNormal><img width=81 height=43 src="Modelling333_files/image015.jpg"
 
align=left hspace=12><span style='font-size:16.0pt;line-height:107%'>where: <br>
 
align=left hspace=12><span style='font-size:16.0pt;line-height:107%'>where: <br>
 
<br>
 
<br>
Line 469: Line 503:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=600 height=75 id="Picture 27"
 
border=0 width=600 height=75 id="Picture 27"
src="Modelling222_files/image016.png"></span></p>
+
src="Modelling333_files/image016.png"></span></p>
  
<p class=MsoNormal style='line-height:normal'><span style='font-size:16.0pt;
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;font-family:
font-family:"Times New Roman",serif'>where </span><i><span style='font-size:
+
"Times New Roman",serif'>where </span><i><span style='font-size:16.0pt;
16.0pt;font-family:"MathJax_Math",serif'>Y</span></i><span style='font-size:
+
line-height:107%;font-family:"MathJax_Math",serif'>Y</span></i><span
16.0pt;font-family:"Times New Roman",serif'> is known as the <i>yield constant</i>.</span></p>
+
style='font-size:16.0pt;line-height:107%;font-family:"Times New Roman",serif'>
 +
is known as the <i>yield constant</i>.</span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Here</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Here</span></p>
Line 482: Line 517:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=253 height=66 id="Picture 20"
 
border=0 width=253 height=66 id="Picture 20"
src="Modelling222_files/image017.png"></span></p>
+
src="Modelling333_files/image017.png"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>In the
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>In the
Line 505: Line 540:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=602 height=63 id="Picture 28"
 
border=0 width=602 height=63 id="Picture 28"
src="Modelling222_files/image018.jpg"></span></p>
+
src="Modelling333_files/image018.jpg"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Assuming every
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Assuming every
Line 514: Line 549:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=602 height=65 id="Picture 29"
 
border=0 width=602 height=65 id="Picture 29"
src="Modelling222_files/image019.jpg"></span></p>
+
src="Modelling333_files/image019.jpg"></span></p>
  
<p><span style='font-size:16.0pt'>where </span><span class=mi><nobr><span role=math
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>where </span><span
style='display:inline-block' id=MathJax-Span-226><i><span style='font-size:
+
class=mi><nobr><span role=math style='display:inline-block'
16.0pt;font-family:"MathJax_Math",serif'><span style='display:inline-block'><span
+
id=MathJax-Span-226><i><span style='font-size:16.0pt;line-height:107%;
 +
font-family:"MathJax_Math",serif'><span style='display:inline-block'><span
 
id=MathJax-Element-23-Frame><span style='clip:rect(2.035em, 1000em, 2.834em, -1000em)'><span
 
id=MathJax-Element-23-Frame><span style='clip:rect(2.035em, 1000em, 2.834em, -1000em)'><span
 
id=MathJax-Span-227><span id=MathJax-Span-228>x</span></span></span></i><span
 
id=MathJax-Span-227><span id=MathJax-Span-228>x</span></span></span></i><span
style='display:inline-block'></span><span style='font-size:16.0pt'></span></span></span></span></nobr></span>
+
style='display:inline-block'></span><span style='font-size:16.0pt;line-height:
is the concentration of organisms in the vessel</span></p>
+
107%'></span></span></span></span></nobr></span> is the concentration of
 +
organisms in the vessel</span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal style='margin-bottom:0cm;margin-bottom:.0001pt;line-height:
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;font-family:
normal'><span style='font-size:16.0pt;font-family:"Times New Roman",serif'>&nbsp;</span></p>
+
"Times New Roman",serif'>&nbsp;</span></p>
  
<p class=MsoNormal style='line-height:normal'><b><span style='font-size:16.0pt;
+
<p class=MsoNormal><b><span style='font-size:16.0pt;line-height:107%;
font-family:"Times New Roman",serif;color:#00B050'>1. Changes in concentration
+
font-family:"Times New Roman",serif'>1. Changes in concentration of organism</span></b></p>
of organism</span></b></p>
+
  
<p class=MsoNormal style='line-height:normal'><span style='font-size:16.0pt;
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;font-family:
font-family:"Times New Roman",serif'>In a continuous culture, combining growth (1)
+
"Times New Roman",serif'>In a continuous culture, combining growth (1) and
and washout rate (5) we have the net rate of increase is therefore:</span></p>
+
washout rate (5) we have the net rate of increase is therefore:</span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
Line 541: Line 577:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=595 height=49 id="Picture 39"
 
border=0 width=595 height=49 id="Picture 39"
src="Modelling222_files/image020.jpg"></span></p>
+
src="Modelling333_files/image020.jpg"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
Line 547: Line 583:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=601 height=70 id="Picture 30"
 
border=0 width=601 height=70 id="Picture 30"
src="Modelling222_files/image021.jpg"></span></p>
+
src="Modelling333_files/image021.jpg"></span></p>
  
<p><b><span style='font-size:16.0pt;color:#00B050'>2. Changes in substrate
+
<p class=MsoNormal><b><span style='font-size:16.0pt;line-height:107%'>2.
concentration</span></b></p>
+
Changes in substrate concentration</span></b></p>
  
<p><span style='font-size:16.0pt'>Assuming  substrate enters the vessel at a
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>Assuming  substrate
concentration </span><span class=mi><nobr><span role=math style='display:inline-block'
+
enters the vessel at a concentration </span><span class=mi><nobr><span role=math
id=MathJax-Span-347><i><span style='font-size:16.0pt;font-family:"MathJax_Math",serif'><span
+
style='display:inline-block' id=MathJax-Span-347><i><span style='font-size:
 +
16.0pt;line-height:107%;font-family:"MathJax_Math",serif'><span
 
style='display:inline-block'><span id=MathJax-Element-33-Frame><span
 
style='display:inline-block'><span id=MathJax-Element-33-Frame><span
 
style='clip:rect(1.484em, 1000em, 2.692em, -1000em)'><span id=MathJax-Span-348><span
 
style='clip:rect(1.484em, 1000em, 2.692em, -1000em)'><span id=MathJax-Span-348><span
Line 561: Line 598:
 
id=MathJax-Span-352><span id=MathJax-Span-353>i</span><span
 
id=MathJax-Span-352><span id=MathJax-Span-353>i</span><span
 
id=MathJax-Span-354>n</span></span></span></i></span></span><span
 
id=MathJax-Span-354>n</span></span></span></i></span></span><span
style='display:inline-block'><span style='font-size:16.0pt'></span></span></span></span></span></span></span></nobr></span>,
+
style='display:inline-block'><span style='font-size:16.0pt;line-height:107%'></span></span></span></span></span></span></span></nobr></span>,
 
consumed by the bacterial cell in the vessel and then exits the vessel at
 
consumed by the bacterial cell in the vessel and then exits the vessel at
 
concentration </span><span class=mi><nobr><span role=math style='display:inline-block'
 
concentration </span><span class=mi><nobr><span role=math style='display:inline-block'
id=MathJax-Span-355><i><span style='font-size:16.0pt;font-family:"MathJax_Math",serif'><span
+
id=MathJax-Span-355><i><span style='font-size:16.0pt;line-height:107%;
style='display:inline-block'><span id=MathJax-Element-34-Frame><span
+
font-family:"MathJax_Math",serif'><span style='display:inline-block'><span
style='clip:rect(1.484em, 1000em, 2.692em, -1000em)'><span id=MathJax-Span-356><span
+
id=MathJax-Element-34-Frame><span style='clip:rect(1.484em, 1000em, 2.692em, -1000em)'><span
id=MathJax-Span-357><span style='display:inline-block'><span style='clip:rect(3.097em, 1000em, 4.169em, -1000em)'><span
+
id=MathJax-Span-356><span id=MathJax-Span-357><span style='display:inline-block'><span
id=MathJax-Span-358>S</span></span><span id=MathJax-Span-359><span
+
style='clip:rect(3.097em, 1000em, 4.169em, -1000em)'><span id=MathJax-Span-358>S</span></span><span
id=MathJax-Span-360><span id=MathJax-Span-361>o</span><span
+
id=MathJax-Span-359><span id=MathJax-Span-360><span id=MathJax-Span-361>o</span><span
 
id=MathJax-Span-362>u</span><span id=MathJax-Span-363>t</span></span></span></i></span></span><span
 
id=MathJax-Span-362>u</span><span id=MathJax-Span-363>t</span></span></span></i></span></span><span
style='display:inline-block'><span style='font-size:16.0pt'></span></span></span></span></span></span></span></nobr></span>.
+
style='display:inline-block'><span style='font-size:16.0pt;line-height:107%'></span></span></span></span></span></span></span></nobr></span>.
 
The net rate of change is therefore:</span></p>
 
The net rate of change is therefore:</span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=414 height=87 id="Picture 35"
 
border=0 width=414 height=87 id="Picture 35"
src="Modelling222_files/image022.png"></span></p>
+
src="Modelling333_files/image022.png"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
Line 582: Line 619:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=602 height=226 id="Picture 32"
 
border=0 width=602 height=226 id="Picture 32"
src="Modelling222_files/image023.jpg"></span></p>
+
src="Modelling333_files/image023.jpg"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
Line 639: Line 676:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=602 height=125 id="Picture 33"
 
border=0 width=602 height=125 id="Picture 33"
src="Modelling222_files/image024.jpg"></span></p>
+
src="Modelling333_files/image024.jpg"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>So the two parameters
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>So the two parameters
Line 684: Line 721:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal align=center style='text-align:center'><span
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>We use
style='font-size:16.0pt;line-height:107%'>We use values of these constants as
+
values of these constants as referenced here by iGEM Manchester 2017.</span></p>
referenced here by iGEM Manchester 2017.</span></p>
+
  
<p class=MsoNormal align=center style='text-align:center'><span
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
style='font-size:16.0pt;line-height:107%'><img border=0 width=602 height=259
+
border=0 width=602 height=259 id="Picture 34"
id="Picture 34" src="Modelling222_files/image025.jpg"></span></p>
+
src="Modelling333_files/image025.jpg"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
Line 701: Line 737:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=414 height=87 id="Picture 36"
 
border=0 width=414 height=87 id="Picture 36"
src="Modelling222_files/image022.png"></span></p>
+
src="Modelling333_files/image022.png"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>So there two
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>So there two
Line 727: Line 763:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal style='line-height:normal'><span style='font-size:16.0pt;
+
<p class=MsoNormal><span style='font-size:18.0pt;line-height:107%;font-family:
font-family:"Times New Roman",serif'>Cost Estimation</span></p>
+
"Times New Roman",serif'>Cost Estimation</span></p>
  
<p class=MsoNormal style='line-height:normal'><span style='font-size:16.0pt;
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;font-family:
font-family:"Times New Roman",serif'>In order to achieve economically viable
+
"Times New Roman",serif'>In order to achieve economically viable bioreactor we
bioreactor we need to use a cheap easily available source of growth medium like
+
need to use a cheap easily available source of growth medium like molasses.</span></p>
molasses.</span></p>
+
  
<p style='margin-left:30.0pt'><span style='font-size:16.0pt'>-Molasses cost
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>-Molasses
$0.07/kg</span></p>
+
cost $0.07/kg</span></p>
  
<p style='margin-left:30.0pt'><span style='font-size:16.0pt'>-The density of
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>-The density
molasses is roughly 1.4 kg/L</span></p>
+
of molasses is roughly 1.4 kg/L</span></p>
  
<p style='margin-left:30.0pt'><span style='font-size:16.0pt'>-Therefore, 1 L of
+
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>-Therefore,
molasses will cost $0.07 x 1.4 = $0.098</span></p>
+
1 L of molasses will cost $0.07 x 1.4 = $0.098</span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
Line 748: Line 783:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=438 height=66 id="Picture 37"
 
border=0 width=438 height=66 id="Picture 37"
src="Modelling222_files/image026.png"></span></p>
+
src="Modelling333_files/image026.png"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'><img
 
border=0 width=433 height=148 id="Picture 38"
 
border=0 width=433 height=148 id="Picture 38"
src="Modelling222_files/image027.png"></span></p>
+
src="Modelling333_files/image027.png"></span></p>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
Line 777: Line 812:
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
  
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%;color:#1F4E79'>Based
+
<h1><span style='color:windowtext'>Based on these rough estimate of prices we
on these rough estimate of prices we can estimate our yearly cost of operation.</span></p>
+
can estimate our yearly cost of operation.</span></h1>
  
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
 
<p class=MsoNormal><span style='font-size:16.0pt;line-height:107%'>&nbsp;</span></p>
Line 822: Line 857:
 
<p class=MsoNormal><span style='font-size:20.0pt;line-height:107%;color:#C00000'>___________________________________________________________________________________________________________________________</span></p>
 
<p class=MsoNormal><span style='font-size:20.0pt;line-height:107%;color:#C00000'>___________________________________________________________________________________________________________________________</span></p>
  
<p class=MsoNormal><i><span style='font-size:48.0pt;line-height:107%;
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<p class=MsoNormal><i><span style='font-size:18.0pt;line-height:107%'>References:</span></i></p>
color:#C55A11'>References:</span></i></p>
+
  
<p class=MsoNormal><span class=MsoSubtleEmphasis>*Towards the Identification of
+
<p class=MsoNormal><span class=MsoSubtleEmphasis>1.Towards the Identification
Type II Secretion Signals in a Nonacylated Variant of Pullulanase from Klebsiella
+
of Type II Secretion Signals in a Nonacylated Variant of Pullulanase from Klebsiella
 
oxytoca (2005), Olivera Franceti&#263; and Anthony P. Pugsley.</span></p>
 
oxytoca (2005), Olivera Franceti&#263; and Anthony P. Pugsley.</span></p>
  
<p class=MsoNormal><span class=MsoSubtleEmphasis>*http://www.bg.ic.ac.uk/research/g.stan/2010_Course_MiB_article.pdf,
+
<p class=MsoNormal><span class=MsoSubtleEmphasis>2.http://www.bg.ic.ac.uk/research/g.stan/2010_Course_MiB_article.pdf,
 
Accessed 04/08/2017.</span></p>
 
Accessed 04/08/2017.</span></p>
  
 
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<p class=MsoNormal style='margin-bottom:0cm;margin-bottom:.0001pt;line-height:
normal'><span class=MsoSubtleEmphasis>*</span><span class=MsoSubtleEmphasis>Commercial
+
normal'><span class=MsoSubtleEmphasis>3.</span><span class=MsoSubtleEmphasis>Commercial
 
Laundry Water CharacterisationJ. K. Braga*, M. B. A. Varesche</span></p>
 
Laundry Water CharacterisationJ. K. Braga*, M. B. A. Varesche</span></p>
  
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normal'><span class=MsoSubtleEmphasis>São Carlos, Brazil</span></p>
 
normal'><span class=MsoSubtleEmphasis>São Carlos, Brazil</span></p>
  
<p class=MsoNormal><span class=MsoSubtleEmphasis>*Guy-Bart Stan. Modelling in
+
<p class=MsoNormal><span class=MsoSubtleEmphasis>4.Guy-Bart Stan. Modelling in
 
Biology. Lecture notes, 2017. </span></p>
 
Biology. Lecture notes, 2017. </span></p>
  
<p class=MsoNormal><span class=MsoSubtleEmphasis>*https://math.la.asu.edu/~halsmith/bacteriagrow.pdf</span></p>
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<p class=MsoNormal><span class=MsoSubtleEmphasis>5.https://math.la.asu.edu/~halsmith/bacteriagrow.pdf</span></p>
  
 
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Revision as of 01:31, 18 October 2018

 

 

Modelling

 

Overview

Mathematical modelling is fundamental to synthetic biology, a tool that allows for deeper understanding of biological systems, acting as a link between the conception and the physical realisation of a biological circuit. Being able stimulate and understand our system behaviour before actual implementation saves both time and resources.

 

 

Through our modelling we tried to gain insight into our system so that we could improve it and make it realistically achievable.

We tried to describe the whole system with a mathematical system of linear ODEs which could characterizes the expression and secretion of all enzymes, the associated substrate – enzyme kinetics.

In order to realize the long term goal of developing a detergent biodegradation device for household and commercial use we tried to implement continuous culture modelling on our bioreactor design in order to estimate yearly cost of detergent biodegradation.

 

 

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Single Cell Modelling

https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44177337_161118344832834_5155785162818060288_n.png?_nc_cat=110&oh=9e7779a555a3f3b881a5adfaa566230f&oe=5C581588

Allows to model our gene regulatory network (GRN) and the extracellular secretion of our enzyme alkyl sulfatase (SdsA1).

This model helped us gain insight into our system in order to understand dependence of rate of secretion of alkyl sulfatase in media under varying promoter strengths and secretion efficiencies due to the different secretion extracellular secretion tags PelB and OmpT.

Our model is based on overexpression of alkyl sulfatase under constitutive promoters from Anderson promoter collection in iGEM  registry. The concentration of our enzyme SdsA1 is then predicted using the rates of transcription, translation and degradation (of both mRNA and protein) that are known in literature.

Since under a constitutive gene expression is unregulated, it is always on and its strength could be modelled through the transcription rate constant k1.

 

 

Using the law of mass action

 

 

1.Transcription rate k1 is estimated from literature.

 

2.Translation rate k2 is estimated from the literature

 

3.mRNA degradation (d1) and Protein degradation rate (d2) are known for Ecoli through literature.

 

 

 

 

Since SdsA1 (alkyl sulfatase) a extracellular enzyme, it was essential to understand effect of secretion efficiencies of our enzyme from Ecoli cells, in order to determine concentration of SdsA1 in the media, which would be needed to model our enzyme substrate kinetics in order to understand SDS(Sodium Dodecyl Sulfate ) degradation.

We tried to model our protein secretion using a empirical secretion law used by iGEM Stuttgart 2017 team.

  

https://static.igem.org/mediawiki/2017/3/31/Secretion.png

 

rsecretion : secretion rate

[enzyme] : enzyme concentration

s : secretion efficiency

t : time

 

Here the secretion efficiency is a value between zero and one .

 

 

Since reliable data on expression of SdsA1 and its extracellular expression in Ecoli was not available we concluded that our model could only provide a qualitative understanding various factors on these.

 

 

 

https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44185937_2064200740556003_6694159164534423552_n.png?_nc_cat=105&oh=040a1b04709ea79fa27d8959210921b6&oe=5C482425

Fig 1.Simbiology implementation of our Model

https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44351672_551274411976028_2657043464260157440_n.png?_nc_cat=102&oh=ebd37b04550aef2d5e8d2f15364d230b&oe=5C50AC06

Fig.2 Effect of secretion efficiency on enzyme production

https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44203308_1781628528626872_7513042899114655744_n.png?_nc_cat=111&oh=9400d852e101215b021771e1a18d90f4&oe=5C3F00B1

Fig.3 Effect of promoter strength on enzyme production

 

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Enzyme Kinetics

 

We use the simple Michaelis-Menten formula to describe our enzymes’ kinetics.

      

Here, Vmax represents the maximum velocity achieved by the system, at maximum (saturating) substrate concentrations. KM (the Michaelis constant; sometimes represented as KS instead) is the substrate concentration at which the reaction velocity is 50% of the Vmax. [S] is the concentration of the substrate S.

Our enzyme (E) being SDS, substrate S being SdsA1 and P being our final product 1-Dodecanol.

Here k1 is rate of forward and k-1 being rate of backword reactions and k2 being rate of product formation.

In terms of specific Michaelis-Menten reaction, these constants are quoted in the literature as:

We assumed a average SDS concentration of 5-10 mg/L in domestic wastewater discharges.

 

 

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Continuous Culture Modelling

https://scontent-bom1-1.xx.fbcdn.net/v/t1.15752-9/44236260_489616118186439_8807087846427983872_n.png?_nc_cat=105&oh=12547d5feeea7af7a9a5ca9f30244400&oe=5C52B499

 

 

 

 

 

 

 

 

Fig4. Our SDS biodegradation chemostat illustration.

 

In order to understand if our project could be implemented in a real world we decided to check its economic sustainability by trying to estimate the yearly cost of operation of our bioreactor.

To do so we implement a model based on previous model developed by iGEM 2017 Manchester team who were trying to estimate cost of chemostat operation for cleaning Phosphate in wastewater.

The growth of bacteria in its exponential phase can be represented in the following exponential growth equation:

where:
x is the bacteria concentration (dry weight mass/unit volume) at time t
μ is the specific growth rate
td is the doubling time (time required for the concentration of organism to double)

Monod showed that there is a relationship between the specific growth rate and the concentration of a limiting growth substrate that can be represented in this equation:

                             

where:

s the concentration of a limiting growth substrate
μmax is the maximum growth rate (growth rate when organism is placed in excess nutrients without any limiting factors)

Ks is the saturation constant – the value of s when:                                                            

 

 

 

Bacterial  growth and utilization of substrate is depicted by the Monod by the equation:

where Y is known as the yield constant.

Here

 

In the chemostat fresh growth medium is added into the vessel at a steady flow-rate (F) and culture liquid exits at the same rate and the growth medium is uniformly dispersed. The rate of nutrient is exchange is given by the dilution rate (D):

Assuming every organism will have an equal probability of leaving the vessel within a given time. The wash-out rate (rate in which organism initially present in the vessel will be washed out) can be expressed as:

where x is the concentration of organisms in the vessel

 

 

1. Changes in concentration of organism

In a continuous culture, combining growth (1) and washout rate (5) we have the net rate of increase is therefore:

 

 

2. Changes in substrate concentration

Assuming  substrate enters the vessel at a concentration Sin, consumed by the bacterial cell in the vessel and then exits the vessel at concentration Sout. The net rate of change is therefore:

 

 

 

When dx/dt and ds/dt is 0, the system is said to be in a ‘steady state’ because the concentration of organism and substrate within the continuous culture is kept constant. The values of steady state x and s, designated as x~ and s~ are expressed as:

 

So the two parameters D and Sin control the steady state within the chemostat. Since we have been also using E.coli for SDS degradation we use values constants of (growth constant ) μmax, Ks and Y same as used by team iGEM Manchester 2017.

 

We use values of these constants as referenced here by iGEM Manchester 2017.

 

 

Finally output is modelled through the equation:

So there two design parameters in our bioreactor design model required for consideration. D (dilution rate) and Sin (initial substrate concentration)

 

Cost Estimation

In order to achieve economically viable bioreactor we need to use a cheap easily available source of growth medium like molasses.

-Molasses cost $0.07/kg

-The density of molasses is roughly 1.4 kg/L

-Therefore, 1 L of molasses will cost $0.07 x 1.4 = $0.098

 

 

1-Dodecanol manufactured by conventional methods usually is contaminated by long carbon chain compounds, hence are associated with expensive purification costs. The low downstream processing costs of our final product 1-dodecanol obtained from bacterial degradation of SDS may help us cut down our costs, hence this could lead to development of economically viable product.

 

So based our model we get the necessary cost for production of 1 kg of E.coli that would be needed for SDS degradation.

Also market price of detergent grade SDS is about Rs 160/kg = $2.18

 And price of of 1-dodecanol (98%) is about Rs 9070/kg =123.3

 

Based on these rough estimate of prices we can estimate our yearly cost of operation.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

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References:

1.Towards the Identification of Type II Secretion Signals in a Nonacylated Variant of Pullulanase from Klebsiella oxytoca (2005), Olivera Francetić and Anthony P. Pugsley.

2.http://www.bg.ic.ac.uk/research/g.stan/2010_Course_MiB_article.pdf, Accessed 04/08/2017.

3.Commercial Laundry Water CharacterisationJ. K. Braga*, M. B. A. Varesche

Department of Hydraulics and Sanitation, Engineering School of São Carlos, São Paulo University,

São Carlos, Brazil

4.Guy-Bart Stan. Modelling in Biology. Lecture notes, 2017.

5.https://math.la.asu.edu/~halsmith/bacteriagrow.pdf