Difference between revisions of "Team:Paris Bettencourt"

 
(45 intermediate revisions by 3 users not shown)
Line 1: Line 1:
 
{{Paris_Bettencourt/Templatestop}}
 
{{Paris_Bettencourt/Templatestop}}
{{Paris_Bettencourt/CSS}}
 
  
 
<html>
 
<html>
 
<body>
 
<body>
<div class='textbody h1'>
+
<div id="header1" class="header">
<h1>STAR CORES</h1>
+
    <img src="https://static.igem.org/mediawiki/2018/c/cb/T--Paris_Bettencourt--Home_page.jpg">
 
</div>
 
</div>
 
<div class='text1 img'>
 
<div class='text1 img'>
   <img src="https://static.igem.org/mediawiki/2018/f/f8/T--Paris_Bettencourt--StarCores_Pig.png">
+
   <img src="https://static.igem.org/mediawiki/2018/6/63/T--Paris_Bettencourt--STARCORE_logo.png">
 
</div>
 
</div>
 
<div class='textbody h1'>
 
<div class='textbody h1'>
Line 15: Line 14:
  
 
<div class='textbody'>
 
<div class='textbody'>
<p>Antibiotic overuse in livestock industry is one of the major drivers to the antibiotic resistance evolution; motivating calls to reduce, replace, and re-think the antibiotic usage in animals. Antimicrobial peptides (AMPs) are a promising alternative to conventional antibiotics. Recently, a class of chemically-synthesized, star-shaped AMPs has been shown to exhibit broad-spectrum antimicrobial activity while maintaining biocompatibility with mammalian cells. In this project, we combinatorially fused a set of known AMPs to structurally diverse, self-assembling protein cores to produce star-shaped complexes. Over 200 fusions were designed and expressed in a cell-free system, then screened for activity, biocompatibility, and membrane selectivity. In addition, we selected 4 AMPs for rational mutagenesis (~12000 variants), and a subset of fusions for molecular dynamic modeling, to identify features of surface charge and star geometry that impact AMP performance. Overall, we aim to create a novel class of selective, non-toxic AMPs which are biologically-produced.</p>
+
<p><b>StarCores</b> are these novel, biologically-synhesized, star-shaped Antimicrobial Peptide (AMP). Like antibiotics, AMPs can be used to kill harmful bacteria. Since AMPs attack bacteria differently than conventional antibiotics, <b>the resistance evolution occurs at a much slower rate.</b></br>
 +
 
 +
<p>We designed StarCores in response to the specific needs of veterinarians, farmers, and policymakers in France. Our goal was to provide a specific solution for killing Gram-negative bacteria on pig farms. Over the summer, we successfully designed, produced, tested, and optimized a novel class of bacteria-killing peptides with <b>high activity and reduced toxicity.</b></br>
 +
 
 +
<p>The story of our project unfolds sequentially. For the best experience of our wiki, we invite you to read the sections below in order, starting with <b>Integrated Human Practices (Human Practices I)</b>.</p>
 
</div>
 
</div>
  
 +
<div class='textbody'>
 +
    <div class='grid-container'>
 +
        <div class='large-block'>
 +
            <a href='https://2018.igem.org/Team:Paris_Bettencourt/Human_Practices'>
 +
                <div class='large-block-content'>
 +
                    <img src="https://static.igem.org/mediawiki/2018/5/54/T--Paris_Bettencourt--HP_Firstpage.jpg">
 +
                </div>
 +
                <div>Human Practices I </div>
 +
 +
            </a>
 +
 +
        </div>
 +
    </div>
 +
</div>
 
<div class='textbody '>
 
<div class='textbody '>
 
     <div class='grid-container'>
 
     <div class='grid-container'>
 
         <div class='medium-square-block'>
 
         <div class='medium-square-block'>
 
          
 
          
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Constructs_design'>
+
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Design'>
 
                 <div class='medium-square-block-content'>
 
                 <div class='medium-square-block-content'>
                      
+
                     <img src="https://static.igem.org/mediawiki/2018/0/0d/T--Paris_Bettencourt--Design_FirstPage.png">
 
                 </div>
 
                 </div>
                 <div>Constructs design</div>
+
                 <div>Design</div>
  
 
             </a>
 
             </a>
 
         </div>
 
         </div>
 
         <div class="medium-square-block">
 
         <div class="medium-square-block">
               <a href='https://2018.igem.org/Team:Paris_Bettencourt/Cell-free_expression'>
+
               <a href='https://2018.igem.org/Team:Paris_Bettencourt/Production'>
 
                 <div class='medium-square-block-content'>
 
                 <div class='medium-square-block-content'>
                      
+
                     <img src="https://static.igem.org/mediawiki/2018/7/71/T--Paris_Bettencourt--Production_FirstPage.png">
 
                 </div>
 
                 </div>
                 <div>Cell-free expression</div>
+
                 <div>Production</div>
  
 
             </a>
 
             </a>
 
         </div >
 
         </div >
 
         <div class="medium-square-block">
 
         <div class="medium-square-block">
               <a href='https://2018.igem.org/Team:Paris_Bettencourt/TWIST_modeling'>
+
               <a href='https://2018.igem.org/Team:Paris_Bettencourt/Testing'>
 
                 <div class='medium-square-block-content'>
 
                 <div class='medium-square-block-content'>
                      
+
                     <img src="https://static.igem.org/mediawiki/2018/5/5e/T--Paris_Bettencourt--Testing_FirstPage.png">
 
                 </div>
 
                 </div>
                 <div>TWIST modeling</div>
+
                 <div>Testing</div>
  
 
             </a>
 
             </a>
 
         </div>
 
         </div>
 
         <div class="medium-square-block">
 
         <div class="medium-square-block">
               <a href='https://2018.igem.org/Team:Paris_Bettencourt/Testing'>
+
               <a href='https://2018.igem.org/Team:Paris_Bettencourt/Modeling'>
 
                 <div class='medium-square-block-content'>
 
                 <div class='medium-square-block-content'>
                      
+
                     <img src="https://static.igem.org/mediawiki/2018/3/3d/T--Paris_Bettencourt--Modeling_FirstPage.png">
 
                 </div>
 
                 </div>
                 <div>Testing</div>
+
                 <div>Modeling</div>
  
 
             </a>
 
             </a>
 
         </div>
 
         </div>
 +
                <div class="medium-square-block">
 +
              <a href='https://2018.igem.org/Team:Paris_Bettencourt/Optimization'>
 +
                <div class='medium-square-block-content'>
 +
                    <img src="https://static.igem.org/mediawiki/2018/d/df/T--Paris_Bettencourt--Optimization_FirstPage.png">
 +
                </div>
 +
                <div>Optimization</div>
  
 +
            </a>
 +
        </div>
 
     </div>
 
     </div>
  
Line 66: Line 91:
 
     <div class='grid-container'>
 
     <div class='grid-container'>
 
         <div class='large-block'>
 
         <div class='large-block'>
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Human_Practices/Gold_Integrated'>
+
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Public_Engagement'>
 
                 <div class='large-block-content'>
 
                 <div class='large-block-content'>
                   
+
                  <img src="https://static.igem.org/mediawiki/2018/7/71/T--Paris_Bettencourt--HPII_FirstPage.png">
 
                 </div>
 
                 </div>
                 <div>Human Practices</div>
+
                 <div>Human Practices II (Public Engagement)</div>
  
 
             </a>
 
             </a>
  
        </div>
 
        <div class='large-block'>
 
            <a href='https://2018.igem.org/Team:Paris_Bettencourt/Collaborations'>
 
                <div class='large-block-content'>
 
                   
 
                </div>
 
                <div>Collaborations</div>
 
 
            </a>
 
 
         </div>
 
         </div>
 
     </div>
 
     </div>
 
</div>
 
</div>
 
 
<div class='textbody'>
 
<div class='textbody'>
 
     <div class='grid-container'>
 
     <div class='grid-container'>
 
         <div class='small-block'>
 
         <div class='small-block'>
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Team'>
+
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Members'>
 
                 <div class='small-block-content'>
 
                 <div class='small-block-content'>
                      
+
                     <img src="https://static.igem.org/mediawiki/2018/9/97/T--Paris_Bettencourt--Team_FirstPage.png">
 
                 </div>
 
                 </div>
 
                 <div>Team</div>
 
                 <div>Team</div>
Line 101: Line 116:
 
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Lab_Notebook'>
 
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Lab_Notebook'>
 
                 <div class='small-block-content'>
 
                 <div class='small-block-content'>
                      
+
                     <img src="https://static.igem.org/mediawiki/2018/a/a6/T--Paris_Bettencourt--Lab_NoteBook.png">
 
                 </div>
 
                 </div>
 
                 <div>Lab Notebook</div>
 
                 <div>Lab Notebook</div>
Line 108: Line 123:
 
         </div>
 
         </div>
 
         <div class='small-block'>
 
         <div class='small-block'>
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Improve'>
+
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/BioBricks'>
 
                 <div class='small-block-content'>
 
                 <div class='small-block-content'>
                      
+
                     <img src="https://static.igem.org/mediawiki/2018/3/38/T--Paris_Bettencourt--Bio_Bricks.png">
 
                 </div>
 
                 </div>
                 <div>Parts</div>
+
                 <div>BioBricks</div>
  
 
             </a>
 
             </a>
Line 119: Line 134:
 
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Medal_Criteria'>
 
             <a href='https://2018.igem.org/Team:Paris_Bettencourt/Medal_Criteria'>
 
                 <div class='small-block-content'>
 
                 <div class='small-block-content'>
                      
+
                     <img src="https://static.igem.org/mediawiki/2018/c/ca/T--Paris_Bettencourt--Medal_FirstPage.png">
 
                 </div>
 
                 </div>
 
                 <div>Medal Criteria</div>
 
                 <div>Medal Criteria</div>
Line 129: Line 144:
 
</div>
 
</div>
  
 +
<br>
 +
<br>
 +
<br>
 +
<div>
 +
<div class='textbody'>
 +
  <h3>Giant Jamboree 2018 Results!</h3>
 +
<br>
 +
  <img src="https://static.igem.org/mediawiki/2018/c/ca/T--Paris_Bettencourt--Medal_FirstPage.png" style="float:left;width:100px;height:100px;">
 +
  <b>Gold Medal </b><br>
 +
  Nominations for <b>Best New Composite Part </b> and <b>Best Software</b><br><b><a href="https://synbiobeta.com/cell-free-expression-platforms-enable-new-possibilities-at-igem-and-beyond/">Synbiobeta wrote an article on us! </b>
 +
</div>
 
</body>
 
</body>
  

Latest revision as of 00:50, 8 December 2018

Protein scaffolds for star-shaped antimicrobial peptides

StarCores are these novel, biologically-synhesized, star-shaped Antimicrobial Peptide (AMP). Like antibiotics, AMPs can be used to kill harmful bacteria. Since AMPs attack bacteria differently than conventional antibiotics, the resistance evolution occurs at a much slower rate.

We designed StarCores in response to the specific needs of veterinarians, farmers, and policymakers in France. Our goal was to provide a specific solution for killing Gram-negative bacteria on pig farms. Over the summer, we successfully designed, produced, tested, and optimized a novel class of bacteria-killing peptides with high activity and reduced toxicity.

The story of our project unfolds sequentially. For the best experience of our wiki, we invite you to read the sections below in order, starting with Integrated Human Practices (Human Practices I).




Giant Jamboree 2018 Results!


Gold Medal
Nominations for Best New Composite Part and Best Software
Synbiobeta wrote an article on us!

Centre for Research and Interdisciplinarity (CRI)
Faculty of Medicine Cochin Port-Royal, South wing, 2nd floor
Paris Descartes University
24, rue du Faubourg Saint Jacques
75014 Paris, France
paris-bettencourt-2018@cri-paris.org