(Fixed most width issues) |
(fixed width in home-about but still white spaces on either end) |
||
Line 189: | Line 189: | ||
width: 100vw; | width: 100vw; | ||
max-width: 100%; | max-width: 100%; | ||
− | + | ||
outline: 2px solid #00ff6c; | outline: 2px solid #00ff6c; | ||
outline-offset: -5em; | outline-offset: -5em; | ||
Line 203: | Line 203: | ||
margin-left: auto; | margin-left: auto; | ||
margin-right: auto; | margin-right: auto; | ||
− | + | width:100% | |
text-align: center; | text-align: center; | ||
} | } | ||
Line 237: | Line 237: | ||
margin: 3em 0; | margin: 3em 0; | ||
background-color: #232323; | background-color: #232323; | ||
− | width: 100vw; | + | min-width: 100vw; |
max-width: 100%; | max-width: 100%; | ||
} | } |
Revision as of 23:10, 11 July 2018
3' Suspects Investigating Untranslated regions on 3' end
See Our Workwhat are we doing?
We are developing a new technology platform based on 3'UTR sequence characterisation to control soluble protein expression in E.coli.
We will use E.coli K12 to test our "Proof of Concept" Principle by engineering 3'UTR sequences (Sharma et al, 2011) to interact with either cytosolic proteins or 5'UTR sequences of our gene of interest: trxA and gor. Down regulation of these genes will be quantified by assessing quantitatively GFP signal. Efficiency of down regulation of genes will be quantified by assessing reaction kinetics of Alkaline Phosphatase (AP).