Experiment 4: Glyoxylate Shunt
Introduce glyoxylate enzymes responsible for the shunt
(27 intermediate revisions not shown) | |||
Line 130: | Line 130: | ||
} | } | ||
#interview,#presentation,#article, #interview1, #presentation1,#article1 | #interview,#presentation,#article, #interview1, #presentation1,#article1 | ||
- | {margin-top:20px;width: | + | {margin-top:20px;width:23%;margin-right:10px;float:left;height:230px; border:2px solid; |
border-radius:15px;font-family:"Trebuchet MS", Helvetica, sans-serif;} | border-radius:15px;font-family:"Trebuchet MS", Helvetica, sans-serif;} | ||
#interview | #interview | ||
- | {margin-left: | + | {margin-left:0px;background:#e32e51;} |
#interview1 | #interview1 | ||
- | {margin-left: | + | {margin-left:17px;background:#B0B0B0;} |
#presentation{background:#B0B0B0;} | #presentation{background:#B0B0B0;} | ||
#article1 | #article1 | ||
Line 141: | Line 141: | ||
#article,#presentation1 | #article,#presentation1 | ||
{background:#e32e51;} | {background:#e32e51;} | ||
- | #art-desc,#pre-desc,#int-desc{width:50%;float:right;margin-right: | + | #art-desc,#pre-desc,#int-desc{width:50%;float:right;margin-right:7px;} |
- | #art-img,#pre-img,#int-img{width:45%;float:left;margin-left: | + | #art-img,#pre-img,#int-img{width:45%;float:left;margin-left:4px;} |
#art-desc-text,#pre-desc-text,#int-desc-text{float:right;} | #art-desc-text,#pre-desc-text,#int-desc-text{float:right;} | ||
h3,h1,#yo{margin-left:10px;font-family:"Trebuchet MS", Helvetica, sans-serif;} | h3,h1,#yo{margin-left:10px;font-family:"Trebuchet MS", Helvetica, sans-serif;} | ||
Line 182: | Line 182: | ||
<li><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/Wetlab">Wetlab</a> | <li><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/Wetlab">Wetlab</a> | ||
<ul> | <ul> | ||
+ | <li><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/experiment">Experiments</a></li> | ||
<li><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/notebook">Notebook</a></li> | <li><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/notebook">Notebook</a></li> | ||
<li><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/protocols">Protocols</a></li> | <li><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/protocols">Protocols</a></li> | ||
Line 212: | Line 213: | ||
<br><br><br><div id="slide"><h1>Experiments</h1><p id="yo"><i><b>Summary of experiments done this summer</b></i> - The HKUST iGEM 2013 carried out a lot of experiments this summer, including regular plasmid construction, PCR, and mutagenesis. We listed the main experiments done under each module in a clear, forward way. </p><br></div> | <br><br><br><div id="slide"><h1>Experiments</h1><p id="yo"><i><b>Summary of experiments done this summer</b></i> - The HKUST iGEM 2013 carried out a lot of experiments this summer, including regular plasmid construction, PCR, and mutagenesis. We listed the main experiments done under each module in a clear, forward way. </p><br></div> | ||
- | <div id=" | + | <div id="interview1"><h3>Experiment 1: Cell Viability & Fatty Acid Quantification</h3><div id="pre-img"><img src="https://static.igem.org/mediawiki/2013/f/fa/Expt0.png" style="padding-left:2px;padding-top:5px;width:90%;"><center><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/experiment/exp1"><img src="http://w1ggroup.com/devere/img/more_off.png" style="width:80%;height:40px;padding-top:10px;"></a></center></div><div id="pre-desc"><p id="pre-desc-text">Measuring cell viability at different fatty acid concentration & measure fatty acid uptake rate</p></div></div> |
- | <div id=" | + | <div id="interview"><h3>Experiment 2: Fatty Acid Sensing Mechanism</h3><div id="pre-img"><img src="https://static.igem.org/mediawiki/2013/4/4f/Expt1.png" style="padding-left:5px;padding-top:5px;width:90%;"><center><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/experiment/exp2"><img src="http://w1ggroup.com/devere/img/more_off.png" style="width:80%;height:40px;padding-top:10px;"></a></center></div><div id="pre-desc"><p id="pre-desc-text">Introduce inducible system that allows tunable fatty acid uptake by sensing fatty acid concentration</p></div></div> |
- | <div id=" | + | <div id="presentation"><h3>Experiment 3: Protein Trafficking</h3><div id="pre-img"><img src="https://static.igem.org/mediawiki/2013/4/45/Expt2.png" style="padding-left:5px;width:105%;padding-top:8px;"><center><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/experiment/exp3"><br><img src="http://w1ggroup.com/devere/img/more_off.png" style="width:75%;height:40px;padding-top:2px;"></a></center></div><div id="pre-desc"><p id="pre-desc-text">Target ACE proteins into mitochondria</p></div></div> |
+ | |||
+ | <div id="article"><h3>Experiment 4: Glyoxylate Shunt</h3><div id="art-img"><img src="https://static.igem.org/mediawiki/2013/c/c0/Expt3.png" style="padding-left:5px;width:90%;padding-top:5px;"><center><a href="https://2013.igem.org/Team:Hong_Kong_HKUST/experiment/exp4"><img src="http://w1ggroup.com/devere/img/more_off.png" style="width:80%;height:40px;padding-top:10px;"></a></center></div><div id="art-desc"><p id="art-desc-text">Introduce glyoxylate enzymes responsible for the shunt</p></div></div> | ||
Summary of experiments done this summer - The HKUST iGEM 2013 carried out a lot of experiments this summer, including regular plasmid construction, PCR, and mutagenesis. We listed the main experiments done under each module in a clear, forward way.
Measuring cell viability at different fatty acid concentration & measure fatty acid uptake rate
Introduce inducible system that allows tunable fatty acid uptake by sensing fatty acid concentration