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Welcome to Penn's iGEM team wiki! This wiki is currently under construction, but check back with us soon to learn more about what we're up to! Meet the Team »Project
The code of life is much more than a sequence of A's, G's, C's and T's; a suite of epigenetic mechanisms, ranging from chromatin remodeling to non-coding RNAs, affect gene expression and cellular function. In particular, DNA methylation has been shown to alter transcriptional activity in a powerful, heritable manner...
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Team:Penn
From 2013.igem.org
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<li><img alt="" src="https://googledrive.com/host/0B4ZBZOYYKBzES3Jrc042WTlMR3c/" width="700px" height="auto" /><p> | <li><img alt="" src="https://googledrive.com/host/0B4ZBZOYYKBzES3Jrc042WTlMR3c/" width="700px" height="auto" /><p> | ||
<em>Hello and Welcome!<br/></em>Welcome to Penn's iGEM team wiki! This wiki is currently under construction, but check | <em>Hello and Welcome!<br/></em>Welcome to Penn's iGEM team wiki! This wiki is currently under construction, but check | ||
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- | <li><img alt="" src="https://googledrive.com/host/ | + | <li><img alt="" src="https://googledrive.com/host/0B4ZBZOYYKBzEMVJ1NUtEbzJ3LUU" width="700px" height="auto" /><p><em>Project</em><br/>The code of life is much more than a sequence of A's, G's, C's and T's; a suite of epigenetic mechanisms, ranging from chromatin remodeling to non-coding RNAs, |
affect gene expression and cellular function. In particular, DNA methylation has been shown to alter transcriptional activity in a powerful, heritable manner... | affect gene expression and cellular function. In particular, DNA methylation has been shown to alter transcriptional activity in a powerful, heritable manner... | ||
<br/> <a class="btn" href="https://2013.igem.org/Team:Penn/Project" style="color: black !important;">Read More »</a> | <br/> <a class="btn" href="https://2013.igem.org/Team:Penn/Project" style="color: black !important;">Read More »</a> |
Revision as of 00:39, 24 August 2013