Team:Heidelberg
From 2014.igem.org
(Difference between revisions)
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<p class="normal-middle-text bold">These proteins are extremely <span class="red-text">resistant</span> against | <p class="normal-middle-text bold">These proteins are extremely <span class="red-text">resistant</span> against | ||
<span class="red-text">high temperatures</span>, <span class="red-text">pH</span> and <span class="red-text">proteases</span>.</p> | <span class="red-text">high temperatures</span>, <span class="red-text">pH</span> and <span class="red-text">proteases</span>.</p> | ||
- | <p class="normal-middle-text">We | + | <p class="normal-middle-text align-right">We established protein circularization as a <span class="red-text">new<br/>powerful tool</span> for Synthetic Biology and set the foundations to<br />render any protein heat stable.</p> |
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- | <h1 | + | <h1 class="large-text">Wondering how we circularize?</h1> |
- | < | + | <h2 class="middle-text align-right">Let us introduce you to the next generation of bioengineering...</h2> |
+ | <h2 class="middle-text align-right">COME DISCOVER THE MECHANISM OF SPLIT INTEINS</h2> | ||
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- | <p> | + | <p>Inteins excise themselves out of proteins and in doing so the remaining flanking parts are irreversibly joined</p> |
- | <p> | + | <p>–an effective mechanism to circularize proteins.</p> |
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Revision as of 13:07, 15 October 2014