Team:Shenzhen BGIC ATCG/modeling

From 2013.igem.org

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   <li><a id="navleftsub1" class="navleftsub" href="#board1">Blueprint</a></li>
   <li><a id="navleftsub1" class="navleftsub" href="#board1">Blueprint</a></li>
   <li><a id="navleftsub2" class="navleftsub" href="#board2">Cell Cycle</a></li>
   <li><a id="navleftsub2" class="navleftsub" href="#board2">Cell Cycle</a></li>
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   <li><a id="navleftsub3" class="navleftsub" href="#board3">Cell Cycle Regulation</a></li>
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   <li><a id="navleftsub3" class="navleftsub" href="#board3">Cell Synchronization</a></li>
   <li><a id="navleftsub4" class="navleftsub" href="#board4">Alternative Splicing by CRISPRi</a></li>
   <li><a id="navleftsub4" class="navleftsub" href="#board4">Alternative Splicing by CRISPRi</a></li>
   <li><a id="navleftsub5" class="navleftsub" href="#board5">Degradation Rate</a></li>
   <li><a id="navleftsub5" class="navleftsub" href="#board5">Degradation Rate</a></li>
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         <h3>Cell Cycle Regulation</h3>
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         <h3>Cell Synchronization</h3>
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Revision as of 11:29, 24 September 2013


Ball Ball

Playing with my eyes
aren't you?

Hi I am Dr. Mage!
A "budding" yeast cell!

Blueprint

Our project based a lot on cell cycle, especially the cyclin-promoters and cyclin-degradation tags. Through modelling Cell cycle is one of the most complex network in biology world. Better understanding of cell cycle and it’s regulation, to some extent, faciliate the fermentation industry because we can easily accelarate or decelarate a cell cycle or even one phase in the cycle which are important for metabolism product synthesis. In order to simulation and predict the experimets of the effeciency of Sic1, alternative splicing and degradation tags in the whole cell cycle, we build tree ordinary differential equation system models.

Cell Cycle

Cell Synchronization

Alternative Splicing by CRISPRi


Degradation Rate