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<center></center> | <center></center> | ||
<div id="clear3" style="display: none;"> | <div id="clear3" style="display: none;"> | ||
− | + | <p> Biological insight had told us we need a model with constant gene expression. Investigating models from literature <sup> 1 </sup> so see which model would satisfy these conditions, and it was found the constitutive gene expression model was suitable to guide the model. </p> | |
<p>The first step was to take the general model from literature and apply it in our scenario using the proteins (GFP, ECHP, RFP.) </p> | <p>The first step was to take the general model from literature and apply it in our scenario using the proteins (GFP, ECHP, RFP.) </p> | ||
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− | <img src="https://static.igem.org/mediawiki/2017/e/e7/UNOT_crisprsystem.png"; > | + | <p style="text-align: center;" > <img src="https://static.igem.org/mediawiki/2017/e/e7/UNOT_crisprsystem.png"; > </p> |
<p> This system can be described as above. Where gRNA(i), Cas9, and mRNA are produced constitutively with their associated rates of production kc, kg, and k0i respectively. The Cas9 and gRNA(i) will undergo an irreversible association to form Cas9:gRNA(i) at rate kf, which in turn inhibits the production of mRNA and reduce the production of Fluorescent protein (k1). All molecules spontaneously degrade and diffuse away at their own associated rate. (i) will account for us having multiple gRNAs and just as many fluorescent proteins i.e. i=3 with three fluorescent proteins and subsequent set of three gRNAs. It is asumed that all gRNAs have the same binding affinity and their productions are the same. The varying strengths of promoters for mRNA (koi) will be assigned to each corresponding gRNA in the set of (i). </p> | <p> This system can be described as above. Where gRNA(i), Cas9, and mRNA are produced constitutively with their associated rates of production kc, kg, and k0i respectively. The Cas9 and gRNA(i) will undergo an irreversible association to form Cas9:gRNA(i) at rate kf, which in turn inhibits the production of mRNA and reduce the production of Fluorescent protein (k1). All molecules spontaneously degrade and diffuse away at their own associated rate. (i) will account for us having multiple gRNAs and just as many fluorescent proteins i.e. i=3 with three fluorescent proteins and subsequent set of three gRNAs. It is asumed that all gRNAs have the same binding affinity and their productions are the same. The varying strengths of promoters for mRNA (koi) will be assigned to each corresponding gRNA in the set of (i). </p> |
Revision as of 19:53, 1 November 2017
MODELLING