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What this means is that if the cooperativity of the repressor is “n”, then unless n molecules of the repressor combine, they would not be able to repress the promoter and control gene expression. This kind of behavior becomes desirable, since when low quantities of the repressor are present, we would expect lesser repression in the case of a high cooperativity repressor. This would generate a response that would be closer to the digital output, which is desired. This is further explained in the modeling section, but just for a brief idea, here is what the picture looks like, for increasing cooperativity. | What this means is that if the cooperativity of the repressor is “n”, then unless n molecules of the repressor combine, they would not be able to repress the promoter and control gene expression. This kind of behavior becomes desirable, since when low quantities of the repressor are present, we would expect lesser repression in the case of a high cooperativity repressor. This would generate a response that would be closer to the digital output, which is desired. This is further explained in the modeling section, but just for a brief idea, here is what the picture looks like, for increasing cooperativity. | ||
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− | <img src = "https://static.igem.org/mediawiki/2017/a/a8/T--IIT_Delhi--shreya3.png" width=" | + | <img src = "https://static.igem.org/mediawiki/2017/a/a8/T--IIT_Delhi--shreya3.png" width="1300" height="800"> |
</h2> | </h2> | ||
<h2 id="pfont"><u>The Square Wave Generator</u><br> | <h2 id="pfont"><u>The Square Wave Generator</u><br> |
Revision as of 15:34, 1 November 2017
PROJECT OVERVIEW