Team:UT Dallas/immunobot modeling
From 2011.igem.org
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where the dissociation constant for receptor-ligand binding used in the right figure is 100 times than that in the left figure. | where the dissociation constant for receptor-ligand binding used in the right figure is 100 times than that in the left figure. | ||
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+ | <b>Module 2.</b> Transcription/translation of CheZ<br> | ||
+ | In this module, the dimerized complex C_2 activates the transcription of the cheZ mRNA. The reactions are the standard transcription and translation reactions illustrated as:<br> | ||
+ | <center> | ||
+ | <img hight='30' src="https://static.igem.org/mediawiki/2011/0/0c/Equation5.jpg"><br> | ||
+ | </center> | ||
Revision as of 00:05, 29 September 2011
Model and simulation
The signaling network from the input of external ligand signal to the output of the tumbling state of a E coli cell can be quantitatively described by a modular model. The model is formulated based on the law of mass action and Michaelis-Menten mechanism and contains four relatively independent modules that are explained in detail below.Module 1: Activation of ToxR receptor
In this module, the ligand signal activates the ToxR receptor into a dimerized complex formed with the ligand, which is the active state of the receptor. The biochemical reaction can be illustrated as:
In this module, the dimerized complex C_2 activates the transcription of the cheZ mRNA. The reactions are the standard transcription and translation reactions illustrated as: