Team:Imperial College London/Drylab/Autoinduction

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(Model 1)
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* It is based on Michaelis-Menten assumptions for substrate consumption.
* It is based on Michaelis-Menten assumptions for substrate consumption.
* The substrates in this case are our carbon sources: glucose, maltose, xylose, galactose...
* The substrates in this case are our carbon sources: glucose, maltose, xylose, galactose...
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<br>
 
<b>Rationale:</b><br>
<b>Rationale:</b><br>
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In a mixture of carbon sources, glucose is energetically more favorable to consume(more on this is discussed in the [https://2009.igem.org/Team:Imperial_College_London/Temporal_Control/Autoinduction autoinduction] section).<br>
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This model includes the effects of enzyme activation and inhibition, as well as competition for metabolism of sugars[1].
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[[Image:II09_diax_wolf.jpg]]
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Figure from [http://demonstrations.wolfram.com/DiauxicGrowthOfBacteriaOnTwoSubstrates/ Wolfram].
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===Model 2===
===Model 2===

Revision as of 19:35, 8 October 2009




Autoinduction

II09 diauxi illust.jpg

Starting the encapsulation process is related to diauxic growth of bacteria under two carbon sources. This is explained further here. 2 models have been discussed in this section and more information about each can be found in the tabs.

Contents

Goal of the models

  • Provide understanding of the [http://en.wikipedia.org/wiki/Diauxie diauxic growth] phenomenon
  • Find out the time taken to consume glucose in the medium to characterize the CRP promoter.

Model 1

  • This is a cybernetic model developed by Kompala et al [1].
  • It is based on Michaelis-Menten assumptions for substrate consumption.
  • The substrates in this case are our carbon sources: glucose, maltose, xylose, galactose...

Rationale:
In a mixture of carbon sources, glucose is energetically more favorable to consume(more on this is discussed in the autoinduction section).
This model includes the effects of enzyme activation and inhibition, as well as competition for metabolism of sugars[1]. II09 diax wolf.jpg

Figure from [http://demonstrations.wolfram.com/DiauxicGrowthOfBacteriaOnTwoSubstrates/ Wolfram].


Model 2

Details coming up soon! Still running long simulations...

References

[1]Kompala, D.S., D. Ramkrishna and G.T. Tsao, "Cybernetic modeling of microbial growth on multiple substrates," Biotechnology and Bioengineering 26 :1272-1281 (1984).
[2] Zhao Lu et al. "Dynamics of Glucose-Lactose Diauxic Growth in E.coli". arXiv:0708.1993v1 [q-bio.OT] 15 Aug 2007

 
Autoinduction
Protein Production
Drug Kinetics Genome Deletion


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