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Constraint-based modeling and kinetic analysis of the Smad dependent TGF-beta signaling pathway.


Description

Constraint-based modeling and kinetic analysis of the Smad dependent TGF-beta signaling pathway. 

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Construction of a genetic toggle switch in Escherichia coli.


Description

It has been proposed' that gene-regulatory circuits with virtually any desired property can be constructed from networks of simple regulatory elements. These properties, which include multistability and oscillations, have been found in specialized gene circuits such as the bacteriophage lambda switch and the Cyanobacteria circadian oscillator. However, these behaviours have not been demonstrated in networks of non-specialized regulatory components. Here we present the construction of a genetic toggle switch-a synthetic, bistable gene-regulatory network-in Escherichia coli and provide a simple theory that predicts the conditions necessary for bistability. The toggle is constructed from any two repressible promoters arranged in a mutually inhibitory network. It is flipped between stable states using transient chemical or thermal induction and exhibits a nearly ideal switching threshold. As a practical device, the toggle switch forms a synthetic, addressable cellular memory unit and has implications for biotechnology, biocomputing and gene therapy.

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Dynamical modeling of the cholesterol regulatory pathway with Boolean networks.


Description

This model is described in Dynamical modeling of the cholesterol regulatory pathway with Boolean networks ; Gwenael Kervizic and Laurent Corcos, BMC Systems Biology 2008, 2:99 doi: 10.1186/1752-0509-2-99

Abstract: Background: Qualitative dynamics of small gene regulatory networks have been studied in quite some details both with synchronous and asynchronous analysis. However, both methods have their drawbacks: synchronous analysis leads to spurious attractors and asynchronous analysis lacks computational efficiency, which is a problem to simulate large networks. We addressed this question through the analysis of a major biosynthesis pathway. Indeed the cholesterol synthesis pathway plays a pivotal role in dislypidemia and, ultimately, in cancer through intermediates such as mevalonate, farnesyl pyrophosphate and geranyl geranyl pyrophosphate, but no dynamic model of this pathway has been proposed until now. Results: We set up a computational framework to dynamically analyze large biological networks. 

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