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Reverse Engineering Non-Linear Gene Regulatory Networks Based on the Bacteriophage λ cI Circuit

机译:基于噬菌体λcI电路的逆向工程非线性基因调控网络

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The ability to measure the transcriptional response of cells has drawn much attention to the underlying transcriptional networks. To untangle the network, numerous models with corresponding reverse engineering methods have been applied. In this work, we propose a non-linear model with adjustable degrees of complexity. The corresponding reverse engineering method uses a probabilistic scheme to reduce the reconstruction problem to subnetworks. Adequate models for gene regulatory networks must be anchored on sufficient biological knowledge. Here, the cI auto-inhibition circuit (cI circuit) is used to validate our reverse engineering method. Simulations of the cI circuit are used for the reconstruction, whereas a simplified cI circuit model assists the modeling phase. Several levels of complexity are evaluated, subsequently the reconstructed models show different properties. As a result, we reconstruct an abstract model, capturing the dynamic behavior of the cI circuit to a high degree.
机译:测量细胞转录反应的能力已引起人们对潜在转录网络的广泛关注。为了解开网络,已应用了许多具有相应逆向工程方法的模型。在这项工作中,我们提出了一种具有可调复杂度的非线性模型。相应的逆向工程方法使用概率方案将重构问题减少到子网。基因调节网络的适当模型必须以足够的生物学知识为基础。在这里,cI自动抑制电路(cI电路)用于验证我们的逆向工程方法。 cI电路的仿真用于重建,而简化的cI电路模型则有助于建模阶段。评估了多个级别的复杂性,随后重建的模型显示出不同的属性。结果,我们重建了一个抽象模型,在很大程度上捕获了cI电路的动态行为。

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