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首页> 外文期刊>Bulletin of the American Physical Society >APS -Annual Meeting of the APS Four Corners Section- Event - Inferring Details of a Genetic Toggle Switch Network Using Maximum Caliber
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APS -Annual Meeting of the APS Four Corners Section- Event - Inferring Details of a Genetic Toggle Switch Network Using Maximum Caliber

机译:APS-APS四个角部分的年度会议-事件-使用最大口径推断遗传拨动开关网络的详细信息

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Genetic networks are difficult to characterize, since typical experiments monitor only a few proteins, much less than the actual number of actors involved in the process of gene expression. We aim to learn about the details of the underlying network and the intermediate/hidden species by utilizing crucial information encoded in the stochastic protein expression trajectories recorded over long time. We will exploit this idea using the detailed noise statistics in both protein species of a genetic toggle switch network to successfully infer relevant details of the underlying network -- even when unaware of mRNA levels -- using the principle of Maximum Caliber (the equivalent of Maximum Entropy for dynamics). Using only the simple constraints of protein production, degradation, and mutual repression, the minimal model can reproduce the qualitative features of a switch, as well as quantitative estimates such as protein number and dwell time distributions and reaction rate parameters.
机译:遗传网络很难描述,因为典型的实验仅监测几种蛋白质,远少于基因表达过程中涉及的实际参与者数量。我们旨在通过利用长时间记录的随机蛋白质表达轨迹中编码的关键信息来了解基础网络和中间/隐藏物种的详细信息。我们将利用遗传拨动开关网络的两种蛋白质物种中的详细噪声统计信息来利用这一思想,以最大口径(等效于最大)原理成功推断基础网络的相关细节(即使不知道mRNA水平)。动力学的熵)。仅使用蛋白质生产,降解和相互抑制的简单约束条件,最小模型即可重现开关的定性特征,以及定量估计值,例如蛋白质数量和停留时间分布以及反应速率参数。

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