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Self-consistent theory of transcriptional control in complex regulatory architectures

机译:复杂调控体系中转录控制的自洽理论

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摘要

Individual regulatory proteins are typically charged with the simultaneous regulation of a battery of different genes. As a result, when one of these proteins is limiting, competitive effects have a significant impact on the transcriptional response of the regulated genes. Here we present a general framework for the analysis of any generic regulatory architecture that accounts for the competitive effects of the regulatory environment by isolating these effects into an effective concentration parameter. These predictions are formulated using the grand-canonical ensemble of statistical mechanics and the fold-change in gene expression is predicted as a function of the number of transcription factors, the strength of interactions between the transcription factors and their DNA binding sites, and the effective concentration of the transcription factor. The effective concentration is set by the transcription factor interactions with competing binding sites within the cell and is determined self-consistently. Using this approach, we analyze regulatory architectures in the grand-canonical ensemble ranging from simple repression and simple activation to scenarios that include repression mediated by DNA looping of distal regulatory sites. It is demonstrated that all the canonical expressions previously derived in the case of an isolated, non-competing gene, can be generalised by a simple substitution to their grand canonical counterpart, which allows for simple intuitive incorporation of the influence of multiple competing transcription factor binding sites. As an example of the strength of this approach, we build on these results to present an analytical description of transcriptional regulation of the lac operon.
机译:单个调节蛋白通常负责同时调节一系列不同基因。结果,当这些蛋白质之一是限制性的时,竞争作用对受调节基因的转录反应具有重大影响。在这里,我们提供了一个用于分析任何通用监管架构的通用框架,该架构通过将这些影响隔离为有效的浓度参数来说明监管环境的竞争效应。这些预测是使用统计力学的大正则合奏来制定的,并且基因表达的倍数变化将根据转录因子的数量,转录因子与其DNA结合位点之间的相互作用强度以及有效的数量来预测。转录因子的浓度。有效浓度由转录因子与细胞内竞争性结合位点的相互作用设定,并自洽确定。使用这种方法,我们分析了大典范合奏中的调节架构,范围从简单的抑制和简单激活到包括远端调控位点的DNA循环介导的抑制的场景。证明了以前在一个单独的非竞争基因的情况下衍生的所有规范表达都可以通过简单地替换其大的规范对应来概括,从而可以简单直观地整合多个竞争性转录因子结合的影响网站。作为这种方法强度的一个例子,我们在这些结果的基础上提出了lac操纵子转录调控的分析描述。

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