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Mechanisms and Evolution of Control Logic in Prokaryotic Transcriptional Regulation

机译:原核转录调控中控制逻辑的机理与演化

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摘要

Summary: A major part of organismal complexity and versatility of prokaryotes resides in their ability to fine-tune gene expression to adequately respond to internal and external stimuli. Evolution has been very innovative in creating intricate mechanisms by which different regulatory signals operate and interact at promoters to drive gene expression. The regulation of target gene expression by transcription factors (TFs) is governed by control logic brought about by the interaction of regulators with TF binding sites (TFBSs) in cis-regulatory regions. A factor that in large part determines the strength of the response of a target to a given TF is motif stringency, the extent to which the TFBS fits the optimal TFBS sequence for a given TF. Advances in high-throughput technologies and computational genomics allow reconstruction of transcriptional regulatory networks in silico. To optimize the prediction of transcriptional regulatory networks, i.e., to separate direct regulation from indirect regulation, a thorough understanding of the control logic underlying the regulation of gene expression is required. This review summarizes the state of the art of the elements that determine the functionality of TFBSs by focusing on the molecular biological mechanisms and evolutionary origins of cis-regulatory regions.
机译:摘要:原核生物的机体复杂性和多功能性的主要部分在于它们能够微调基因表达以充分响应内部和外部刺激的能力。进化在创造复杂的机制方面是非常创新的,通过这种机制,不同的调节信号在启动子上起作用并相互作用以驱动基因表达。转录因子(TFs)对靶基因表达的调控受调控因子与顺式调控区域中TF结合位点(TFBSs)相互作用的控制逻辑的控制。决定目标对给定TF的反应强度的主要因素是基序严格性,即TFBS适合给定TF的最佳TFBS序列的程度。高通量技术和计算基因组学的进步允许计算机模拟转录调控网络的重建。为了优化转录调控网络的预测,即将直接调控与间接调控分开,需要对基因表达调控基础的调控逻辑有透彻的了解。这篇综述通过侧重于顺式调节区域的分子生物学机制和进化起源,总结了确定TFBS功能的元件的最新技术水平。

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