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调控转录和 mRNA 衰减对基因表达动力学的贡献。

Contributions of regulated transcription and mRNA decay to the dynamics of gene expression.

机构信息

Department of Molecular and Cellular Biochemistry, Meiji Pharmaceutical University, Tokyo, Japan.

Isotope Science Center, University of Tokyo, Tokyo, Japan.

出版信息

Wiley Interdiscip Rev RNA. 2019 Jan;10(1):e1508. doi: 10.1002/wrna.1508. Epub 2018 Oct 1.

Abstract

Organisms have acquired sophisticated regulatory networks that control gene expression in response to cellular perturbations. Understanding of the mechanisms underlying the coordinated changes in gene expression in response to external and internal stimuli is a fundamental issue in biology. Recent advances in high-throughput technologies have enabled the measurement of diverse biological information, including gene expression levels, kinetics of gene expression, and interactions among gene expression regulatory molecules. By coupling these technologies with quantitative modeling, we can now uncover the biological roles and mechanisms of gene regulation at the system level. This review consists of two parts. First, we focus on the methods using uridine analogs that measure synthesis and decay rates of RNAs, which demonstrate how cells dynamically change the regulation of gene expression in response to both internal and external cues. Second, we discuss the underlying mechanisms of these changes in kinetics, including the functions of transcription factors and RNA-binding proteins. Overall, this review will help to clarify a system-level view of gene expression programs in cells. This article is categorized under: Regulatory RNAs/RNAi/Riboswitches > Regulatory RNAs RNA Turnover and Surveillance > Regulation of RNA Stability RNA Methods > RNA Analyses in vitro and In Silico.

摘要

生物已经获得了复杂的调控网络,以响应细胞扰动来控制基因表达。理解协调基因表达变化的机制,以响应外部和内部刺激,是生物学中的一个基本问题。高通量技术的最新进展使我们能够测量包括基因表达水平、基因表达动力学以及基因表达调控分子之间的相互作用在内的各种生物信息。通过将这些技术与定量建模相结合,我们现在可以在系统水平上揭示基因调控的生物学作用和机制。这篇综述分为两部分。第一部分重点介绍使用尿嘧啶类似物测量 RNA 合成和降解速率的方法,这些方法展示了细胞如何动态地响应内部和外部线索改变基因表达的调控。第二部分讨论了这些动力学变化的潜在机制,包括转录因子和 RNA 结合蛋白的功能。总的来说,这篇综述将有助于阐明细胞中基因表达程序的系统水平观点。本文属于以下类别:调控 RNA/RNAi/核糖开关 > 调控 RNA RNA 周转和监控 > RNA 稳定性的调控 RNA 方法 > 体外和计算机分析的 RNA 分析。

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