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Reaction pathways in transcript elongation

机译:转录本延伸的反应途径

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摘要

Transcription of DNA into RNA is a central part of gene expression, and is highly regulated in all organisms. In order to approach transcription control systems on a molecular basis we must understand the mechanisms used by the transcription complex to discharge its various functions, which include transcript initiation, elongation, editing, and termination. In this article we describe recent progress in sorting out the multiple reaction pathways that are, at least in principle, available to the transcription complex at each DNA template position, and show how transcription control systems partition active complexes into these pathways. Understanding these regulatory processes requires an elucidation of the molecular details of how sequence- and factor-dependent changes in the conformations, stabilities, and reaction rates of the complexes determine function. Recent progress in unraveling these issues is summarized in this article and emerging principles that govern the regulation of the elongation phase of transcription are discussed. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 44]
机译:将DNA转录成RNA是基因表达的核心部分,并且在所有生物中受到高度调节。为了在分子基础上研究转录控制系统,我们必须了解转录复合物发挥其各种功能的机制,包括转录本的起始,延伸,编辑和终止。在本文中,我们描述了整理至少在原则上可用于每个DNA模板位置的转录复合物的多个反应途径的最新进展,并展示了转录控制系统如何将活性复合物分配到这些途径中。了解这些调节过程需要阐明分子的细节,这些细节说明复合物的构象,稳定性和反应速率中依赖序列和因子的变化如何决定功能。本文总结了解决这些问题的最新进展,并讨论了控制转录延长阶段调控的新兴原理。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:44]

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