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转录的染色体组织:简而言之。

Chromosomal organization of transcription: in a nutshell.

作者信息

Meyer Sam, Reverchon Sylvie, Nasser William, Muskhelishvili Georgi

机构信息

Univ Lyon, Université Claude Bernard Lyon 1, INSA-Lyon, CNRS, UMR5240, Microbiologie, Adaptation et Pathogénie, 10 rue Raphaël Dubois, F-69622, Villeurbanne, France.

Department of Biology, Agricultural University of Georgia, 240 David Aghmashenebeli Alley, 0159, Tbilisi, Georgia.

出版信息

Curr Genet. 2018 Jun;64(3):555-565. doi: 10.1007/s00294-017-0785-5. Epub 2017 Nov 28.

Abstract

Early studies of transcriptional regulation focused on individual gene promoters defined specific transcription factors as central agents of genetic control. However, recent genome-wide data propelled a different view by linking spatially organized gene expression patterns to chromosomal dynamics. Therefore, the major problem in contemporary molecular genetics concerned with transcriptional gene regulation is to establish a unifying model that reconciles these two views. This problem, situated at the interface of polymer physics and network theory, requires development of an integrative methodology. In this review, we discuss recent achievements in classical model organism E. coli and provide some novel insights gained from studies of a bacterial plant pathogen, D. dadantii. We consider DNA topology and the basal transcription machinery as key actors of regulation, in which activation of functionally relevant genes is coupled to and coordinated with the establishment of extended chromosomal domains of coherent transcription. We argue that the spatial organization of genome plays a fundamental role in its own regulation.

摘要

早期对转录调控的研究聚焦于单个基因启动子,将特定转录因子定义为基因控制的核心因子。然而,近期的全基因组数据通过将空间组织化的基因表达模式与染色体动态变化相联系,推动了一种不同的观点。因此,当代分子遗传学中与转录基因调控相关的主要问题是建立一个统一的模型,以调和这两种观点。这个问题处于聚合物物理学和网络理论的交叉点,需要开发一种综合方法。在这篇综述中,我们讨论了在经典模式生物大肠杆菌中的近期研究成果,并提供了一些从对植物细菌性病原菌达旦氏黄单胞菌(D. dadantii)的研究中获得的新见解。我们将DNA拓扑结构和基础转录机制视为调控的关键因素,其中功能相关基因的激活与连贯转录的扩展染色体结构域的建立相耦合并协调。我们认为基因组的空间组织在其自身调控中起着根本性作用。

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