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漫长的困境:关于细菌SOS反应的进化视角

Aeons of distress: an evolutionary perspective on the bacterial SOS response.

作者信息

Erill Ivan, Campoy Susana, Barbé Jordi

机构信息

Biomedical Applications Group, Centro Nacional de Microelectrónica, Barcelona, Spain.

出版信息

FEMS Microbiol Rev. 2007 Nov;31(6):637-56. doi: 10.1111/j.1574-6976.2007.00082.x. Epub 2007 Sep 18.

Abstract

The SOS response of bacteria is a global regulatory network targeted at addressing DNA damage. Governed by the products of the lexA and recA genes, it co-ordinates a comprehensive response against DNA lesions and its description in Escherichia coli has stood for years as a textbook paradigm of stress-response systems in bacteria. In this paper we review the current state of research on the SOS response outside E. coli. By retracing research on the identification of multiple diverging LexA-binding motifs across the Bacteria Domain, we show how this work has led to the description of a minimum regulon core, but also of a heterogeneous collection of SOS regulatory networks that challenges many tenets of the E. coli model. We also review recent attempts at reconstructing the evolutionary history of the SOS network that have cast new light on the SOS response. Exploiting the newly gained knowledge on LexA-binding motifs and the tight association of LexA with a recently described mutagenesis cassette, these works put forward likely evolutionary scenarios for the SOS response, and we discuss their relevance on the ultimate nature of this stress-response system and the evolutionary pressures driving its evolution.

摘要

细菌的SOS反应是一个针对DNA损伤的全局调控网络。它由lexA和recA基因的产物调控,协调针对DNA损伤的全面反应,多年来其在大肠杆菌中的描述一直是细菌应激反应系统的教科书范例。在本文中,我们综述了大肠杆菌之外关于SOS反应的研究现状。通过追溯在细菌域中鉴定多个不同LexA结合基序的研究,我们展示了这项工作如何不仅导致了最小调控子核心的描述,还带来了对SOS调控网络异质集合的描述,这对大肠杆菌模型的许多原则提出了挑战。我们还综述了最近重建SOS网络进化历史的尝试,这些尝试为SOS反应带来了新的见解。利用关于LexA结合基序的新获得知识以及LexA与最近描述的诱变盒的紧密关联,这些研究提出了SOS反应可能的进化情景,我们讨论了它们对这个应激反应系统的最终性质以及驱动其进化的进化压力的相关性。

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