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突变影响 PriB、核糖体和 RNA 聚合酶对大肠杆菌 recG 和 ruv 菌株中 DNA 损伤耐受的调节。

Modulation of DNA damage tolerance in Escherichia coli recG and ruv strains by mutations affecting PriB, the ribosome and RNA polymerase.

机构信息

Centre for Genetics and Genomics, University of Nottingham, Queen's Medical Centre, Nottingham, NG7 2UH, UK.

出版信息

Mol Microbiol. 2012 Nov;86(3):675-91. doi: 10.1111/mmi.12010. Epub 2012 Sep 7.

Abstract

RecG is a DNA translocase that helps to maintain genomic integrity. Initial studies suggested a role in promoting recombination, a possibility consistent with synergism between recG and ruv null alleles and reinforced when the protein was shown to unwind Holliday junctions. In this article we describe novel suppressors of recG and show that the pathology seen without RecG is suppressed on reducing or eliminating PriB, a component of the PriA system for replisome assembly and replication restart. Suppression is conditional, depending on additional mutations that modify ribosomal subunit S6 or one of three subunits of RNA polymerase. The latter suppress phenotypes associated with deletion of priB, enabling the deletion to suppress recG. They include alleles likely to disrupt interactions with transcription anti-terminator, NusA. Deleting priB has a different effect in ruv strains. It provokes abortive recombination and compromises DNA repair in a manner consistent with PriB being required to limit exposure of recombinogenic ssDNA. This synergism is reduced by the RNA polymerase mutations identified. Taken together, the results reveal that RecG curbs a potentially negative effect of proteins that direct replication fork assembly at sites removed from the normal origin, a facility needed to resolve conflicts between replication and transcription.

摘要

RecG 是一种 DNA 转位酶,有助于维持基因组完整性。最初的研究表明它在促进重组中发挥作用,这一可能性与 recG 和 ruv 缺失等位基因的协同作用一致,而当该蛋白被证明能解开 Holliday 连接点时,这种可能性得到了加强。在本文中,我们描述了 recG 的新型抑制物,并表明在减少或消除 PriA 系统的组成部分 PriB(用于复制体组装和复制重新启动)时,没有 RecG 时出现的病变得到了抑制。抑制是有条件的,取决于额外的突变,这些突变会修饰核糖体亚基 S6 或 RNA 聚合酶的三个亚基之一。后一种抑制与缺失 priB 相关的表型,使缺失能够抑制 recG。它们包括可能破坏与转录抗终止子 NusA 相互作用的等位基因。在 ruv 菌株中,缺失 priB 会产生不同的影响。它以一种方式引发流产性重组,并损害 DNA 修复,这种方式与 PriB 被需要来限制重组性单链 DNA 的暴露一致。这种协同作用被鉴定出的 RNA 聚合酶突变所减少。总之,这些结果表明,RecG 抑制了指导复制叉在远离正常起点的位置组装的蛋白质的潜在负面影响,这是解决复制和转录之间冲突所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c8d/3533792/3399125c9022/mmi0086-0675-f1.jpg

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