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保护大肠杆菌免受突变型EcoRII甲基转移酶产生的紧密结合的DNA-蛋白质复合物影响的功能。

Functions that Protect Escherichia coli from Tightly Bound DNA-Protein Complexes Created by Mutant EcoRII Methyltransferase.

作者信息

Henderson Morgan L, Kreuzer Kenneth N

机构信息

University Program in Genetics and Genomics, Duke University Medical Center, Durham NC, 27710, United States of America.

University Program in Genetics and Genomics, Duke University Medical Center, Durham NC, 27710, United States of America; Department of Biochemistry, Duke University Medical Center, Durham NC, 27710, United States of America.

出版信息

PLoS One. 2015 May 19;10(5):e0128092. doi: 10.1371/journal.pone.0128092. eCollection 2015.

Abstract

Expression of mutant EcoRII methyltransferase protein (M.EcoRII-C186A) in Escherichia coli leads to tightly bound DNA-protein complexes (TBCs), located sporadically on the chromosome rather than in tandem arrays. The mechanisms behind the lethality induced by such sporadic TBCs are not well studied, nor is it clear whether very tight binding but non-covalent complexes are processed in the same way as covalent DNA-protein crosslinks (DPCs). Using 2D gel electrophoresis, we found that TBCs induced by M.EcoRII-C186A block replication forks in vivo. Specific bubble molecules were detected as spots on the 2D gel, only when M.EcoRII-C186A was induced, and a mutation that eliminates a specific EcoRII methylation site led to disappearance of the corresponding spot. We also performed a candidate gene screen for mutants that are hypersensitive to TBCs induced by M.EcoRII-C186A. We found several gene products necessary for protection against these TBCs that are known to also protect against DPCs induced with wild-type M.EcoRII (after 5-azacytidine incorporation): RecA, RecBC, RecG, RuvABC, UvrD, FtsK, XerCD and SsrA (tmRNA). In contrast, the RecFOR pathway and Rep helicase are needed for protection against TBCs but not DPCs induced by M.EcoRII. We propose that stalled fork processing by RecFOR and RecA promotes release of tightly bound (but non-covalent) blocking proteins, perhaps by licensing Rep helicase-driven dissociation of the blocking M.EcoRII-C186A. Our studies also argued against the involvement of several proteins that might be expected to protect against TBCs. We took the opportunity to directly compare the sensitivity of all tested mutants to two quinolone antibiotics, which target bacterial type II topoisomerases and induce a unique form of DPC. We uncovered rep, ftsK and xerCD as novel quinolone hypersensitive mutants, and also obtained evidence against the involvement of a number of functions that might be expected to protect against quinolones.

摘要

在大肠杆菌中表达突变型EcoRII甲基转移酶蛋白(M.EcoRII-C186A)会导致紧密结合的DNA-蛋白质复合物(TBCs),这些复合物散在地位于染色体上,而非串联排列。这种散发性TBCs诱导致死的背后机制尚未得到充分研究,紧密结合但非共价的复合物是否与共价DNA-蛋白质交联(DPCs)以相同方式处理也不清楚。使用二维凝胶电泳,我们发现M.EcoRII-C186A诱导的TBCs在体内会阻断复制叉。仅在诱导M.EcoRII-C186A时,特定的气泡分子才会在二维凝胶上被检测为斑点,而消除特定EcoRII甲基化位点的突变会导致相应斑点消失。我们还对M.EcoRII-C186A诱导的TBCs超敏感的突变体进行了候选基因筛选。我们发现了几种保护细胞免受这些TBCs所需的基因产物,已知这些产物也能保护细胞免受野生型M.EcoRII(在掺入5-氮杂胞苷后)诱导的DPCs:RecA、RecBC、RecG、RuvABC、UvrD、FtsK、XerCD和SsrA(tmRNA)。相比之下,RecFOR途径和Rep解旋酶是保护细胞免受M.EcoRII诱导的TBCs所必需的,但对DPCs则不是。我们提出,RecFOR和RecA对停滞叉的处理可能通过许可Rep解旋酶驱动阻断性M.EcoRII-C186A的解离,促进紧密结合(但非共价)的阻断蛋白的释放。我们的研究也反对一些可能预期能保护细胞免受TBCs影响的蛋白质的参与。我们借此机会直接比较了所有测试突变体对两种喹诺酮类抗生素的敏感性,这两种抗生素靶向细菌II型拓扑异构酶并诱导一种独特形式的DPC。我们发现rep、ftsK和xerCD是新型喹诺酮超敏感突变体,并且还获得了证据,反对一些可能预期能保护细胞免受喹诺酮影响的功能的参与。

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