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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Promoting and Avoiding Recombination: Contrasting Activities of the Escherichia coli RuvABC Holliday Junction Resolvase and RecG DNA Translocase
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Promoting and Avoiding Recombination: Contrasting Activities of the Escherichia coli RuvABC Holliday Junction Resolvase and RecG DNA Translocase

机译:促进和避免重组:大肠杆菌RuvABC霍利迪交界处分离酶和RecG DNA转位酶的对比活性。

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摘要

RuvABC and RecG are thought to provide alternative pathways for the late stages of recombination in Escherichia coli . Inactivation of both blocks the recovery of recombinants in genetic crosses. RuvABC resolves Holliday junctions, with RuvAB driving branch migration and RuvC catalyzing junction cleavage. RecG also drives branch migration, but no nuclease has been identified that might act with RecG to cleave junctions, apart from RusA, which is not normally expressed. We searched for an alternative nuclease using a synthetic lethality assay to screen for mutations causing inviability in the absence of RuvC, on the premise that a strain without any ability to cut junctions might be inviable. All the mutations identified mapped to polA , dam , or uvrD . None of these genes encodes a nuclease that cleaves Holliday junctions. Probing the reason for the inviability using the RusA Holliday junction resolvase provided strong evidence in each case that the RecG pathway is very ineffective at removing junctions and indicated that a nuclease component most probably does not exist. It also revealed new suppressors of recG , which were located to the ssb gene. Taken together with the results from the synthetic lethality assays, the properties of the mutant SSB proteins provide evidence that, rather than promoting recombination, a major function of RecG is to curb potentially pathological replication initiated via PriA protein at sites remote from oriC .
机译:RuvABC和RecG被认为为大肠杆菌重组的后期提供了替代途径。两者的失活阻碍了遗传杂交中重组体的回收。 RuvABC解析霍利迪(Holliday)交界处,其中RuvAB驱动分支迁移和RuvC催化交界处裂解。 RecG还驱动分支迁移,但是除了正常表达的RusA之外,没有发现可能与RecG起作用的核酸酶可裂解连接。我们以合成杀伤力试验寻找一种替代核酸酶,以筛选在没有RuvC的情况下导致无法生存的突变,前提是没有任何剪切连接能力的菌株可能是无法生存的。确定的所有突变都映射到polA,dam或uvrD。这些基因均未编码可切割霍利迪连接的核酸酶。在每种情况下,使用RusA Holliday连接分辨酶探查不可行的原因均提供了有力的证据,表明RecG途径在去除连接方面非常无效,并表明最有可能不存在核酸酶成分。它还揭示了位于ssb基因上的新的recG抑制剂。结合合成杀伤力测定的结果,突变型SSB蛋白的特性提供了证据,即RecG的主要功能是抑制通过PriA蛋白在远离oriC的位点引发的潜在病理复制,而不是促进重组。

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