首页> 外文期刊>Journal of Molecular Biology >HOLLIDAY JUNCTION RESOLVASES ENCODED BY HOMOLOGOUS RUSA GENES IN ESCHERICHIA COLI K-12 AND PHAGE 82
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HOLLIDAY JUNCTION RESOLVASES ENCODED BY HOMOLOGOUS RUSA GENES IN ESCHERICHIA COLI K-12 AND PHAGE 82

机译:由HOMOLOGOUS RUSA GENES在ESCHERICHIA COLI K-12和PHAGE 82中编码的节假日结解决方案

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The RusA protein of Escherichia coli is an endonuclease that can resolve Holliday intermediates and correct the defects in genetic recombination and DNA repair associated with inactivation of RuvAB or RuvC. The structure of the rusA gene, its organisation in the genome, and its interaction with the Ruv and RecG proteins have been investigated. Recombinant plasmids carrying rusA were identified by their ability to make ruv mutants resistant to UV light. The gene was located to an open reading frame encoding a polypeptide of 120 amino acids. It forms the fifth gene in an operon containing a chain of short, interlinked open reading frames. A similar arrangement was found in the genome of the lambdoid bacteriophage, 82. The two rusA genes show 95% sequence identity The E. coli operon forms part of the defective lambdoid prophage, DLP12, and is probably derived from a phage related to 82 and PA-2. rusA appears to be very poorly expressed in E. coli, but can be activated by insertion of IS2 or IS10 upstream of the coding sequence to promote transcription. These insertions arise spontaneously in ruv strains as suppressors of the mutant phenotype. Deletion of rusA from the chromosome of either wild-type or ruv mutant strains has no obvious effect on recombination or sensitivity to UV light. Multicopy plasmids expressing RusA alone make ruvA, ruvB, and ruvC mutants resistant to UV light. Suppression depends critically on RecG. (C) 1996 Academic Press Limited [References: 46]
机译:大肠杆菌的RusA蛋白是一种核酸内切酶,可以解析霍利迪中间体,并纠正与RuvAB或RuvC失活有关的基因重组和DNA修复中的缺陷。研究了rusA基因的结构,其在基因组中的组织及其与Ruv和RecG蛋白的相互作用。携带rusA的重组质粒是通过它们产生抗紫外线的ruv突变体的能力来鉴定的。该基因位于编码120个氨基酸的多肽的开放阅读框上。它在一个操纵子中形成第五个基因,该操纵子包含一连串短的,相互连接的开放阅读框。在Lambdoid噬菌体82的基因组中发现了类似的安排。这两个rusA基因显示95%的序列同一性。E. coli操纵子构成了有缺陷的Lambdoid噬菌体DLP12的一部分,可能来自与82和PA-2。 rusA在大肠杆菌中似乎表达很差,但是可以通过在编码序列的上游插入IS2或IS10来激活,以促进转录。这些插入在作为突变表型抑制剂的ruv菌株中自发出现。从野生型或ruv突变株的染色体中删除rusA对重组或对紫外线的敏感性均无明显影响。单独表达RusA的多拷贝质粒使ruvA,ruvB和ruvC突变体对紫外线具有抵抗力。抑制关键取决于RecG。 (C)1996 Academic Press Limited [参考号:46]

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