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同源重组酶在枯草芽孢杆菌非同源质粒重组中的作用。

Role of enzymes of homologous recombination in illegitimate plasmid recombination in Bacillus subtilis.

作者信息

Meima R, Haijema B J, Dijkstra H, Haan G J, Venema G, Bron S

机构信息

Department of Genetics, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Haren, The Netherlands.

出版信息

J Bacteriol. 1997 Feb;179(4):1219-29. doi: 10.1128/jb.179.4.1219-1229.1997.

Abstract

The structural stability of plasmid pGP1, which encodes a fusion between the penicillinase gene (penP) of Bacillus licheniformis and the Escherichia coli lacZ gene, was investigated in Bacillus subtilis strains expressing mutated subunits of the ATP-dependent nuclease, AddAB, and strains lacking the major recombination enzyme, RecA. Strains carrying a mutation in the ATP-binding site of the AddB subunit exhibited high levels of plasmid instability, whereas a comparable mutation in the A subunit did not affect plasmid stability. Using an alternative plasmid system, pGP100, we were able to demonstrate that the differences in stability reflected differences in initial recombination frequencies. Based on a comparison of endpoint sequences observed in the various hosts, we speculate that at least two different mechanisms underlie the deletion events involved, the first (type I) occurring between nonrepeated sequences, and the second (type II) occurring between short direct repeats (DRs). The latter event was independent of single-strand replication intermediates and the mode of replication and possibly requires the introduction of double-strand breaks (DSBs) between the repeats. In the absence of functional AddAB complex, or the AddB subunit, DSBs are likely to be processed via a recA-independent mechanism, resulting in intramolecular recombination between the DRs. In wild-type cells, such DSBs are supposed to be either repaired by a mechanism involving AddAB-dependent recombination or degraded by the AddAB-associated exonuclease activity. Plasmid stability assays in a recA mutant showed that (i) the level of deletion formation was considerably higher in this host and (ii) that deletions between short DRs occurred at higher frequencies than those described previously for the parental strain. We propose that in wild-type cells, the recA gene product is involved in recombinational repair of DSBs.

摘要

编码地衣芽孢杆菌青霉素酶基因(penP)与大肠杆菌lacZ基因融合体的质粒pGP1的结构稳定性,在表达ATP依赖性核酸酶AddAB突变亚基的枯草芽孢杆菌菌株以及缺乏主要重组酶RecA的菌株中进行了研究。携带AddB亚基ATP结合位点突变的菌株表现出高水平的质粒不稳定性,而A亚基中的类似突变不影响质粒稳定性。使用替代质粒系统pGP100,我们能够证明稳定性差异反映了初始重组频率的差异。基于在各种宿主中观察到的终点序列的比较,我们推测至少有两种不同的机制是所涉及的缺失事件的基础,第一种(I型)发生在非重复序列之间,第二种(II型)发生在短直接重复序列(DR)之间。后一种事件独立于单链复制中间体和复制模式,可能需要在重复序列之间引入双链断裂(DSB)。在缺乏功能性AddAB复合物或AddB亚基的情况下,DSB可能通过recA非依赖性机制进行处理,导致DR之间的分子内重组。在野生型细胞中,这种DSB应该通过涉及AddAB依赖性重组的机制进行修复,或者被AddAB相关的核酸外切酶活性降解。recA突变体中的质粒稳定性测定表明:(i)该宿主中缺失形成的水平明显更高;(ii)短DR之间的缺失发生频率高于先前报道的亲本菌株。我们提出,在野生型细胞中,recA基因产物参与DSB的重组修复。

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Recombination mechanisms in bacteria.细菌中的重组机制。
J Cell Physiol Suppl. 1955 May;45(Suppl. 2):75-107. doi: 10.1002/jcp.1030450506.
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Mechanisms of illegitimate recombination.异常重组的机制。
Gene. 1993 Dec 15;135(1-2):161-6. doi: 10.1016/0378-1119(93)90061-7.

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