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recJ基因产物在热点区域紫外线诱导的异常重组中的作用。

Role of the recJ gene product in UV-induced illegitimate recombination at the hotspot.

作者信息

Ukita T, Ikeda H

机构信息

Department of Molecular Biology, Institute of Medical Science, University of Tokyo, Japan.

出版信息

J Bacteriol. 1996 Apr;178(8):2362-7. doi: 10.1128/jb.178.8.2362-2367.1996.

Abstract

Illegitimate recombination between a prophage and adjacent bacterial DNA is the first step in the formation of specialized transducing phage. Such recombination is rare, but it is greatly enhanced by UV irradiation. We studied the mechanism of UV-induced illegitimate recombination by examining the effect of rec mutations on the frequency of lambda bio transducing phage and found that an Escherichia coli recJ mutation reduces it by 3- to 10-fold. In addition, the recombination hotspot, which accounts for approximately 60% of lambda bio transducing phages in wild-type bacteria, was not detected in the recJ mutant. Introduction of a RecJ overexpression plasmid into the recJ mutant recovered the recombination at the hotspot. These results indicate that the RecJ protein preferentially stimulates illegitimate recombination at the hotspot. Both the hotspot and the non- hotspot sites have short regions of homology, but only the hotspot sites contain common direct-repeat sequences. We propose a model based on the 5'-3' exonuclease activity of RecJ to explain the involvement of this protein in illegitimate recombination at the hotspot.

摘要

原噬菌体与相邻细菌DNA之间的非法重组是形成特异性转导噬菌体的第一步。这种重组很少见,但紫外线照射会大大增强其发生频率。我们通过研究rec突变对λbio转导噬菌体频率的影响,来探究紫外线诱导非法重组的机制,结果发现大肠杆菌recJ突变可使其降低3至10倍。此外,在recJ突变体中未检测到重组热点,而在野生型细菌中,该热点约占λbio转导噬菌体的60%。将RecJ过表达质粒导入recJ突变体可恢复热点处的重组。这些结果表明,RecJ蛋白优先刺激热点处的非法重组。热点和非热点位点都有短的同源区域,但只有热点位点包含常见的直接重复序列。我们基于RecJ的5'-3'核酸外切酶活性提出了一个模型,以解释该蛋白在热点处非法重组中的作用。

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