is26介导的Tn4352B易位单元的丢失需要recA1等位基因的存在

IF 1.8 4区 生物学 Q3 GENETICS & HEREDITY
Carol H. Pong, Jade E. Peace, Christopher J. Harmer, Ruth M. Hall
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引用次数: 2

摘要

伪化合物转座子Tn4352B是不寻常的,因为已经发现由一个边界IS26拷贝和包含aphA1a基因的中心部分组成的可易位单元(TU)在用作宿主的大肠杆菌菌株中容易丢失。快速损失需要在IS26中的一个位于中心部分侧面的内端附近存在额外的2G残基和活性Tnp26转座酶。然而,Tn4352B在野生型肺炎克雷伯菌菌株中被发现是稳定的。尽管得出的结论是,这种差异可能是由于物种背景造成的,但使用的大肠杆菌菌株缺乏重组。在这里,我们进一步研究了大肠杆菌中TU损失的要求,并发现Tn4352B在精通重组的菌株中是稳定的。在所检测的几种重组缺陷菌株中,快速缺失仅发生在携带recA1等位基因的菌株中,而不发生在携带不同recA等位基因、recA13和本文鉴定的一种新的recA等位点的菌株中。这也使该菌株缺乏同源重组。因此,RecA1蛋白的特定性质似乎是从Tn4352B观察到的TU损失的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IS26-mediated loss of the translocatable unit from Tn4352B requires the presence of the recA1 allele

The pseudo-compound transposon Tn4352B is unusual in that the translocatable unit (TU) consisting of one of the bounding IS26 copies and the central portion containing the aphA1a gene has been found to be readily lost in the Escherichia coli strains used as host. Rapid loss required the presence of an additional 2 G residues adjacent to the internal end of one of the IS26 that flank the central portion and an active Tnp26 transposase. However, Tn4352B was found to be stable in wild-type Klebsiella pneumoniae strains. Though it was concluded that the difference may be due to the species background, the E. coli strains used were recombination-deficient. Here, we have further investigated the requirements for TU loss in E. coli and found that Tn4352B was stable in recombination-proficient strains. Among several recombination-deficient strains examined, rapid loss occurred only in strains that carry the recA1 allele but not in strains carrying different recA alleles, recA13 and a novel recA allele identified here, that also render the strain deficient in homologous recombination. Hence, it appears that a specific property of the RecA1 protein underlies the observed TU loss from Tn4352B.

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来源期刊
Plasmid
Plasmid 生物-遗传学
CiteScore
4.70
自引率
3.80%
发文量
21
审稿时长
53 days
期刊介绍: Plasmid publishes original research on genetic elements in all kingdoms of life with emphasis on maintenance, transmission and evolution of extrachromosomal elements. Objects of interest include plasmids, bacteriophages, mobile genetic elements, organelle DNA, and genomic and pathogenicity islands.
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