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三链螺旋形成诱导的转录依赖性重组。

Transcription-dependent recombination induced by triple-helix formation.

作者信息

Kohwi Y, Panchenko Y

机构信息

La Jolla Cancer Research Foundation, California 92037.

出版信息

Genes Dev. 1993 Sep;7(9):1766-78. doi: 10.1101/gad.7.9.1766.

Abstract

The homologous recombination between direct repeat sequences separated by either 200 or 1000 bp was induced by active transcription of the downstream gene when poly(dG)-poly(dC) sequences exist between the two direct repeats. This dG tract-mediated and transcription-induced recombination was RecA independent, and the frequency of recombination was dependent on both the length and the orientation of the poly(dG)-poly(dC) sequences relative to the gene. An intramolecular dG.dG.dC triplex formation was detected in Escherichia coli cells in a length-dependent manner when the transcription of the downstream gene was activated. We suggest that the negative superhelical strain generated by active transcription of the downstream gene induces poly(dG)-poly(dC) sequences to adopt a triple-helix structure in vivo and that this structure brings two remote sequences together to stimulate homologous recombination.

摘要

当两个同向重复序列之间存在聚(dG)-聚(dC)序列时,下游基因的活跃转录会诱导被200或1000 bp隔开的同向重复序列之间发生同源重组。这种dG序列介导的转录诱导重组不依赖RecA,重组频率取决于聚(dG)-聚(dC)序列相对于基因的长度和方向。当下游基因转录被激活时,在大肠杆菌细胞中以长度依赖的方式检测到分子内dG.dG.dC三链体形成。我们认为,下游基因的活跃转录产生的负超螺旋应变在体内诱导聚(dG)-聚(dC)序列形成三链体结构,并且这种结构将两个远距离序列聚集在一起以刺激同源重组。

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