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核小体模板的基因重组由转录介导。

Genetic recombination of nucleosomal templates is mediated by transcription.

作者信息

Kotani H, Sekiguchi J M, Dutta S, Kmiec E B

机构信息

Jefferson Cancer Institute, Thomas Jefferson University, Philadelphia, PA 19107.

出版信息

Mol Gen Genet. 1994 Aug 15;244(4):410-9. doi: 10.1007/BF00286693.

Abstract

An in vitro system has been developed to examine the influence of transcription on genetic rearrangement. Using a homologous pairing assay, the transfer of one strand of a nucleosomal template onto a recipient DNA molecule was monitored as a function of RNA polymerase activity. Transcriptionally inactive nucleosomal DNA was refractory to homologous pairing. Homologous pairing was catalyzed, however, by the eukaryotic recombinase, rec1, when the nucleosomal template was being transcribed. The reaction was found to be dependent on the presence of rec1, RNA polymerase, NTPs and RNA synthesis. Heteroduplex formation between a short DNA duplex fragment assembled into a nucleosome and a single-stranded circle relied also on the presence of sequence homology between the duplex and the circle. The results of this study lend support to the notion that transcriptionally active regions within a chromosome are more apt to serve as sites of genetic recombination.

摘要

已开发出一种体外系统来研究转录对基因重排的影响。使用同源配对试验,监测核小体模板的一条链转移到受体DNA分子上的情况,并将其作为RNA聚合酶活性的函数。转录无活性的核小体DNA对同源配对具有抗性。然而,当核小体模板被转录时,真核重组酶rec1催化同源配对。发现该反应依赖于rec1、RNA聚合酶、NTP和RNA合成的存在。组装成核小体的短DNA双链片段与单链环之间的异源双链体形成也依赖于双链体和环之间序列同源性的存在。这项研究的结果支持了这样一种观点,即染色体内转录活跃的区域更易于作为基因重组的位点。

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