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酿酒酵母rad突变体中的转化与重组

Transformation and recombination in rad mutants of Saccharomyces cerevisiae.

作者信息

Simon J R, Moore P D

机构信息

Department of Microbiology and Immunology, University of Illinois College of Medicine, Chicago 60612.

出版信息

Mol Gen Genet. 1990 Sep;223(2):241-8. doi: 10.1007/BF00265060.

Abstract

Disruption/deletion mutations in genes of the RAD52 epistasis group of Saccharomyces cerevisiae were examined for their effects on recombination between single- and double-stranded circular DNA substrates and chromosomal genes in a transformation assay. In rad50 mutants there was a small reduction in recombination with single-stranded DNA at the leu2-3, 112 allele; in addition there was an almost complete elimination of recombination at trp1-1 for both single- and double-stranded DNA. Reintroduction of a wild-type RAD50 gene on a replicating plasmid carrying CEN4 restored recombinational competence at trp1-1, indicating that rad50 is defective in gene replacement of this allele. In rad52 mutants a reduction of 30%-50% in recombination involving either single- or double-stranded circular DNA was observed in each experiment when compared to the wild type. This reduction of recombination in rad52 mutants was similar for recombination at the ura3-52 mutant locus where only integration events have been observed, and at the trp1-1 mutant locus, where recombination occurs predominantly by gene replacement. Neither the rad54 nor the rad57 mutations had a significant effect on recombination with single- or double-stranded DNA substrates.

摘要

在转化试验中,研究了酿酒酵母RAD52上位性组基因中的破坏/缺失突变对单链和双链环状DNA底物与染色体基因之间重组的影响。在rad50突变体中,在leu2-3、112等位基因处与单链DNA的重组略有减少;此外,对于单链和双链DNA,trp1-1处的重组几乎完全消除。在携带CEN4的复制质粒上重新引入野生型RAD50基因可恢复trp1-1处的重组能力,表明rad50在该等位基因的基因置换中存在缺陷。与野生型相比,在每个实验中,rad52突变体中涉及单链或双链环状DNA的重组减少了30%-50%。在仅观察到整合事件的ura3-52突变位点和主要通过基因置换发生重组的trp1-1突变位点,rad52突变体中这种重组减少情况相似。rad54和rad57突变对与单链或双链DNA底物的重组均无显著影响。

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