首页> 美国卫生研究院文献>Genetics >Homologous and Homeologous Intermolecular Gene Conversion Are Not Differentially Affected by Mutations in the DNA Damage or the Mismatch Repair Genes Rad1 Rad50 Rad51 Rad52 Rad54 Pms1 and Msh2
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Homologous and Homeologous Intermolecular Gene Conversion Are Not Differentially Affected by Mutations in the DNA Damage or the Mismatch Repair Genes Rad1 Rad50 Rad51 Rad52 Rad54 Pms1 and Msh2

机译:同源和同源分子间基因转换不受DNA损伤或不匹配修复基因Rad1Rad50Rad51Rad52Rad54Pms1和Msh2突变的差异影响

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摘要

Mismatch repair (MMR) genes or genes involved in both DNA damage repair and homologous recombination might affect homeologous vs. homologous recombination differentially. Spontaneous mitotic gene conversion between a chromosome and a homologous or homeologous donor sequence (14% diverged) on a single copy plasmid was examined in wild-type Saccharomyces cerevisiae strains and in MMR or DNA damage repair mutants. Homologous recombination in rad51, rad52 and rad54 mutants was considerably reduced, while there was little effect of rad1, rad50, pms1 and msh2 null mutations. DNA divergence resulted in no differential effect on recombination rates in the wild type or the mutants; there was only a five- to 10-fold reduction in homeologous relative to homologous recombination regardless of background. Since DNA divergence is known to affect recombination in some systems, we propose that differences in the role of MMR depends on the mode of recombination and/or the level of divergence. Based on analysis of the recombination breakpoints, there is a minimum of three homologous bases required at a recombination junction. A comparison of Rad(+) vs. rad52 strains revealed that while all conversion tracts are continuous, elimination of RAD52 leads to the appearance of a novel class of very short conversion tracts.
机译:错配修复(MMR)基因或参与DNA损伤修复和同源重组的基因可能会对同源重组和同源重组产生不同的影响。在野生型酿酒酵母菌株和MMR或DNA损伤修复突变体中,检查了单拷贝质粒上染色体与同源或同源供体序列(14%差异)之间的自发有丝分裂基因转化。 rad51,rad52和rad54突变体中的同源重组显着降低,而rad1,rad50,pms1和msh2无效突变的影响很小。 DNA差异对野生型或突变体的重组率没有影响。不论背景如何,相对于同源重组而言,同源重组仅减少了5至10倍。由于已知DNA分歧会影响某些系统中的重组,因此我们提出MMR作用的差异取决于重组方式和/或分歧水平。根据重组断裂点的分析,重组连接处至少需要三个同源碱基。 Rad(+)与rad52菌株的比较显示,尽管所有转化道都是连续的,但RAD52的消除导致出现一类新型的非常短的转化道。

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