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裂殖酵母中的BLM同源物Rqh1促进减数分裂重组。

The fission yeast BLM homolog Rqh1 promotes meiotic recombination.

作者信息

Cromie Gareth A, Hyppa Randy W, Smith Gerald R

机构信息

Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, Washington 98109-1024, USA.

出版信息

Genetics. 2008 Jul;179(3):1157-67. doi: 10.1534/genetics.108.088955. Epub 2008 Jun 18.

Abstract

RecQ helicases are found in organisms as diverse as bacteria, fungi, and mammals. These proteins promote genome stability, and mutations affecting human RecQ proteins underlie premature aging and cancer predisposition syndromes, including Bloom syndrome, caused by mutations affecting the BLM protein. In this study we show that mutants lacking the Rqh1 protein of the fission yeast Schizosaccharomyces pombe, a RecQ and BLM homolog, have substantially reduced meiotic recombination, both gene conversions and crossovers. The relative proportion of gene conversions having associated crossovers is unchanged from that in wild type. In rqh1 mutants, meiotic DNA double-strand breaks are formed and disappear with wild-type frequency and kinetics, and spore viability is only moderately reduced. Genetic analyses and the wild-type frequency of both intersister and interhomolog joint molecules argue against these phenotypes being explained by an increase in intersister recombination at the expense of interhomolog recombination. We suggest that Rqh1 extends hybrid DNA and biases the recombination outcome toward crossing over. Our results contrast dramatically with those from the budding yeast ortholog, Sgs1, which has a meiotic antirecombination function that suppresses recombination events involving more than two DNA duplexes. These observations underscore the multiple recombination functions of RecQ homologs and emphasize that even conserved proteins can be adapted to play different roles in different organisms.

摘要

RecQ解旋酶存在于细菌、真菌和哺乳动物等多种生物中。这些蛋白质促进基因组稳定性,影响人类RecQ蛋白质的突变是早衰和癌症易感综合征的基础,包括由影响BLM蛋白质的突变引起的布卢姆综合征。在本研究中,我们发现缺乏粟酒裂殖酵母(一种RecQ和BLM同源物)的Rqh1蛋白的突变体减数分裂重组显著减少,包括基因转换和交叉。与野生型相比,具有相关交叉的基因转换的相对比例没有变化。在rqh1突变体中,减数分裂DNA双链断裂以野生型频率和动力学形成并消失,孢子活力仅略有降低。遗传分析以及姐妹染色单体间和同源染色体间联合分子的野生型频率表明,这些表型不能用牺牲同源染色体间重组来增加姐妹染色单体间重组来解释。我们认为Rqh1会延长杂种DNA,并使重组结果偏向于交叉。我们的结果与芽殖酵母直系同源物Sgs1的结果形成了鲜明对比,Sgs1具有减数分裂抗重组功能,可抑制涉及两个以上DNA双链体的重组事件。这些观察结果强调了RecQ同源物的多种重组功能,并强调即使是保守蛋白质也可以在不同生物体中发挥不同作用。

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