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The Coprinus cinereus adherin Rad9 functions in Mre11-dependent DNA repair, meiotic sister-chromatid cohesion, and meiotic homolog pairing

机译:灰粉鬼伞粘附蛋白Rad9在依赖Mre11的DNA修复,减数分裂姐妹染色单体凝聚和减数分裂同源物配对中起作用

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摘要

Mitotic sister-chromatid cohesion (SCC) is known to depend in part on conserved proteins called adherins, which although necessary for SCC are not themselves localized between sister chromatids. We have examined mitotic DNA-repair and meiotic chromosome behavior in the Coprinus cinereus adherin mutant rad9-1. Genetic pathway analysis established that Rad9 functions in an Mre11-dependent pathway of DNA repair. Using fluorescence in situ hybridization, we found that the rad9-1 mutant is defective in the establishment of meiotic homolog pairing at both interstitial and subtelomeric sites but in the maintenance of pairing at only interstitial loci. To determine the role of Rad9 in meiotic SCC, we hybridized nuclear spreads simultaneously with a homolog-specific probe and a probe that recognizes both members of a homologous pair. We found that Rad9 is required for wild-type levels of meiotic SCC, and that nuclei showing loss of cohesion were twice as likely also to fail at homolog pairing. To ask whether the contribution of Rad9 to homolog pairing is solely in the establishment of SCC, we examined a rad9-1;msh5-22 double mutant, in which premeiotic DNA replication is inhibited. The msh5-22 mutation partially suppressed the deleterious effects of the rad9-1 mutation on homolog pairing; however, pairing in the double mutant still was significantly lower than in the msh5-22 single mutant control. Because the role of Rad9 in homolog pairing is not obviated by the absence of a sister chromatid, we conclude that adherins have one or more early meiotic functions distinct from the establishment of cohesion.
机译:已知有丝分裂姐妹染色单体凝聚力(SCC)部分依赖于称为粘附素的保守蛋白,尽管对于SCC而言是必需的,但它们本身并不位于姐妹染色单体之间。我们已经检查了灰粉鬼腿粘附素突变体rad9-1中的有丝分裂DNA修复和减数分裂染色体行为。遗传途径分析确定Rad9在依赖Mre11的DNA修复途径中起作用。使用荧光原位杂交,我们发现rad9-1突变体在间质和亚端粒位点的减数分裂同源配对的建立中存在缺陷,但在间质位点的配对维持中是有缺陷的。为了确定Rad9在减数分裂SCC中的作用,我们同时将核扩散与同源物特异性探针和识别同源对的两个成员的探针杂交。我们发现Rad9是减数分裂SCC的野生型水平所必需的,并且显示出内聚力丧失的核在同源配对中失败的可能性也增加了一倍。要询问Rad9对同源物配对的贡献是否仅在SCC的建立中,我们检查了rad9-1; msh5-22双突变体,其中减数分裂前DNA复制受到抑制。 msh5-22突变部分抑制了rad9-1突变对同源物配对的有害作用;但是,双突变体中的配对仍然明显低于msh5-22单突变体对照中的配对。因为没有姐妹染色单体不能消除Rad9在同系物配对中的作用,所以我们得出结论,粘附素具有一种或多种不同于内聚力建立的早期减数分裂功能。

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