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Budding yeast Hed1 down-regulates the mitotic recombination machinery when meiotic recombination is impaired

机译:减数分裂重组受损时,发芽酵母Hed1下调有丝分裂重组机制。

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摘要

In budding yeast, there are two RecA homologs: Rad51 and Dmc1. While Rad51 is involved in both mitotic and meiotic recombination, Dmc1 participates specifically in meiotic recombination. Here, we describe a meiosis-specific protein (Hed1) with a novel Rad51 regulatory function. Several observations indicate that Hed1 attenuates Rad51 activity when Dmc1 is absent. First, although double-strand breaks are normally poorly repaired in the dmc1 mutant, repair becomes efficient when Hed1 is absent, and this effect depends on Rad51. Second, Rad51 and Hed1 colocalize as foci on meiotic chromosomes, and chromosomal localization of Hed1 depends on Rad51. Third, production of Hed1 in vegetative cells inhibits Rad51-dependent recombination events. Fourth, the Hed1 protein shows an interaction with Rad51 in the yeast two-hybrid protein system. We propose that Hed1 provides a mechanism to ensure the coordinated action of Rad51 and Dmc1 during meiosis, by down-regulating Rad51 activity when Dmc1 is unavailable.
机译:在出芽的酵母中,有两个RecA同源物:Rad51和Dmc1。尽管Rad51参与有丝分裂和减数分裂重组,但Dmc1专门参与减数分裂重组。在这里,我们描述了具有新型Rad51调节功能的减数分裂特异性蛋白(Hed1)。几个观察结果表明,缺少Dmc1时,Hed1会减弱Rad51的活性。首先,尽管在dmc1突变体中双链断裂通常修复不善,但是当Hed1不存在时修复变得有效,并且这种作用取决于Rad51。其次,Rad51和Hed1作为减数分裂染色体上的焦点共定位,而Hed1的染色体定位取决于Rad51。第三,在营养细胞中产生Hed1会抑制Rad51依赖的重组事件。第四,Hed1蛋白在酵母双杂交蛋白系统中显示出与Rad51的相互作用。我们建议Hed1提供了一种机制,通过在Dmc1不可用时下调Rad51的活性来确保减数分裂过程中Rad51和Dmc1的协调作用。

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