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The Shu complex regulates Rad52 localization during rDNA repair Running Head: Shu1 promotes rDNA repair

机译:Shu复合体在rDNA修复过程中调节Rad52的定位运行头部:Shu1促进rDNA修复

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摘要

The Shu complex, consisting of Rad51 paralogues, is an important regulator of homologous recombination, an error-free DNA repair pathway. Consequently, when members of this complex are disrupted, cells exhibit a mutator phenotype, sensitivity to DNA damage reagents and increased gross chromosomal rearrangements. Previously, we found that the Shu complex plays an important role in ribosomal DNA (rDNA) recombination when the Upstream Activating Factor (UAF) protein Uaf30 is disrupted. UAF30 encodes a protein needed for rDNA transcription and when deleted, rDNA recombination increases and the rDNA expands in a Shu1-dependent manner. Here we find using the uaf30-sensitized background that the central DNA repair protein Rad52, which is normally excluded from the nucleolus, frequently overlaps with the rDNA. This close association of Rad52 with the rDNA is dependent upon Shu1 in a uaf30 mutant. Previously, it was shown that in the absence of Rad52 sumoylation, Rad52 foci mislocalize to the nucleolus. Interestingly, here we find that using the uaf30 sensitized background the ability to regulate Rad52 sumoylation is important for Shu1 dependent rDNA recombination as well as Rad52 close association with rDNA. Our results suggest that in the absence of UAF30, the Shu complex plays a central role in Rad52 rDNA localization as long as Rad52 can be sumoylated. This discrimination is important for rDNA copy number homeostasis.
机译:Shu复合体由Rad51旁系同源物组成,是同源重组(无错误的DNA修复途径)的重要调节剂。因此,当该复合物的成员被破坏时,细胞会表现出突变表型,对DNA损伤试剂的敏感性以及增加的总染色体重排。以前,我们发现,当上游激活因子(UAF)蛋白Uaf30被破坏时,Shu复合物在核糖体DNA(rDNA)重组中起着重要作用。 UAF30编码rDNA转录所需的蛋白质,当缺失时,rDNA重组增加,并且rDNA以Shu1依赖性方式扩展。在这里,我们发现利用uaf30致敏的背景,通常从核仁中排除的中央DNA修复蛋白Rad52通常与rDNA重叠。 Rad52与rDNA的这种紧密联系取决于uaf30突变体中的Shu1。以前,已表明在不存在Rad52磺酰化的情况下,Rad52病灶会误定位到核仁上。有趣的是,在这里我们发现使用uaf30敏化的背景,调节Rad52 sumoylation的能力对于Shu1依赖的rDNA重组以及Rad52与rDNA的紧密结合非常重要。我们的结果表明,在不存在UAF30的情况下,只要Rad52可以被磺酰化,Shu复合体在Rad52 rDNA定位中就起着核心作用。这种区分对于rDNA拷贝数的动态平衡很重要。

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