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首页> 外文期刊>DNA repair >Disruption of SUMO-targeted ubiquitin ligases Slx5-Slx8/RNF4 alters RecQ-like helicase Sgs1/BLM localization in yeast and human cells
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Disruption of SUMO-targeted ubiquitin ligases Slx5-Slx8/RNF4 alters RecQ-like helicase Sgs1/BLM localization in yeast and human cells

机译:靶向SUMO的泛素连接酶Slx5-Slx8 / RNF4的破坏改变了酵母和人类细胞中RecQ样解旋酶Sgs1 / BLM的定位

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摘要

RecQ-like helicases are a highly conserved protein family that functions during DNA repair and, when mutated in humans, is associated with cancer and/or premature aging syndromes. The budding yeast RecQ-like helicase Sgs1 has important functions in double-strand break (DSB) repair of exogenously induced breaks, as well as those that arise endogenously, for example during DNA replication. To further investigate Sgs1's regulation, we analyzed the subcellular localization of a fluorescent fusion of Sgs1 upon DNA damage. Consistent with a role in DSB repair, Sgs1 recruitment into nuclear foci in asynchronous cultures increases after ionizing radiation (IR) and after exposure to the alkylating agent methyl methanesulfonate (MMS). Yet, despite the importance of Sgs1 in replicative damage repair and in contrast to its elevated protein levels during S-phase, we find that the number of Sgs1 foci decreases upon nucleotide pool depletion by hydroxyurea (HU) treatment and that this negative regulation depends on the intra S-phase checkpoint kinase Mec1. Importantly, we identify the SUMO-targeted ubiquitin ligase (STUbL) complex Slx5-Slx8 as a negative regulator of Sgs1 foci, both spontaneously and upon replicative damage. Slx5-Slx8 regulation of Sgs1 foci is likely conserved in eukaryotes, since expression of the mammalian Slx5-Slx8 functional homologue, RNF4, restores Sgs1 focus number in slx8 cells and furthermore, knockdown of RNF4 leads to more BLM foci in U-2 OS cells. Our results point to a model where RecQ-like helicase subcellular localization is regulated by STUbLs in response to DNA damage, presumably to prevent illegitimate recombination events. (C) 2014 Elsevier B.V. All rights reserved.
机译:RecQ样解旋酶是一个高度保守的蛋白质家族,在DNA修复过程中起作用,当在人类中发生突变时,与癌症和/或过早衰老综合征相关。出芽的酵母RecQ样解旋酶Sgs1在双链断裂(DSB)修复外源诱导的断裂以及内源性断裂(例如在DNA复制过程中产生的断裂)中具有重要功能。为了进一步研究Sgs1的调控,我们分析了DNA损伤后Sgs1荧光融合的亚细胞定位。与DSB修复作用一致,在电离辐射(IR)和暴露于烷基化剂甲磺酸甲酯(MMS)之后,异步培养中Sgs1募集入核灶中的现象增加。然而,尽管Sgs1在复制性损伤修复中很重要,并且与S期蛋白质水平升高相反,我们发现Sgs1病灶的数量会因羟基脲(HU)处理而导致的核苷酸库消耗减少,而这种负调控取决于内S期检查点激酶Mec1。重要的是,我们确定自发性和复制损伤时,靶向SUMO的泛素连接酶(STUbL)复合体Slx5-Slx8是Sgs1病灶的负调节剂。 Sgs1基因座的Slx5-Slx8调控在真核生物中可能是保守的,因为哺乳动物Slx5-Slx8功能同源物RNF4的表达使slx8细胞中的Sgs1焦点数恢复,此外,RNF4的敲除导致U-2 OS细胞中更多的BLM基因座。 。我们的结果指向一个模型,其中RecQ样解旋酶亚细胞定位受STUbL的调节,以响应DNA损伤,以防止非法重组事件。 (C)2014 Elsevier B.V.保留所有权利。

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