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酿酒酵母Rad6复制后修复以及Siz1/Srs2同源重组抑制途径处理在asf1突变体中出现的DNA损伤。

The Saccharomyces cerevisiae Rad6 postreplication repair and Siz1/Srs2 homologous recombination-inhibiting pathways process DNA damage that arises in asf1 mutants.

作者信息

Kats Ellen S, Enserink Jorrit M, Martinez Sandra, Kolodner Richard D

机构信息

Ludwig Institute for Cancer Research, Departments of Medicine and Cellular and Molecular Medicine, and Biomedical Sciences Graduate Program, UC San Diego School of Medicine, 9500 Gilman Drive, La Jolla, CA 92093-0669, USA.

出版信息

Mol Cell Biol. 2009 Oct;29(19):5226-37. doi: 10.1128/MCB.00894-09. Epub 2009 Jul 27.

DOI:10.1128/MCB.00894-09
PMID:19635810
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2747975/
Abstract

The Asf1 and Rad6 pathways have been implicated in a number of common processes such as suppression of gross chromosomal rearrangements (GCRs), DNA repair, modification of chromatin, and proper checkpoint functions. We examined the relationship between Asf1 and different gene products implicated in postreplication repair (PRR) pathways in the suppression of GCRs, checkpoint function, sensitivity to hydroxyurea (HU) and methyl methanesulfonate (MMS), and ubiquitination of proliferating cell nuclear antigen (PCNA). We found that defects in Rad6 PRR pathway and Siz1/Srs2 homologous recombination suppression (HRS) pathway genes suppressed the increased GCR rates seen in asf1 mutants, which was independent of translesion bypass polymerases but showed an increased dependency on Dun1. Combining an asf1 deletion with different PRR mutations resulted in a synergistic increase in sensitivity to chronic HU and MMS treatment; however, these double mutants were not checkpoint defective, since they were capable of recovering from acute treatment with HU. Interestingly, we found that Asf1 and Rad6 cooperate in ubiquitination of PCNA, indicating that Rad6 and Asf1 function in parallel pathways that ubiquitinate PCNA. Our results show that ASF1 probably contributes to the maintenance of genome stability through multiple mechanisms, some of which involve the PRR and HRS pathways.

摘要

Asf1和Rad6途径参与了许多常见过程,如抑制大规模染色体重排(GCR)、DNA修复、染色质修饰以及正常的检查点功能。我们研究了Asf1与参与复制后修复(PRR)途径的不同基因产物之间的关系,这些关系涉及GCR抑制、检查点功能、对羟基脲(HU)和甲磺酸甲酯(MMS)的敏感性以及增殖细胞核抗原(PCNA)的泛素化。我们发现,Rad6 PRR途径和Siz1/Srs2同源重组抑制(HRS)途径基因的缺陷抑制了asf1突变体中观察到的GCR率增加,这与跨损伤旁路聚合酶无关,但显示出对Dun1的依赖性增加。将asf1缺失与不同的PRR突变相结合,会导致对慢性HU和MMS处理的敏感性协同增加;然而,这些双突变体没有检查点缺陷,因为它们能够从HU的急性处理中恢复。有趣的是,我们发现Asf1和Rad6在PCNA的泛素化过程中相互协作,这表明Rad6和Asf1在使PCNA泛素化的平行途径中发挥作用。我们的结果表明,ASF1可能通过多种机制有助于维持基因组稳定性,其中一些机制涉及PRR和HRS途径。

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本文引用的文献

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Reconstitution of Rad53 activation by Mec1 through adaptor protein Mrc1.通过衔接蛋白Mrc1,Mec1介导Rad53的激活重建。
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