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1
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2
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3
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ATR homolog Mec1 controls association of DNA polymerase zeta-Rev1 complex with regions near a double-strand break.ATR 同源物 Mec1 控制 DNA 聚合酶 ζ-Rev1 复合物与双链断裂附近区域的结合。
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Complex formation of yeast Rev1 and Rev7 proteins: a novel role for the polymerase-associated domain.酵母Rev1和Rev7蛋白的复合物形成:聚合酶相关结构域的新作用。
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Cryo-EM structure of the Rev1-Polζ holocomplex reveals the mechanism of their cooperativity in translesion DNA synthesis.冷冻电镜结构研究揭示了 Rev1-Polζ 全酶复合物在跨损伤 DNA 合成中的协同作用机制。
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The non-canonical protein binding site at the monomer-monomer interface of yeast proliferating cell nuclear antigen (PCNA) regulates the Rev1-PCNA interaction and Polζ/Rev1-dependent translesion DNA synthesis.酵母增殖细胞核抗原(PCNA)单体-单体界面的非规范蛋白结合位点调节 Rev1-PCNA 相互作用和 Polζ/Rev1 依赖性跨损伤 DNA 合成。
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Rev7 promotes non-homologous end-joining by blocking Mre11 nuclease and Rad50's ATPase activities and homologous recombination.Rev7通过阻断Mre11核酸酶和Rad50的ATP酶活性以及同源重组来促进非同源末端连接。
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Rev1 overexpression accelerates N-methyl-N-nitrosourea (MNU)-induced thymic lymphoma by increasing mutagenesis.Rev1 过表达通过增加突变加速 N-甲基-N-亚硝脲(MNU)诱导的胸腺淋巴瘤。
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本文引用的文献

1
Hoogsteen base pair formation promotes synthesis opposite the 1,N6-ethenodeoxyadenosine lesion by human DNA polymerase iota.Hoogsteen碱基对的形成促进了人类DNA聚合酶ι在1,N6-乙烯基脱氧腺苷损伤位点对面的合成。
Nat Struct Mol Biol. 2006 Jul;13(7):619-25. doi: 10.1038/nsmb1118. Epub 2006 Jul 2.
2
Yeast and human translesion DNA synthesis polymerases: expression, purification, and biochemical characterization.酵母与人的跨损伤DNA合成聚合酶:表达、纯化及生化特性分析
Methods Enzymol. 2006;408:390-407. doi: 10.1016/S0076-6879(06)08024-4.
3
Ubiquitylation of yeast proliferating cell nuclear antigen and its implications for translesion DNA synthesis.酵母增殖细胞核抗原的泛素化及其对跨损伤DNA合成的影响。
Proc Natl Acad Sci U S A. 2006 Apr 25;103(17):6477-82. doi: 10.1073/pnas.0510924103. Epub 2006 Apr 12.
4
Complex formation of yeast Rev1 and Rev7 proteins: a novel role for the polymerase-associated domain.酵母Rev1和Rev7蛋白的复合物形成:聚合酶相关结构域的新作用。
Mol Cell Biol. 2005 Nov;25(21):9734-40. doi: 10.1128/MCB.25.21.9734-9740.2005.
5
Rev1 employs a novel mechanism of DNA synthesis using a protein template.Rev1采用一种利用蛋白质模板进行DNA合成的新机制。
Science. 2005 Sep 30;309(5744):2219-22. doi: 10.1126/science.1116336.
6
Eukaryotic translesion synthesis DNA polymerases: specificity of structure and function.真核生物跨损伤合成DNA聚合酶:结构与功能的特异性
Annu Rev Biochem. 2005;74:317-53. doi: 10.1146/annurev.biochem.74.082803.133250.
7
Mechanism of nucleotide incorporation opposite a thymine-thymine dimer by yeast DNA polymerase eta.酵母DNA聚合酶η在胸腺嘧啶-胸腺嘧啶二聚体对面掺入核苷酸的机制。
Proc Natl Acad Sci U S A. 2003 Oct 14;100(21):12093-8. doi: 10.1073/pnas.2134223100. Epub 2003 Oct 3.
8
Role of DNA polymerase eta in the UV mutation spectrum in human cells.DNA聚合酶η在人类细胞紫外线突变谱中的作用。
J Biol Chem. 2003 May 23;278(21):18767-75. doi: 10.1074/jbc.M211838200. Epub 2003 Mar 18.
9
Yeast DNA polymerase zeta is an efficient extender of primer ends opposite from 7,8-dihydro-8-Oxoguanine and O6-methylguanine.酵母DNA聚合酶ζ是引物末端与7,8-二氢-8-氧代鸟嘌呤和O6-甲基鸟嘌呤相对时的高效延伸酶。
Mol Cell Biol. 2003 Feb;23(4):1453-9. doi: 10.1128/MCB.23.4.1453-1459.2003.
10
Yeast DNA polymerase zeta (zeta) is essential for error-free replication past thymine glycol.酵母DNA聚合酶ζ对于绕过胸腺嘧啶乙二醇的无差错复制至关重要。
Genes Dev. 2003 Jan 1;17(1):77-87. doi: 10.1101/gad.1048303.

与Rev1形成复合物可提高酿酒酵母DNA聚合酶ζ对错配延伸以及对DNA损伤对面延伸的熟练度。

Complex formation with Rev1 enhances the proficiency of Saccharomyces cerevisiae DNA polymerase zeta for mismatch extension and for extension opposite from DNA lesions.

作者信息

Acharya Narottam, Johnson Robert E, Prakash Satya, Prakash Louise

机构信息

Sealy Center for Molecular Science, University of Texas Medical Branch at Galveston, Galveston, TX 77555-1061, USA.

出版信息

Mol Cell Biol. 2006 Dec;26(24):9555-63. doi: 10.1128/MCB.01671-06. Epub 2006 Oct 9.

DOI:10.1128/MCB.01671-06
PMID:17030609
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1698531/
Abstract

Rev1, a Y family DNA polymerase (Pol) functions together with Polzeta, a B family Pol comprised of the Rev3 catalytic subunit and Rev7 accessory subunit, in promoting translesion DNA synthesis (TLS). Extensive genetic studies with Saccharomyces cerevisiae have indicated a requirement of both Polzeta and Rev1 for damage-induced mutagenesis, implicating their involvement in mutagenic TLS. Polzeta is specifically adapted to promote the extension step of lesion bypass, as it proficiently extends primer termini opposite DNA lesions, and it is also a proficient extender of mismatched primer termini on undamaged DNAs. Since TLS through UV-induced lesions and various other DNA lesions does not depend upon the DNA-synthetic activity of Rev1, Rev1 must contribute to Polzeta-dependent TLS in a nonenzymatic way. Here, we provide evidence for the physical association of Rev1 with Polzeta and show that this binding is mediated through the C terminus of Rev1 and the polymerase domain of Rev3. Importantly, a rev1 mutant that lacks the C-terminal 72 residues which inactivate interaction with Rev3 exhibits the same high degree of UV sensitivity and defectiveness in UV-induced mutagenesis as that conferred by the rev1Delta mutation. We propose that Rev1 binding to Polzeta is indispensable for the targeting of Polzeta to the replication fork stalled at a DNA lesion. In addition to this structural role, Rev1 binding enhances the proficiency of Polzeta for the extension of mismatched primer termini on undamaged DNAs and for the extension of primer termini opposite DNA lesions.

摘要

Rev1是一种Y家族DNA聚合酶(Pol),它与Polζ一起发挥作用,Polζ是一种B家族聚合酶,由Rev3催化亚基和Rev7辅助亚基组成,可促进跨损伤DNA合成(TLS)。对酿酒酵母进行的广泛遗传学研究表明,损伤诱导的诱变需要Polζ和Rev1,这暗示它们参与了诱变TLS。Polζ特别适合促进损伤绕过的延伸步骤,因为它能有效地延伸与DNA损伤相对的引物末端,并且它也是未损伤DNA上错配引物末端的有效延伸剂。由于通过紫外线诱导的损伤和各种其他DNA损伤的TLS不依赖于Rev1的DNA合成活性,Rev1必须以非酶促方式促进依赖Polζ的TLS。在这里,我们提供了Rev1与Polζ物理结合的证据,并表明这种结合是通过Rev1的C末端和Rev3的聚合酶结构域介导的。重要的是,一个缺失与Rev3相互作用失活的C末端72个残基的rev1突变体,表现出与rev1Δ突变相同程度的紫外线敏感性和紫外线诱导诱变缺陷。我们提出,Rev1与Polζ的结合对于将Polζ靶向停滞在DNA损伤处的复制叉是必不可少的。除了这种结构作用外,Rev1结合还提高了Polζ在未损伤DNA上延伸错配引物末端以及延伸与DNA损伤相对的引物末端的能力。