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2
Structural basis for DNA binding by replication initiator Mcm10.复制起始因子Mcm10与DNA结合的结构基础
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The physical interaction of Mcm10 with Cdc45 modulates their DNA-binding properties.Mcm10 与 Cdc45 的物理相互作用调节它们的 DNA 结合特性。
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Archaeal MCM Proteins as an Analog for the Eukaryotic Mcm2-7 Helicase to Reveal Essential Features of Structure and Function.古菌MCM蛋白作为真核生物Mcm2-7解旋酶的类似物以揭示结构和功能的基本特征
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本文引用的文献

1
Activation of the MCM2-7 helicase by association with Cdc45 and GINS proteins.MCM2-7 解旋酶通过与 Cdc45 和 GINS 蛋白的结合被激活。
Mol Cell. 2010 Jan 29;37(2):247-58. doi: 10.1016/j.molcel.2009.12.030.
2
Alternative mechanisms for coordinating polymerase alpha and MCM helicase.协调聚合酶α和 MCM 解旋酶的替代机制。
Mol Cell Biol. 2010 Jan;30(2):423-35. doi: 10.1128/MCB.01240-09. Epub 2009 Nov 16.
3
Concerted loading of Mcm2-7 double hexamers around DNA during DNA replication origin licensing.在DNA复制起点许可过程中,Mcm2-7双六聚体围绕DNA的协同装载。
Cell. 2009 Nov 13;139(4):719-30. doi: 10.1016/j.cell.2009.10.015. Epub 2009 Nov 5.
4
Assembly of the Cdc45-Mcm2-7-GINS complex in human cells requires the Ctf4/And-1, RecQL4, and Mcm10 proteins.人细胞中Cdc45-Mcm2-7-GINS复合物的组装需要Ctf4/And-1、RecQL4和Mcm10蛋白。
Proc Natl Acad Sci U S A. 2009 Sep 15;106(37):15628-32. doi: 10.1073/pnas.0908039106. Epub 2009 Sep 8.
5
MCM10 mediates RECQ4 association with MCM2-7 helicase complex during DNA replication.在DNA复制过程中,MCM10介导RECQ4与MCM2 - 7解旋酶复合体的结合。
EMBO J. 2009 Oct 7;28(19):3005-14. doi: 10.1038/emboj.2009.235. Epub 2009 Aug 20.
6
A key role for Ctf4 in coupling the MCM2-7 helicase to DNA polymerase alpha within the eukaryotic replisome.Ctf4在真核生物复制体中将MCM2-7解旋酶与DNA聚合酶α偶联中起关键作用。
EMBO J. 2009 Oct 7;28(19):2992-3004. doi: 10.1038/emboj.2009.226. Epub 2009 Aug 6.
7
Physical interactions between Mcm10, DNA, and DNA polymerase alpha.Mcm10、DNA与DNA聚合酶α之间的物理相互作用。
J Biol Chem. 2009 Sep 4;284(36):24662-72. doi: 10.1074/jbc.M109.020438. Epub 2009 Jul 16.
8
Novel DNA binding properties of the Mcm10 protein from Saccharomyces cerevisiae.酿酒酵母Mcm10蛋白的新型DNA结合特性。
J Biol Chem. 2009 Sep 11;284(37):25412-20. doi: 10.1074/jbc.M109.033175. Epub 2009 Jul 15.
9
Ctf4 coordinates the progression of helicase and DNA polymerase alpha.Ctf4协调解旋酶和DNA聚合酶α的进程。
Genes Cells. 2009 Jul;14(7):807-20. doi: 10.1111/j.1365-2443.2009.01310.x. Epub 2009 Jun 3.
10
NMR analysis of the architecture and functional remodeling of a modular multidomain protein, RPA.模块化多结构域蛋白RPA的结构与功能重塑的核磁共振分析
J Am Chem Soc. 2009 May 13;131(18):6346-7. doi: 10.1021/ja9013634.

Mcm10 羧基末端 DNA 结合域的溶液 NMR 结构揭示了一个保守的 MCM 基序。

Solution NMR structure of the C-terminal DNA binding domain of Mcm10 reveals a conserved MCM motif.

机构信息

Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee 37232, USA.

出版信息

J Biol Chem. 2010 Jul 23;285(30):22942-9. doi: 10.1074/jbc.M110.131276. Epub 2010 May 19.

DOI:10.1074/jbc.M110.131276
PMID:20489205
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2906287/
Abstract

The eukaryotic DNA replication protein Mcm10 associates with chromatin in early S-phase and is required for assembly and function of the replication fork protein machinery. Xenopus laevis (X) Mcm10 binds DNA via a highly conserved internal domain (ID) and a C-terminal domain (CTD) that is unique to higher eukaryotes. Although the structural basis of the interactions of the ID with DNA and polymerase alpha is known, little information is available for the CTD. We have identified the minimal DNA binding region of the XMcm10-CTD and determined its three-dimensional structure by solution NMR. The CTD contains a globular domain composed of two zinc binding motifs. NMR chemical shift perturbation and mutational analysis show that ssDNA binds only to the N-terminal (CCCH-type) zinc motif, whose structure is unique to Mcm10. The second (CCCC-type) zinc motif is not involved in DNA binding. However, it is structurally similar to the CCCC zinc ribbon in the N-terminal oligomerization domain of eukaryotic and archaeal MCM helicases. NMR analysis of a construct spanning both the ID and CTD reveals that the two DNA binding domains are structurally independent in solution, supporting a modular architecture for vertebrate Mcm10. Our results provide insight in the action of Mcm10 in the replisome and support a model in which it serves as a central scaffold through coupling of interactions with partner proteins and the DNA.

摘要

真核生物 DNA 复制蛋白 Mcm10 与早期 S 期的染色质相关联,对于复制叉蛋白机器的组装和功能是必需的。非洲爪蟾(X)Mcm10 通过高度保守的内部结构域(ID)和仅存在于高等真核生物中的 C 末端结构域(CTD)与 DNA 结合。尽管已经知道 ID 与 DNA 和聚合酶 α 的相互作用的结构基础,但关于 CTD 的信息却很少。我们已经鉴定了 XMcm10-CTD 的最小 DNA 结合区域,并通过溶液 NMR 确定了其三维结构。该 CTD 包含一个由两个锌结合基序组成的球形结构域。NMR 化学位移扰动和突变分析表明,ssDNA 仅与 N 端(CCCH 型)锌基序结合,其结构是 Mcm10 所特有的。第二个(CCCC 型)锌基序不参与 DNA 结合。然而,它在结构上与真核生物和古菌 MCM 解旋酶的 N 端寡聚化结构域中的 CCCC 锌带相似。跨越 ID 和 CTD 的构建体的 NMR 分析表明,两个 DNA 结合结构域在溶液中结构上是独立的,支持脊椎动物 Mcm10 的模块化结构。我们的研究结果提供了 Mcm10 在复制体中的作用的见解,并支持了一种模型,即它通过与伴侣蛋白和 DNA 的相互作用作为中央支架来发挥作用。