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嗜热栖热放线菌[甲基-¹³C]甲硫氨酸UvrB的核磁共振分析揭示了溶液中UvrB结构域4异二聚体的形成。

NMR analysis of [methyl-13C]methionine UvrB from Bacillus caldotenax reveals UvrB-domain 4 heterodimer formation in solution.

作者信息

DellaVecchia Matthew J, Merritt W Keither, Peng Ye, Kirby Thomas W, DeRose Eugene F, Mueller Geoffrey A, Van Houten Bennett, London Robert E

机构信息

Laboratory of Molecular Genetics, National Institute of Environmental Health Sciences, NIH, Research Triangle Park, NC 27709, USA.

出版信息

J Mol Biol. 2007 Oct 19;373(2):282-95. doi: 10.1016/j.jmb.2007.07.045. Epub 2007 Aug 2.

Abstract

UvrB is a central DNA damage recognition protein involved in bacterial nucleotide excision repair. Structural information has been limited by the apparent disorder of the C-terminal domain 4 in crystal structures of intact UvrB; in solution, the isolated domain 4 is found to form a helix-loop-helix dimer. In order to gain insight into the behavior of UvrB in solution, we have performed NMR studies on [methyl-13C]methionine-labeled UvrB from Bacillus caldotenax (molecular mass=75 kDa). The 13 methyl resonances were assigned on the basis of site-directed mutagenesis and domain deletion. Solvent accessibility was assessed based on the relaxation and chemical shift responses of the probe methyl resonances to the stable nitroxide, 4-hydroxy-2,2,6,6-tetramethylpiperidine-1-oxyl (TEMPOL). M632, located at the potential dimer interface of domain 4, provides an ideal probe for UvrB dimerization behavior. The M632 resonance of UvrB is very broad, consistent with some degree of monomer-dimer exchange and/or conformational instability of the exposed dimer interface. Upon addition of unlabeled domain 4 peptide, the M632 resonance of UvrB sharpens and shifts to a position consistent with a UvrB-domain 4 heterodimer. A dissociation constant (KD) value of 3.3 microM for the binding constant of UvrB with the domain 4 peptide was derived from surface plasmon resonance studies. Due to the flexibility of the domain 3-4 linker, inferred from limited proteolysis data and from the relaxation behavior of linker residue M607, the position of domain 4 is constrained not by the stiffness of the linking segment but by direct interactions with domains 1-3 in UvrB. In summary, UvrB homodimerization is disfavored, while domain 4 homodimerization and UvrB-domain 4 heterodimerization are allowed.

摘要

UvrB是一种参与细菌核苷酸切除修复的核心DNA损伤识别蛋白。完整UvrB晶体结构中C末端结构域4明显无序,限制了结构信息;在溶液中,分离出的结构域4形成螺旋-环-螺旋二聚体。为深入了解UvrB在溶液中的行为,我们对来自嗜热栖热放线菌(分子量 = 75 kDa)的[甲基-13C]甲硫氨酸标记的UvrB进行了核磁共振研究。基于定点诱变和结构域缺失确定了13个甲基共振峰。根据探针甲基共振峰对稳定氮氧化物4-羟基-2,2,6,6-四甲基哌啶-1-氧基(TEMPOL)的弛豫和化学位移响应评估溶剂可及性。位于结构域4潜在二聚体界面的M632为UvrB二聚化行为提供了理想探针。UvrB的M632共振峰非常宽,这与暴露的二聚体界面存在一定程度的单体-二聚体交换和/或构象不稳定性一致。加入未标记的结构域4肽后,UvrB的M632共振峰变尖锐,并移动到与UvrB-结构域4异二聚体一致的位置。通过表面等离子体共振研究得出UvrB与结构域4肽结合常数的解离常数(KD)值为3.3 microM。根据有限的蛋白酶解数据以及连接子残基M607的弛豫行为推断,由于结构域3-4连接子的灵活性,结构域4的位置不是由连接片段的刚性限制,而是由与UvrB中结构域1-3的直接相互作用限制。总之,UvrB同二聚化不受青睐,而结构域4同二聚化和UvrB-结构域4异二聚化是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f52/2626275/f0664b152e82/nihms-32146-f0001.jpg

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