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人类DNA聚合酶λ裂解酶结构域的溶液结构

Solution structure of the lyase domain of human DNA polymerase lambda.

作者信息

DeRose Eugene F, Kirby Thomas W, Mueller Geoffrey A, Bebenek Katarzyna, Garcia-Diaz Miguel, Blanco Luis, Kunkel Thomas A, London Robert E

机构信息

Laboratory of Structural Biology, National Institute of Environmental Health Sciences, National Institutes of Health, Box 12233, Research Triangle Park, North Carolina 27709, USA.

出版信息

Biochemistry. 2003 Aug 19;42(32):9564-74. doi: 10.1021/bi034298s.

Abstract

DNA polymerase lambda (pol lambda) is a recently discovered nuclear enzyme belonging to the pol X family of DNA polymerases that exhibits a 32% sequence identity with the nuclear DNA repair protein, pol beta. Structural modeling suggests that pol lambda contains the palm, fingers, thumb, and 8 kDa lyase domains present in pol beta, as well as an additional N-terminal BRCT domain and a serine-proline-rich linker that are presumably involved in protein-protein interactions. The 8 kDa domain of pol beta is important for DNA binding and contains the dRP lyase activity, which is the rate-limiting step in the single-nucleotide base excision repair (BER) pathway of damaged DNA. Recently, it was shown that the 8 kDa domain of pol lambda also contains the dRP lyase activity. To gain further insight into the catalytic mechanism of dRP removal by pol lambda, we have determined the solution structure of the 8 kDa lyase domain of human DNA pol lambda via multidimensional NMR methods and the ARIA program. The resulting structures exhibited a high degree of similarity with the 8 kDa lyase domain of pol beta. Specifically, the side chains of residues W274, R275, Y279, K307, R308, and K312 are in similar positions to the functionally important side chains of residues H34, K35, Y39, K60, K68, and K72 in the 8 kDa lyase domain of pol beta. This suggests that, on the basis of the proposed roles of these residues in pol beta, the corresponding pol lambda side chains may be involved in DNA binding and dRP lyase activity. The structural alignment of W274 (pol lambda) with H34 (pol beta) indicates that the former is probably involved in a similar base stacking interaction with template DNA at the position of the gap, in contrast with several previous proposals which aligned D272 with H34. In a few cases for which there is a nonconservative substitution in the sequence alignment, a structural comparison shows a positionally and, hence, probably a functionally equivalent residue, e.g., K60 in pol beta and K307 in pol lambda. Additionally, on the basis of the structural alignment obtained, several previously proposed mechanistic hypotheses can be evaluated.

摘要

DNA聚合酶λ(pol λ)是最近发现的一种属于DNA聚合酶X家族的核酶,它与核DNA修复蛋白pol β具有32%的序列同一性。结构模型表明,pol λ包含pol β中存在的手掌、手指、拇指和8 kDa裂解酶结构域,以及一个额外的N端BRCT结构域和一个富含丝氨酸-脯氨酸的连接子,它们可能参与蛋白质-蛋白质相互作用。pol β的8 kDa结构域对DNA结合很重要,并含有dRP裂解酶活性,这是受损DNA单核苷酸碱基切除修复(BER)途径中的限速步骤。最近发现,pol λ的8 kDa结构域也含有dRP裂解酶活性。为了更深入地了解pol λ去除dRP的催化机制,我们通过多维核磁共振方法和ARIA程序确定了人DNA pol λ的8 kDa裂解酶结构域的溶液结构。所得结构与pol β的8 kDa裂解酶结构域高度相似。具体而言,残基W274、R275、Y279、K307、R308和K312的侧链与pol β的8 kDa裂解酶结构域中残基H34、K35、Y39、K60、K68和K72的功能重要侧链处于相似位置。这表明,根据这些残基在pol β中的推测作用,相应的pol λ侧链可能参与DNA结合和dRP裂解酶活性。W274(pol λ)与H34(pol β)的结构比对表明,与之前将D272与H34比对的几个提议相反,前者可能在缺口位置与模板DNA参与类似的碱基堆积相互作用。在序列比对中存在非保守取代的少数情况下,结构比较显示出一个位置上且因此可能功能上等效的残基,例如pol β中的K60和pol λ中的K307。此外,基于获得的结构比对,可以评估几个先前提出的机制假说。

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