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一种最小化多能DNA连接酶识别切口的结构基础。

Structural basis for nick recognition by a minimal pluripotent DNA ligase.

作者信息

Nair Pravin A, Nandakumar Jayakrishnan, Smith Paul, Odell Mark, Lima Christopher D, Shuman Stewart

机构信息

Molecular Biology and Structural Biology Programs, Sloan-Kettering Institute, New York, New York 10021, USA.

出版信息

Nat Struct Mol Biol. 2007 Aug;14(8):770-8. doi: 10.1038/nsmb1266. Epub 2007 Jul 8.

Abstract

Chlorella virus DNA ligase, the smallest eukaryotic ligase known, has pluripotent biological activity and an intrinsic nick-sensing function, despite having none of the accessory domains found in cellular ligases. A 2.3-A crystal structure of the Chlorella virus ligase-AMP intermediate bound to duplex DNA containing a 3'-OH-5'-PO4 nick reveals a new mode of DNA envelopment, in which a short surface loop emanating from the OB domain forms a beta-hairpin 'latch' that inserts into the DNA major groove flanking the nick. A network of interactions with the 3'-OH and 5'-PO4 termini in the active site illuminates the DNA adenylylation mechanism and the crucial roles of AMP in nick sensing and catalysis. Addition of a divalent cation triggered nick sealing in crystallo, establishing that the nick complex is a bona fide intermediate in the DNA repair pathway.

摘要

小球藻病毒DNA连接酶是已知最小的真核连接酶,尽管它没有细胞连接酶中发现的辅助结构域,但具有多能生物活性和内在的切口传感功能。与含有3'-OH-5'-PO4切口的双链DNA结合的小球藻病毒连接酶-AMP中间体的2.3埃晶体结构揭示了一种新的DNA包绕模式,其中从OB结构域发出的短表面环形成一个β-发夹“闩锁”,插入到切口侧翼的DNA大沟中。与活性位点中3'-OH和5'-PO4末端的相互作用网络阐明了DNA腺苷酸化机制以及AMP在切口传感和催化中的关键作用。添加二价阳离子在晶体中触发切口封闭,证实切口复合物是DNA修复途径中的真正中间体。

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