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一种由真核病毒编码的依赖烟酰胺腺嘌呤二核苷酸(NAD+)的DNA连接酶。

NAD+-dependent DNA ligase encoded by a eukaryotic virus.

作者信息

Sriskanda V, Moyer R W, Shuman S

机构信息

Molecular Biology Program, Sloan-Kettering Institute, New York, New York 10021, USA.

出版信息

J Biol Chem. 2001 Sep 28;276(39):36100-9. doi: 10.1074/jbc.M105643200. Epub 2001 Jul 17.

Abstract

We report the production, purification, and characterization of an NAD(+)-dependent DNA ligase encoded by the Amsacta moorei entomopoxvirus (AmEPV), the first example of an NAD(+) ligase from a source other than eubacteria. AmEPV ligase lacks the zinc-binding tetracysteine domain and the BRCT domain that are present in all eubacterial NAD(+) ligases. Nonetheless, the monomeric 532-amino acid AmEPV ligase catalyzed strand joining on a singly nicked DNA in the presence of a divalent cation and NAD(+). Neither ATP, dATP, nor any other nucleoside triphosphate could substitute for NAD(+). Structure probing by limited proteolysis showed that AmEPV ligase is punctuated by a surface-accessible loop between the nucleotidyltransferase domain, which is common to all ligases, and the N-terminal domain Ia, which is unique to the NAD(+) ligases. Deletion of domain Ia of AmEPV ligase abolished the sealing of 3'-OH/5'-PO(4) nicks and the reaction with NAD(+) to form ligase-adenylate, but had no effect on phosphodiester formation at a pre-adenylated nick. Alanine substitutions at residues within domain Ia either reduced (Tyr(39), Tyr(40), Asp(48), and Asp(52)) or abolished (Tyr(51)) sealing of a 5'-PO(4) nick and adenylyl transfer from NAD(+) without affecting ligation of DNA-adenylate. We conclude that: (i) NAD(+)-dependent ligases exist in the eukaryotic domain of the phylogenetic tree; and (ii) ligase structural domain Ia is a determinant of cofactor specificity and is likely to interact directly with the nicotinamide mononucleotide moiety of NAD(+).

摘要

我们报道了由摩尔夜蛾昆虫痘病毒(AmEPV)编码的一种依赖NAD⁺的DNA连接酶的产生、纯化及特性鉴定,这是首个来自真细菌以外来源的NAD⁺连接酶的实例。AmEPV连接酶缺乏所有真细菌NAD⁺连接酶中存在的锌结合四半胱氨酸结构域和BRCT结构域。尽管如此,单体的532个氨基酸的AmEPV连接酶在二价阳离子和NAD⁺存在的情况下催化单切口DNA上的链连接。ATP、dATP或任何其他核苷三磷酸都不能替代NAD⁺。通过有限蛋白酶解进行的结构探测表明,AmEPV连接酶在所有连接酶共有的核苷酸转移酶结构域与NAD⁺连接酶特有的N端结构域Ia之间有一个可及表面的环。删除AmEPV连接酶的结构域Ia消除了3'-OH/5'-PO₄切口的封闭以及与NAD⁺反应形成连接酶-腺苷酸,但对预腺苷酸化切口处的磷酸二酯形成没有影响。结构域Ia内残基的丙氨酸替代要么降低(Tyr³⁹、Tyr⁴⁰、Asp⁴⁸和Asp⁵²)要么消除(Tyr⁵¹)5'-PO₄切口的封闭以及NAD⁺的腺苷酰转移,而不影响DNA-腺苷酸的连接。我们得出结论:(i)依赖NAD⁺的连接酶存在于系统发育树的真核结构域中;(ii)连接酶结构域Ia是辅因子特异性的决定因素,并且可能直接与NAD⁺的烟酰胺单核苷酸部分相互作用。

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