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催化金属在DNA聚合酶λ聚合过程中的作用。

Role of the catalytic metal during polymerization by DNA polymerase lambda.

作者信息

Garcia-Diaz Miguel, Bebenek Katarzyna, Krahn Joseph M, Pedersen Lars C, Kunkel Thomas A

机构信息

Laboratory of Structural Biology, National Institute of Environmental Health Sciences, National Institutes of Health, Department of Health and Human Services, Research Triangle Park, NC 27709, USA.

出版信息

DNA Repair (Amst). 2007 Sep 1;6(9):1333-40. doi: 10.1016/j.dnarep.2007.03.005. Epub 2007 May 1.

Abstract

The incorporation of dNMPs into DNA by polymerases involves a phosphoryl transfer reaction hypothesized to require two divalent metal ions. Here we investigate this hypothesis using as a model human DNA polymerase lambda (Pol lambda), an enzyme suggested to be activated in vivo by manganese. We report the crystal structures of four complexes of human Pol lambda. In a 1.9 A structure of Pol lambda containing a 3'-OH and the non-hydrolyzable analog dUpnpp, a non-catalytic Na+ ion occupies the site for metal A and the ribose of the primer-terminal nucleotide is found in a conformation that positions the acceptor 3'-OH out of line with the alpha-phosphate and the bridging oxygen of the pyrophosphate leaving group. Soaking this crystal in MnCl2 yielded a 2.0 A structure with Mn2+ occupying the site for metal A. In the presence of Mn2+, the conformation of the ribose is C3'-endo and the 3'-oxygen is in line with the leaving oxygen, at a distance from the phosphorus atom of the alpha-phosphate (3.69 A) consistent with and supporting a catalytic mechanism involving two divalent metal ions. Finally, soaking with MnCl2 converted a pre-catalytic Pol lambda/Na+ complex with unreacted dCTP in the active site into a product complex via catalysis in the crystal. These data provide pre- and post-transition state information and outline in a single crystal the pathway for the phosphoryl transfer reaction carried out by DNA polymerases.

摘要

聚合酶将脱氧核苷酸单磷酸(dNMPs)掺入DNA的过程涉及一个磷酸基转移反应,据推测该反应需要两个二价金属离子。在此,我们以人类DNA聚合酶λ(Pol λ)为模型来研究这一假说,该酶被认为在体内可被锰激活。我们报道了人类Pol λ的四种复合物的晶体结构。在一个含有3'-羟基和不可水解类似物dUpnpp的Pol λ的1.9埃结构中,一个非催化性的钠离子占据了金属A的位点,并且引物末端核苷酸的核糖呈现出一种构象,使得受体3'-羟基与α-磷酸和焦磷酸离去基团的桥连氧不在一条直线上。将此晶体浸泡在氯化锰中得到了一个2.0埃的结构,其中锰离子占据了金属A的位点。在锰离子存在的情况下,核糖的构象为C3'-内向型,并且3'-氧与离去氧在一条直线上,与α-磷酸的磷原子相距3.69埃,这与涉及两个二价金属离子的催化机制相符并提供了支持。最后,通过在晶体中进行催化,用氯化锰浸泡将活性位点带有未反应dCTP的预催化Pol λ/Na+复合物转化为产物复合物。这些数据提供了过渡态前后的信息,并在单晶中勾勒出了DNA聚合酶进行磷酸基转移反应的途径。

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