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对B家族复制性DNA聚合酶核酸外切酶结构域中发现的β发夹环在校读中的作用进行的结构和生化研究。

Structural and biochemical investigation of the role in proofreading of a beta hairpin loop found in the exonuclease domain of a replicative DNA polymerase of the B family.

作者信息

Hogg Matthew, Aller Pierre, Konigsberg William, Wallace Susan S, Doublié Sylvie

机构信息

Department of Microbiology and Molecular Genetics, University of Vermont, Burlington, Vermont 05405, USA.

出版信息

J Biol Chem. 2007 Jan 12;282(2):1432-44. doi: 10.1074/jbc.M605675200. Epub 2006 Nov 9.

DOI:10.1074/jbc.M605675200
PMID:17098747
Abstract

Replicative DNA polymerases, as exemplified by the B family polymerases from bacteriophages T4 and RB69, not only replicate DNA but also have the ability to proofread misincorporated nucleotides. Because the two activities reside in separate protein domains, polymerases must employ a mechanism that allows for efficient switching of the primer strand between the two active sites to achieve fast and accurate replication. Prior mutational and structural studies suggested that a beta hairpin structure located in the exonuclease domain of family B polymerases might play an important role in active site switching in the event of a nucleotide misincorporation. We show that deleting the beta hairpin loop in RB69 gp43 affects neither polymerase nor exonuclease activities. Single binding event studies with mismatched primer termini, however, show that the beta hairpin plays a role in maintaining the stability of the polymerase/DNA interactions during the binding of the primer DNA in the exonuclease active site but not on the return of the corrected primer to the polymerase active site. In addition, the deletion variant showed a more stable incorporation of a nucleotide opposite an abasic site. Moreover, in the 2.4 A crystal structure of the beta hairpin deletion variant incorporating an A opposite a templating furan, all four molecules in the crystal asymmetric unit have DNA in the polymerase active site, despite the presence of DNA distortions because of the misincorporation, confirming that the primer strand is not stably bound within the exonuclease active site in the absence of the beta hairpin loop.

摘要

以噬菌体T4和RB69的B族聚合酶为例,复制性DNA聚合酶不仅能复制DNA,还具有校对错配核苷酸的能力。由于这两种活性存在于不同的蛋白质结构域中,聚合酶必须采用一种机制,使引物链能够在两个活性位点之间高效切换,以实现快速准确的复制。先前的突变和结构研究表明,位于B族聚合酶核酸外切酶结构域的β发夹结构在核苷酸错配时的活性位点切换中可能起重要作用。我们发现,删除RB69 gp43中的β发夹环既不影响聚合酶活性也不影响核酸外切酶活性。然而,对错配引物末端的单结合事件研究表明,β发夹在核酸外切酶活性位点结合引物DNA过程中,对维持聚合酶/DNA相互作用的稳定性起作用,但对校正后的引物返回聚合酶活性位点不起作用。此外,缺失变体在无碱基位点对面掺入核苷酸时表现出更稳定的情况。而且,在β发夹缺失变体与模板呋喃相对掺入A的2.4埃晶体结构中,尽管由于错配存在DNA扭曲,但晶体不对称单元中的所有四个分子在聚合酶活性位点都有DNA,这证实了在没有β发夹环的情况下,引物链在核酸外切酶活性位点内结合不稳定。

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