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枯草芽孢杆菌 PolX 核心的 DNA 稳定作用——一种协调聚合酶、AP 内切核酸酶和 3'-5' 外切核酸酶活性的结合模型。

DNA stabilization at the Bacillus subtilis PolX core--a binding model to coordinate polymerase, AP-endonuclease and 3'-5' exonuclease activities.

机构信息

Instituto de Biología Molecular Eladio Viñuela (CSIC), Centro de Biología Molecular Severo Ochoa (CSIC-UAM), C/Nicolás Cabrera 1, Universidad Autónoma, Cantoblanco, 28049 Madrid, Spain.

出版信息

Nucleic Acids Res. 2012 Oct;40(19):9750-62. doi: 10.1093/nar/gks702. Epub 2012 Jul 25.

Abstract

Family X DNA polymerases (PolXs) are involved in DNA repair. Their binding to gapped DNAs relies on two conserved helix-hairpin-helix motifs, one located at the 8-kDa domain and the other at the fingers subdomain. Bacterial/archaeal PolXs have a specifically conserved third helix-hairpin-helix motif (GFGxK) at the fingers subdomain whose putative role in DNA binding had not been established. Here, mutagenesis at the corresponding residues of Bacillus subtilis PolX (PolXBs), Gly130, Gly132 and Lys134 produced enzymes with altered DNA binding properties affecting the three enzymatic activities of the protein: polymerization, located at the PolX core, 3'-5' exonucleolysis and apurinic/apyrimidinic (AP)-endonucleolysis, placed at the so-called polymerase and histidinol phosphatase domain. Furthermore, we have changed Lys192 of PolXBs, a residue moderately conserved in the palm subdomain of bacterial PolXs and immediately preceding two catalytic aspartates of the polymerization reaction. The results point to a function of residue Lys192 in guaranteeing the right orientation of the DNA substrates at the polymerization and histidinol phosphatase active sites. The results presented here and the recently solved structures of other bacterial PolX ternary complexes lead us to propose a structural model to account for the appropriate coordination of the different catalytic activities of bacterial PolXs.

摘要

家族 X DNA 聚合酶(PolXs)参与 DNA 修复。它们与缺口 DNA 的结合依赖于两个保守的螺旋-发夹-螺旋基序,一个位于 8 kDa 结构域,另一个位于手指亚结构域。细菌/古细菌 PolX 具有手指亚结构域中特别保守的第三个螺旋-发夹-螺旋基序(GFGxK),其在 DNA 结合中的潜在作用尚未确定。在这里,枯草芽孢杆菌 PolX(PolXBs)对应残基的突变,甘氨酸 130、甘氨酸 132 和赖氨酸 134,产生了改变 DNA 结合特性的酶,影响蛋白质的三种酶活性:聚合酶位于 PolX 核心,3'-5'外切核酸酶和脱嘌呤/脱嘧啶(AP)内切核酸酶位于所谓的聚合酶和组氨酸醇磷酸酶结构域。此外,我们改变了 PolXBs 的赖氨酸 192,这是细菌 PolX 手掌亚结构域中中度保守的残基,位于聚合反应的两个催化天冬氨酸之前。结果表明,残基赖氨酸 192 的功能在于保证 DNA 底物在聚合酶和组氨酸醇磷酸酶活性位点的正确取向。这里提出的结果和其他细菌 PolX 三元复合物的最近解决结构使我们提出了一个结构模型,以解释细菌 PolX 不同催化活性的适当协调。

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