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核酸末端修复酶 HD-Pnk 的磷酸酯酶组件的结构-功能分析。

Structure-Function Analysis of the Phosphoesterase Component of the Nucleic Acid End-Healing Enzyme HD-Pnk.

机构信息

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

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

出版信息

J Bacteriol. 2019 Jul 24;201(16). doi: 10.1128/JB.00292-19. Print 2019 Aug 15.

Abstract

HD-Pnk is the prototype of a family of dual 5' and 3' nucleic acid end-healing enzymes that phosphorylate 5'-OH termini and dephosphorylate 2',3'-cyclic-PO, 3'-PO, and 2'-PO ends. HD-Pnk is composed of an N-terminal HD phosphohydrolase module and a C-terminal P-loop polynucleotide kinase module. Here, we probed the phosphoesterase activity of HD-Pnk by querying its ability to hydrolyze non-nucleic acid phosphoester substrates and by conducting a mutational analysis of conserved amino acid constituents of the HD domain. We report that HD-Pnk catalyzes vigorous hydrolysis of -nitrophenylphosphate ( = 3.13 mM; = 27.8 s) using copper as its metal cofactor. Mutagenesis identified Gln28, His33, His73, Asp74, Lys77, His94, His127, Asp162, and Arg166 as essential for -nitrophenylphosphatase and DNA 3' phosphatase activities. Structural modeling places these residues at the active site, wherein His33, His73, Asp74, His94, and His127 are predicted to coordinate a binuclear metal complex and Lys77 and Arg166 engage the scissile phosphate. HD-Pnk homologs are distributed broadly (and exclusively) in bacteria, usually in a two-gene cluster with a putative ATP-dependent polynucleotide ligase (LIG). We speculate that HD-Pnk and LIG comprise the end-healing and end-sealing components of a bacterial nucleic acid repair pathway. 5'-end healing and 3'-end healing are key steps in nucleic acid break repair in which 5'-OH ends are phosphorylated by a polynucleotide kinase, and 3'-PO or 2',3'-cyclic-PO ends are hydrolyzed by a phosphoesterase to generate 5'-PO and 3'-OH termini needed for joining by DNA and RNA ligases. This study interrogates, biochemically and via mutagenesis, the phosphoesterase activity of HD-Pnk, a bifunctional bacterial 5'- and 3'-end-healing enzyme composed of HD phosphoesterase and P-loop kinase modules. HD-Pnk homologs are found in 129 bacterial genera from 11 phyla. In 123/129 instances, HD-Pnk is encoded in an operon-like gene cluster with a putative ATP-dependent polynucleotide ligase (LIG), suggesting that HD-Pnk and LIG are agents of a conserved bacterial nucleic acid repair pathway.

摘要

HD-Pnk 是一类具有双重 5'和 3'核酸末端修复功能的酶的原型,能够磷酸化 5'-OH 末端,并去磷酸化 2'、3'-环磷酸、3'-PO 和 2'-PO 末端。HD-Pnk 由一个 N 端 HD 磷酸水解酶模块和一个 C 端 P 环聚合酶激酶模块组成。在这里,我们通过查询其水解非核酸磷酸酯底物的能力以及对 HD 结构域保守氨基酸成分的突变分析来研究 HD-Pnk 的磷酸酯酶活性。我们报告称,HD-Pnk 能够使用铜作为金属辅因子强烈水解 -硝基苯膦酸酯( = 3.13 mM; = 27.8 s)。突变分析确定 Gln28、His33、His73、Asp74、Lys77、His94、His127、Asp162 和 Arg166 是 -硝基苯磷酸酶和 DNA 3'磷酸酶活性所必需的。结构建模将这些残基置于活性部位,其中 His33、His73、Asp74、His94 和 His127 被预测与双核金属复合物配位,Lys77 和 Arg166 与切割磷酸结合。HD-Pnk 同源物广泛分布(且专一地)在细菌中,通常在具有假定的 ATP 依赖性多核苷酸连接酶(LIG)的双基因簇中。我们推测,HD-Pnk 和 LIG 构成了细菌核酸修复途径的末端修复和末端密封组件。5'-末端修复和 3'-末端修复是核酸断裂修复的关键步骤,其中多核苷酸激酶将 5'-OH 末端磷酸化,磷酸酯酶将 3'-PO 或 2'、3'-环磷酸水解为 5'-PO 和 3'-OH 末端,这些末端是 DNA 和 RNA 连接酶连接所必需的。本研究通过生化和突变分析研究了 HD-Pnk 的磷酸酯酶活性,HD-Pnk 是一种由 HD 磷酸酯酶和 P 环激酶模块组成的具有双重 5'和 3'末端修复功能的细菌 5'-和 3'-末端修复酶。HD-Pnk 同源物存在于 11 个门的 129 个细菌属中。在 123/129 个实例中,HD-Pnk 编码在一个具有假定的 ATP 依赖性多核苷酸连接酶(LIG)的操纵子样基因簇中,表明 HD-Pnk 和 LIG 是保守细菌核酸修复途径的作用因子。

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