首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Gap Filling Activities of Pseudomonas DNA Ligase D (LigD) Polymerase and Functional Interactions of LigD with the DNA End-binding Ku Protein
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Gap Filling Activities of Pseudomonas DNA Ligase D (LigD) Polymerase and Functional Interactions of LigD with the DNA End-binding Ku Protein

机译:假单胞菌DNA连接酶D(LigD)聚合酶的空位填充活性和LigD与DNA末端结合Ku蛋白的功能相互作用

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摘要

Many bacterial pathogens, including Pseudomonas aeruginosa, have a nonhomologous end joining (NHEJ) system of DNA double strand break (DSB) repair driven by Ku and DNA ligase D (LigD). LigD is a multifunctional enzyme composed of a ligase domain fused to an autonomous polymerase module (POL) that adds ribonucleotides or deoxyribonucleotides to DSB ends and primer-templates. LigD POL and the eukaryal NHEJ polymerase λ are thought to bridge broken DNA ends via contacts with a duplex DNA segment downstream of the primer terminus, a scenario analogous to gap repair. Here, we characterized the gap repair activity of Pseudomonas LigD POL, which is more efficient than simple templated primer extension and relies on a 5′-phosphate group on the distal gap strand end to confer apparent processivity in filling gaps of 3 or 4 nucleotides. Mutations of the His-553, Arg-556, and Lys-566 side chains implicated in DNA 5′-phosphate binding eliminate the preferential filling of 5′-phosphate gaps. Mutating Phe-603, which is imputed to stack on the nucleobase of the template strand that includes the 1st bp of the downstream gap duplex segment, selectively affects incorporation of the final gap-closing nucleotide. We find that Pseudomonas Ku stimulates POL-catalyzed ribonucleotide addition to a plasmid DSB end and promotes plasmid end joining by full-length Pseudomonas LigD. A series of incremental truncations from the C terminus of the 293-amino acid Ku polypeptide identifies Ku-(1–229) as sufficient for homodimerization and LigD stimulation. The slightly longer Ku-(1–253) homodimer forms stable complexes at both ends of linear plasmid DNA that protect the DSBs from digestion by 5′- and 3′-exonucleases.
机译:许多细菌病原体,包括铜绿假单胞菌,具有由Ku和DNA连接酶D(LigD)驱动的DNA双链断裂(DSB)修复的非同源末端连接(NHEJ)系统。 LigD是一种多功能酶,由连接至自主聚合酶模块(POL)的连接酶结构域组成,该模块向DSB末端和引物模板添加核糖核苷酸或脱氧核糖核苷酸。 LigD POL和真核NHEJ聚合酶λ被认为是通过与引物末端下游的双链DNA片段接触来桥接断裂的DNA末端,这种情况类似于缺口修复。在这里,我们表征了假单胞菌LigD POL的缺口修复活性,它比简单的模板引物延伸更有效,并且依赖于远端缺口链末端的5'-磷酸基团在填充3个或4个核苷酸的缺口中赋予明显的合成能力。与DNA 5'-磷酸结合有关的His-553,Arg-556和Lys-566侧链突变消除了5'-磷酸间隙的优先填充。突变Phe-603被推断为堆叠在包括下游间隙双链体区段的第一个bp的模板链的核碱基上,可选择性影响最终的间隙闭合核苷酸的掺入。我们发现假单胞菌Ku刺激POL催化的核糖核苷酸添加到质粒DSB末端,并通过全长假单胞菌LigD促进质粒末端的连接。从293个氨基酸的Ku多肽C末端开始的一系列递增截短将Ku-(1-229)鉴定为足以进行同二聚化和LigD刺激。稍长的Ku-(1-253)同二聚体在线性质粒DNA的两端形成稳定的复合物,从而保护DSB免受5'-和3'-外切核酸酶的消化。

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