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Structure and identification of ADP-ribose recognition motifs of APLF and role in the DNA damage response

机译:APLF的ADP核糖识别基序的结构和鉴定及其在DNA损伤反应中的作用

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摘要

Poly(ADP-ribosyl)ation by poly(ADP-ribose) polymerases regulates the interaction of many DNA damage and repair factors with sites of DNA strand lesions. The interaction of these factors with poly(ADP-ribose) (PAR) is mediated by specific domains, including the recently identified PAR-binding zinc finger (PBZ) domain. However, the mechanism governing these interactions is unclear. To better understand the PBZ-PAR interaction, we performed a detailed examination of the representative PBZ-containing protein involved in the DNA damage response, aprataxin polynucleotide-kinase-like factor (APLF), which possesses two tandem PBZ domains. Here we present structural and biochemical studies that identify Y381/Y386 and Y423/Y428 residues in the conserved C(M/P)Y and CYR motifs within each APLF PBZ domain that are critical for the interaction with the adenine ring of ADP-ribose. Basic residues (R387 and R429 in the first and second PBZ domains, respectively) coordinate additional interactions with the phosphate backbone of ADP-ribose, suggesting that APLF binds to multiple ADP-ribose residues along PAR polymers. These C(M/P)Y and CYR motifs form a basic/hydrophobic pocket within a variant zinc finger structure and are required for APLF recruitment to sites of DNA damage in vivo.
机译:聚(ADP-核糖)聚合酶的聚(ADP-核糖基)化调节许多DNA损伤和修复因子与DNA链损伤部位的相互作用。这些因素与聚(ADP-核糖)(PAR)的相互作用是由特定域介导的,包括最近鉴定的PAR结合锌指(PBZ)域。但是,控制这些相互作用的机制尚不清楚。为了更好地理解PBZ-PAR相互作用,我们对涉及DNA损伤应答的代表性的含PBZ的蛋白,紫杉醇多核苷酸激酶样因子(APLF)进行了详细检查,该蛋白具有两个串联的PBZ域。在这里,我们目前的结构和生化研究确定了每个APLF PBZ域内保守C(M / P)Y和CYR基序中的Y381 / Y386和Y423 / Y428残基,这些残基对于与ADP-核糖的腺嘌呤环相互作用至关重要。碱性残基(分别在第一个和第二个PBZ域中的R387和R429)协调与ADP-核糖的磷酸骨架的其他相互作用,这表明APLF沿着PAR聚合物与多个ADP-核糖残基结合。这些C(M / P)Y和CYR基序在变异的锌指结构内形成一个碱性/疏水性口袋,是APLF募集到体内DNA损伤部位所必需的。

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