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Versatility in phospho-dependent molecular recognition of the XRCC1 and XRCC4 DNA-damage scaffolds by aprataxin-family FHA domains

机译:Aprataxin家族FHA结构域对XRCC1和XRCC4 DNA损伤支架的磷酸依赖性分子识别的多功能性

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摘要

Aprataxin, aprataxin and PNKP-like factor (APLF) and polynucleotide kinase phosphatase (PNKP) are key DNA-repair proteins with diverse functions but which all contain a homologous forkhead-associated (FHA) domain. Their primary binding targets are casein kinase 2-phosphorylated forms of the XRCC1 and XRCC4 scaffold molecules which respectively coordinate single-stranded and double-stranded DNA break repair pathways. Here, we present the high-resolution X-ray structure of a complex of phosphorylated XRCC4 with APLF, the most divergent of the three FHA domain family members. This, combined with NMR and biochemical analysis of aprataxin and APLF binding to singly and multiply-phosphorylated forms of XRCC1 and XRCC4, and comparison with PNKP reveals a pattern of distinct but overlapping binding specificities that are differentially modulated by multi-site phosphorylation. Together, our data illuminate important differences between activities of the three phospho-binding domains, in spite of a close evolutionary relationship between them.
机译:Aprataxin,Aprataxin和PNKP样因子(APLF)和多核苷酸激酶磷酸酶(PNKP)是具有多种功能的关键DNA修复蛋白,但都包含同源叉头相关(FHA)域。它们的主要结合靶标是XRCC1和XRCC4支架分子的酪蛋白激酶2磷酸化形式,分别协调单链和双链DNA断裂修复途径。在这里,我们介绍了磷酸化的XRCC4与APLF(三个FHA结构域家族成员中最不同的)的复合物的高分辨率X射线结构。结合NMR和对紫杉醇和APLF与XRCC1和XRCC4的单磷酸和多磷酸化形式结合的NMR和生化分析,以及与PNKP的比较,揭示了独特但重叠的结合特异性模式,该特异性通过多位点磷酸化进行了差异调节。在一起,我们的数据阐明了三个磷酸结合域的活性之间的重要差异,尽管它们之间具有密切的进化关系。

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