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Phospho-epitope binding by the BRCT domains of hPTIP controls multiple aspects of the cellular response to DNA damage

机译:hPTIP的BRCT结构域的磷酸表位结合控制细胞对DNA损伤的反应的多个方面

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Human (h)PTIP plays important but poorly understood roles in cellular responses to DNA damage. hPTIP interacts with 53BP1 tumour suppressor but only when 53BP1 is phosphorylated by ATM after DNA damage although the mechanism(s) and significance of the interaction of these two proteins are unclear. Here, we pinpoint a single ATM-phosphorylated residue in 53BP1—Ser25—that is required for binding of 53BP1 to hPTIP. Binding of phospho-Ser25 to hPTIP in vitro and in vivo requires two closely apposed pairs of BRCT domains at the C-terminus of hPTIP and neither pair alone can bind to phospho-Ser25, even though one of these BRCT pairs in isolation can bind to other ATM-phosphorylated epitopes. Mutations in 53BP1 and in hPTIP that prevent the interaction of the two proteins, render cells hypersensitive to DNA damage and weaken ATM signalling. The C-terminal BRCT domains of hPTIP are also required for stable retention of hPTIP at sites of DNA damage but this appears to be independent of binding to 53BP1. Thus, the BRCT domains of hPTIP play important roles in the cellular response to DNA damage.
机译:人(h)PTIP在细胞对DNA损伤的反应中起着重要但人们尚不清楚的作用。 hPTIP与53BP1肿瘤抑制因子相互作用,但仅在DNA损伤后被ATM磷酸化53BP1时才起作用,尽管尚不清楚这两种蛋白相互作用的机理和意义。在这里,我们精确定位了53BP1-Ser25中的一个ATM磷酸化残基,这是53BP1与hPTIP结合所必需的。磷酸化Ser25与hPTIP的体外和体内结合需要在hPTIP的C末端有两对紧密结合的BRCT结构域,即使分离的这些BRCT对中的一个可以与磷酸化Ser25结合,也没有一个可以与磷酸化Ser25结合。其他ATM磷酸化表位。 53BP1和hPTIP中的突变阻止了两种蛋白质的相互作用,使细胞对DNA损伤高度敏感,并削弱了ATM信号传导。 hPTIP的C端BRCT结构域也是hPTIP在DNA损伤位点稳定保留所必需的,但这似乎与53BP1的结合无关。因此,hPTIP的BRCT域在细胞对DNA损伤的反应中起重要作用。

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