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首页> 外文期刊>FEBS Open Bio >Co-mutation of histone H2AX S139A with Y142A rescues Y142A-induced ionising radiation sensitivity
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Co-mutation of histone H2AX S139A with Y142A rescues Y142A-induced ionising radiation sensitivity

机译:组蛋白H2AX S139A与Y142A的共突变可拯救Y142A诱导的电离辐射敏感性

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Under normal conditions histone H2AX is constitutively phosphorylated on tyrosine (Y) 142 by Williams-Beuren syndrome transcription factor kinase (WSTF). Following DNA double strand breaks (DSB), Y142 is de-phosphorylated and serine (S) 139 is phosphorylated. Here we explored DSB-dependent cross talk between H2AX residues S139 and Y142. H2axY142A mutation resulted in increased sensitivity to ionising radiation (IR), compared to H2axS139A. Interestingly, co-mutation of S139A and Y142A rescued IR sensitivity. The DSB response proteins 53Bp1 and Rad51 were recruited to IR-induced foci (IRIF) in H2axS139A, H2axY142A and H2axS139A/Y142A cells. Our results suggest that H2axY142A IR sensitivity is dependent upon the C-terminal residue, S139.
机译:在正常情况下,组蛋白H2AX在Williams-Beuren综合征转录因子激酶(WSTF)的酪氨酸(Y)142上被组成性磷酸化。 DNA双链断裂(DSB)之后,Y142被去磷酸化,丝氨酸(S)139被磷酸化。在这里,我们探讨了H2AX残基S139和Y142之间依赖于DSB的串扰。与H2axS139A相比,H2axY142A突变导致对电离辐射(IR)的敏感性增加。有趣的是,S139A和Y142A的共突变拯救了IR敏感性。将DSB反应蛋白53Bp1和Rad51募集到H2axS139A,H2axY142A和H2axS139A / Y142A细胞中的IR诱导灶(IRIF)。我们的结果表明,H2axY142A的IR敏感性取决于C末端残基S139。

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