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首页> 外文期刊>Science Advances >TIE2-mediated tyrosine phosphorylation of H4 regulates DNA damage response by recruiting ABL1
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TIE2-mediated tyrosine phosphorylation of H4 regulates DNA damage response by recruiting ABL1

机译:TIE2介导的H4酪氨酸磷酸化通过募集ABL1调节DNA损伤反应

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摘要

DNA repair pathways enable cancer cells to survive DNA damage induced after genotoxic therapies. Tyrosine kinase receptors (TKRs) have been reported as regulators of the DNA repair machinery. TIE2 is a TKR overexpressed in human gliomas at levels that correlate with the degree of increasing malignancy. Following ionizing radiation, TIE2 translocates to the nucleus, conferring cells with an enhanced nonhomologous end-joining mechanism of DNA repair that results in a radioresistant phenotype. Nuclear TIE2 binds to key components of DNA repair and phosphorylates H4 at tyrosine 51, which, in turn, is recognized by the proto-oncogene ABL1, indicating a role for nuclear TIE2 as a sensor for genotoxic stress by action as a histone modifier. H4Y51 constitutes the first tyrosine phosphorylation of core histones recognized by ABL1, defining this histone modification as a direct signal to couple genotoxic stress with the DNA repair machinery.
机译:DNA修复途径使癌细胞能够在遗传毒性治疗后诱导的DNA损伤中存活。酪氨酸激酶受体(TKRs)已被报道作为DNA修复机制的调节剂。 TIE2是人胶质瘤中过度表达的TKR,其水平与恶性程度增加相关。电离辐射后,TIE2易位至细胞核,使细胞具有增强的DNA修复非同源末端连接机制,从而产生抗辐射表型。核TIE2与DNA修复的关键成分结合并在酪氨酸51处磷酸化H4,而酪氨酸51则被原癌基因ABL1识别,表明核TIE2作为组蛋白修饰剂,可作为遗传毒性应激的传感器。 H4Y51构成了ABL1识别的核心组蛋白的第一个酪氨酸磷酸化反应,将这种组蛋白修饰定义为将遗传毒性应激与DNA修复机制耦合的直接信号。

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