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首页> 外文期刊>British Journal of Cancer >H2AX phosphorylation screen of cells from radiosensitive cancer patients reveals a novel DNA double-strand break repair cellular phenotype
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H2AX phosphorylation screen of cells from radiosensitive cancer patients reveals a novel DNA double-strand break repair cellular phenotype

机译:放射敏感性癌症患者细胞的H2AX磷酸化筛选揭示了新型DNA双链断裂修复细胞表型

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摘要

Background:About 1–5% of cancer patients suffer from significant normal tissue reactions as a result of radiotherapy (RT). It is not possible at this time to predict how most patients’ normal tissues will respond to RT. DNA repair dysfunction is implicated in sensitivity to RT particularly in genes that mediate the repair of DNA double-strand breaks (DSBs). Phosphorylation of histone H2AX (phosphorylated molecules are known as γH2AX) occurs rapidly in response to DNA DSBs, and, among its other roles, contributes to repair protein recruitment to these damaged sites. Mammalian cell lines have also been crucial in facilitating the successful cloning of many DNA DSB repair genes; yet, very few mutant cell lines exist for non-syndromic clinical radiosensitivity (RS).
机译:背景:大约有1-5%的癌症患者由于放疗(RT)而遭受明显的正常组织反应。目前尚无法预测大多数患者的正常组织对RT的反应。 DNA修复功能异常与对RT的敏感性有关,特别是在介导DNA双链断裂(DSB)修复的基因中。组蛋白H2AX(磷酸化的分子称为γH2AX)的磷酸化响应DNA DSB迅速发生,除其他作用外,它还有助于修复蛋白质向这些受损位点的募集。哺乳动物细胞系在促进成功克隆许多DNA DSB修复基因方面也至关重要。然而,很少有突变细胞系可用于非综合征性临床放射敏感性(RS)。

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