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Senescence of human fibroblasts after psoralen photoactivation is mediated by ATR kinase and persistent DNA damage foci at telomeres

机译:补骨脂素光激活后人类成纤维细胞的衰老是由ATR激酶和端粒处的持久性DNA损伤灶介导的

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摘要

Cellular senescence is a phenotype that is likely linked with aging. Recent concepts view different forms of senescence as permanently maintained DNA damage responses partially characterized by the presence of senescence-associated DNA damage foci at dysfunctional telomeres. Irradiation of primary human dermal fibroblasts with the photosensitizer 8-methoxy-psoralen and ultraviolet A radiation (PUVA) induces senescence. In the present study, we demonstrate that senescence after PUVA depends on DNA interstrand cross-link (ICL) formation that activates ATR kinase. ATR is necessary for the manifestation and maintenance of the senescent phenotype, because depletion of ATR expression before PUVA prevents induction of senescence, and reduction of ATR expression in PUVA-senesced fibroblasts releases cells from growth arrest. We find an ATR-dependent phosphorylation of the histone H2AX (gamma-H2AX). After PUVA, ATR and gamma-H2AX colocalize in multiple nuclear foci. After several days, only few predominantly telomere-localized foci persist and telomeric DNA can be coimmunoprecipitated with ATR from PUVA-senesced fibroblasts. We thus identify ATR as a novel mediator of telomere-dependent senescence in response to ICL induced by photoactivated psoralens.
机译:细胞衰老是一种可能与衰老有关的表型。最近的概念将衰老的不同形式视为永久维持的DNA损伤应答,其部分特征在于功能失调的端粒存在衰老相关的DNA损伤灶。用光敏剂8-甲氧基-补骨脂素和紫外线A辐射(PUVA)照射人类原始皮肤成纤维细胞会诱发衰老。在本研究中,我们证明PUVA后的衰老取决于激活ATR激酶的DNA链间交联(ICL)的形成。 ATR对于衰老表型的表现和维持是必要的,因为在PUVA之前ATR表达的减少会阻止衰老的诱导,而PUVA敏感的成纤维细胞中ATR表达的减少会使细胞从生长停滞中释放出来。我们发现组蛋白H2AX(γ-H2AX)的ATR依赖磷酸化。 PUVA之后,ATR和γ-H2AX在多个核病灶中共定位。几天后,只有少数主要是端粒定位的病灶持续存在,并且端粒DNA可以与来自PUVA敏感的成纤维细胞的ATR共免疫沉淀。因此,我们确定ATR作为光敏补骨脂素诱导的ICL反应的端粒依赖性衰老的新型介体。

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