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APE1 deficiency promotes cellular senescence and premature aging features

机译:APE1缺乏促进细胞衰老和过早的老化特征

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Base excision repair (BER) handles many forms of endogenous DNA damage, and apurinic/apyrimidinic endonuclease 1 (APE1) is central to this process. Deletion of both alleles of APE1 (a.k.a. Apex1) in mice leads to embryonic lethality, and deficiency in cells can promote cell death. Unlikemost other BER proteins, APE1 expression is inversely correlated with cellular senescence in primary human fibroblasts. Depletion of APE1 via shRNA induced senescence in normal human BJ fibroblasts, a phenotype that was not seen in counterpart cells expressing telomerase. APE1 knock-down in primary fibroblasts resulted in global DNA damage accumulation, and the induction of p16(INK4a) and p21(WAF1) stress response pathways; the DNA damage response, as assessed by gamma-H2AX, was particularly pronounced at telomeres. Conditional knock-out of Apex1 in mice at post-natal day 7/12 resulted in impaired growth, reduced organ size, and increased cellular senescence. The effect of Apex1 deletion at post-natal week 6 was less obvious, other than cellular senescence, until similar to 8-months of age, when premature aging characteristics, such as hair loss and impaired wound healing, were seen. Low APE1 expression in patient cancer tissue also correlated with increased senescence. Our results point to a key role for APE1 in regulating cellular senescence and aging features, with telomere status apparently affecting the outcome.
机译:碱基切除修复(BER)处理许多形式的内源DNA的损伤,和脱嘌呤/脱嘧啶核酸内切酶1(APE1)是中央的这个过程。 APE1(又名APEX1)的小鼠导致胚胎死亡,而缺乏在细胞两个等位基因缺失可促进细胞死亡。 Unlikemost其他BER蛋白,APE1表达成反比与初级人成纤维细胞细胞衰老相关。通过在正常人成纤维细胞BJ的shRNA诱导的衰老,这是不表达端粒酶对应细胞中观察的表型APE1的枯竭。 APE1击倒在初级成纤维细胞导致全球的DNA损伤积累,和p16(INK4A)和p21(WAF1)应激反应途径的诱导; DNA损伤反应,通过γ-H2AX所评估,特别明显的端粒。有条件的敲除APEX1的小鼠在出生后7/12天导致受损的生长,减少器官尺寸,并增加细胞衰老。 APEX1缺失在产后6周的效果不太明显,比细胞衰老等,直到类似的年龄8个月的时候过早衰老的特征,如脱发和伤口愈合不良,均可见。在患者癌组织低APE1表达也与增加衰老相关。我们的研究结果指出在调节细胞衰老和衰老特征为APE1了关键作用,端粒状态明显影响结果。

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