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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衰老

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摘要

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. Unlike most 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 p16INK4a and p21WAF1 stress response pathways; the DNA damage response, as assessed by γ-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 ∼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)处理多种形式的内源性DNA损伤,而嘌呤/嘧啶内切核酸酶1(APE1)在此过程中至关重要。小鼠中两个APE1(亦称Apex1)等位基因的缺失会导致胚胎致死,而细胞中的缺乏会促进细胞死亡。与大多数其他BER蛋白不同,在原代人成纤维细胞中,APE1表达与细胞衰老呈负相关。在正常的人BJ成纤维细胞中,通过shRNA消耗APE1会导致衰老,这种表型在表达端粒酶的对应细胞中未见。初级成纤维细胞中的APE1敲低导致整体DNA损伤积累,并诱导p16 INK4a 和p21 WAF1 应激反应途径。 γ-H2AX评估的DNA损伤反应在端粒特别明显。出生后第7/12天在小鼠中有条件敲除Apex1导致生长受损,器官大小减小和细胞衰老增加。出生后第6周,除细胞衰老外,直到大约8个月大时,Apex1缺失的影响不太明显,直到出现过早的衰老特征,如脱发和伤口愈合不良。患者癌症组织中APE1的低表达也与衰老增加有关。我们的结果表明,APE1在调节细胞衰老和衰老特征中起关键作用,端粒状态显然会影响转归。

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