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Single-cell analysis challenges the connection between autophagy and senescence induced by DNA damage

机译:单细胞分析挑战了DNA损伤引起的自噬与衰老之间的联系

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摘要

Autophagy and senescence have been described as central features of cell biology, but the interplay between these mechanisms remains obscure. Using a therapeutically relevant model of DNA damage-induced senescence in human glioma cells, we demonstrated that acute treatment with temozolomide induces DNA damage, a transitory activation of PRKAA/AMPK-ULK1 and MAPK14/p38 and the sustained inhibition of AKT-MTOR. This produced a transient induction of autophagy, which was followed by senescence. However, at the single cell level, this coordinated transition was not observed, and autophagy and senescence were triggered in a very heterogeneous manner. Indeed, at a population level, autophagy was highly negatively correlated with senescence markers, while in single cells this correlation did not exist. The inhibition of autophagy triggered apoptosis and decreased senescence, while its activation increased temozolomide-induced senescence, showing that DNA damage-induced autophagy acts by suppressing apoptosis.
机译:自噬和衰老已被描述为细胞生物学的主要特征,但这些机制之间的相互作用仍然不清楚。使用人类胶质瘤细胞中DNA损伤诱导的衰老的治疗相关模型,我们证明了替莫唑胺的急性治疗诱导DNA损伤,PRKAA / AMPK-ULK1和MAPK14 / p38的短暂激活以及对AKT-MTOR的持续抑制。这产生了自噬的短暂诱导,随后是衰老。但是,在单细胞水平上,没有观察到这种协调的转变,并且以非常不同的方式触发了自噬和衰老。实际上,在种群水平上,自噬与衰老标记高度负相关,而在单细胞中这种相关性不存在。自噬的抑制作用引起细胞凋亡并降低衰老,而其激活则增加替莫唑胺诱导的衰老,表明DNA损伤诱导的自噬通过抑制细胞凋亡而起作用。

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