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Connecting chaperone-mediated autophagy dysfunction to cellular senescence

机译:将伴侣介导的自噬功能介导的自噬功能障碍与细胞衰老

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Chaperone-mediated autophagy (CMA) is one of the main pathways of the lysosome-autophagy proteolytic system. It regulates different cellular process through the selective degradation of cytosolic proteins. In ageing, the function of CMA is impaired causing an inefficient stress response and the accumulation of damaged, oxidized or misfolded proteins, which is associated with numerous age-related diseases. Deficient protein degradation alters cellular proteostasis and activates signaling pathways that culminate in the induction of cellular senescence, whose accumulation is a typical feature of ageing. However, the relationship between CMA activity and cellular senescence has been poorly studied. Here, we review and integrate evidence showing that CMA dysfunction correlates with the acquisition of many hallmarks of cellular senescence and propose that loss of CMA function during aging promotes cellular senescence.
机译:伴侣介导的自噬(CMA)是溶酶体自噬蛋白水解系统的主要途径之一。 通过细胞溶质蛋白的选择性降解,它通过选择性降解来调节不同的细胞过程。 在衰老时,CMA的功能受损导致低效的应力响应和受损,氧化或错误折叠的蛋白质的积累,这与无数与年龄相关的疾病有关。 缺乏蛋白质降解改变了细胞蛋白质,并激活了在诱导细胞衰老的诱导中的信号传导途径,其积累是老化的典型特征。 然而,CMA活性与细胞衰老之间的关系已经很差。 在这里,我们审查和整合证据表明CMA功能障碍与收购细胞衰老的许多标志性的相关性,并提出在老化期间CMA功能的丧失促进细胞衰老。

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