Baisantry Arpita, Bhayana Sagar, Wrede Christoph, Hegermann Jan, Haller Hermann, Melk Anette, Schmitt Roland
a Department of Nephrology , Children's Hospital , Hannover , Germany.
b Department of Kidney , Liver and Metabolic Diseases, Children's Hospital , Hannover , Germany.
Cell Cycle. 2016 Nov;15(21):2973-2979. doi: 10.1080/15384101.2016.1234547. Epub 2016 Oct 7.
Autophagy and senescence are 2 distinct pathways that are importantly involved in acute kidney injury and renal repair. Recent data indicate that the 2 processes might be interrelated. To investigate the potential link between autophagy and senescence in the kidney we isolated primary tubular epithelial cells (PTEC) from wild-type mice and monitored the occurrence of cellular senescence during autophagy activation and inhibition. We found that the process of cell isolation and transfer into culture was associated with a strong basal autophagic activation in PTEC. Specific inhibition of autophagy by silencing autophagy-related 5 (Atg5) counteracted the occurrence of senescence hallmarks under baseline conditions. Reduced senescent features were also observed in Atg5 silenced PTEC after γ-irradiation and during H-Ras induced oncogenic senescence, but the response was less uniform in these stress models. Senescence inhibition was paralleled by better preservation of a mature epithelial phenotype in PTEC. Interestingly, treatment with rapamycin, which acts as an activator of autophagy, also counteracted the occurrence of senescence features in PTEC. While we interpret the anti-senescent effect of rapamycin as an autophagy-independent effect of mTOR-inhibition, the more specific approach of Atg5 silencing indicates that overactivated autophagy can have pro-senescent effects in PTEC. These results highlight the complex interaction between cell culture dependent stress mechanisms, autophagy and senescence.
自噬和衰老为两个不同的途径,在急性肾损伤和肾修复过程中发挥着重要作用。近期数据表明这两个过程可能相互关联。为了研究肾脏中自噬与衰老之间的潜在联系,我们从野生型小鼠中分离出原代肾小管上皮细胞(PTEC),并在自噬激活和抑制过程中监测细胞衰老的发生情况。我们发现细胞分离及转入培养的过程与PTEC中强烈的基础自噬激活有关。通过沉默自噬相关蛋白5(Atg5)特异性抑制自噬,可抵消基线条件下衰老特征的出现。在γ射线照射后以及H-Ras诱导的致癌衰老过程中,Atg5沉默的PTEC中衰老特征也有所减少,但在这些应激模型中,反应不太一致。衰老抑制伴随着PTEC中成熟上皮表型的更好保留。有趣的是,作为自噬激活剂的雷帕霉素处理也可抵消PTEC中衰老特征的出现。虽然我们将雷帕霉素的抗衰老作用解释为mTOR抑制的非自噬依赖性效应,但Atg5沉默这种更具特异性的方法表明过度激活的自噬在PTEC中可能具有促衰老作用。这些结果突出了细胞培养依赖性应激机制、自噬和衰老之间复杂的相互作用。