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Retinal pigment epithelial cells undergoing mitotic catastrophe are vulnerable to autophagy inhibition

机译:经历有丝分裂灾难的视网膜色素上皮细胞易受自噬抑制

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The increased mitochondrial DNA damage leads to altered functional capacities of retinal pigment epithelial (RPE) cells. A previous study showed the increased autophagy in RPE cells caused by low concentrations of rotenone, a selective inhibitor of mitochondrial complex I. However, the mechanism by which autophagy regulates RPE cell death is still unclear. In the present study, we examined the mechanism underlying the regulation of RPE cell death through the inhibition of mitochondrial complex I. We report herein that rotenone induced mitotic catastrophe (MC) in RPE cells. We further observed an increased level of autophagy in the RPE cells undergoing MC (RPE-MC cells). Importantly, autophagy inhibition induced nonapoptotic cell death in RPE-MC cells. These findings indicate that autophagy has a pivotal role in the survival of RPE-MC cells. We next observed PINK1 accumulation in the mitochondrial membrane and parkin translocation into the mitochondria from the cytosol in the rotenone-treated RPE-MC cells, which indicates that increased mitophagy accompanies MC in ARPE-19 cells. Noticeably, the mitophagy also contributed to the cytoprotection of RPE-MC cells. Although there might be a significant gap in the roles of autophagy and mitophagy in the RPE cells in vivo , our in vitro study suggests that autophagy and mitophagy presumably prevent the RPE-MC cells from plunging into cell death, resulting in the prevention of RPE cell loss.
机译:线粒体DNA损伤的增加导致视网膜色素上皮(RPE)细胞功能的改变。先前的研究表明,低浓度的鱼藤酮是线粒体复合体I的选择性抑制剂,导致RPE细胞的自噬增加。但是,自噬调节RPE细胞死亡的机制仍不清楚。在本研究中,我们研究了通过抑制线粒体复合体I来调节RPE细胞死亡的潜在机制。我们在此报道鱼藤酮在RPE细胞中诱导了有丝分裂灾难(MC)。我们进一步观察到接受MC的RPE细胞(RPE-MC细胞)自噬水平提高。重要的是,自噬抑制在RPE-MC细胞中诱导非凋亡细胞死亡。这些发现表明自噬在RPE-MC细胞的存活中具有关键作用。接下来,我们观察到PINK1在线粒体膜中积聚,并在鱼藤酮处理过的RPE-MC细胞中从细胞质中将Parkin转移到细胞质中,这表明线粒体增多伴随着ARPE-19细胞中的MC。明显地,线粒体也有助于RPE-MC细胞的细胞保护。尽管体内RPE细胞中自噬和线粒体的作用可能存在明显的差距,但我们的体外研究表明,自噬和线粒体大概可以防止RPE-MC细胞陷入细胞死亡,从而阻止RPE细胞的生长。失利。

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