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Optineurin-mediated mitophagy protects renal tubular epithelial cells against accelerated senescence in diabetic nephropathy

机译:Optineurin介导的细胞吞噬保护糖尿病肾病肾小管上皮细胞免于加速衰老

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摘要

Premature senescence is a key process in the progression of diabetic nephropathy (DN). Premature senescence of renal tubular epithelial cells (RTEC) in DN may result from the accumulation of damaged mitochondria. Mitophagy is the principal process that eliminates damaged mitochondria through PTEN-induced putative kinase 1 (PINK1)-mediated recruitment of optineurin (OPTN) to mitochondria. We aimed to examine the involvement of OPTN in mitophagy regulation of cellular senescence in RTEC in the context of DN. In vitro, the expression of senescence markers P16, P21, DcR2, SA-β-gal, SAHF, and insufficient mitophagic degradation marker (mitochondrial P62) in mouse RTECs increased after culture in 30 mM high-glucose (HG) conditions for 48 h. Mitochondrial fission/mitophagy inhibitor Mdivi-1 significantly enhanced RTEC senescence under HG conditions, whereas autophagy/mitophagy agonist Torin1 inhibited cell senescence. MitoTempo inhibited HG-induced mitochondrial reactive oxygen species and cell senescence with or without Mdivi-1. The expression of PINK1 and OPTN, two regulatory factors for mitophagosome formation, decreased significantly after HG stimulation. Overexpression of PINK1 did not enhance mitophagosome formation under HG conditions. OPTN silencing significantly inhibited HG-induced mitophagosome formation, and overexpression of OPTN relieved cellular senescence through promoting mitophagy. In clinical specimens, renal OPTN expression was gradually decreased with increased tubulointerstitial injury scores. OPTN-positive renal tubular cells did not express senescence marker P16. OPTN expression also negatively correlated with serum creatinine levels, and positively correlated with eGFR. Thus, OPTN-mediated mitophagy plays a crucial regulatory role in HG-induced RTEC senescence in DN. OPTN may, therefore, be a potential antisenescence factor in DN.
机译:早衰是糖尿病肾病(DN)进展的关键过程。 DN中肾小管上皮细胞(RTEC)的过早衰老可能是由于线粒体受损所致。线粒体学是通过PTEN诱导的假定激酶1(PINK1)介导的最佳神经蛋白(OPTN)募集到线粒体,消除受损的线粒体的主要过程。我们的目的是在DN的背景下研究OPTN参与RTEC细胞衰老的线粒体调控。在体外,在30μmM高葡萄糖(HG)条件下培养48 h后,小鼠RTEC中衰老标记P16,P21,DcR2,SA-β-gal,SAHF和线粒体降解标记不足(线粒体P62)的表达增加。 。线粒体裂变/有丝分裂抑制剂Mdivi-1在HG条件下显着增强RTEC衰老,而自噬/有丝分裂激动剂Torin1抑制细胞衰老。在有或没有Mdivi-1的情况下,MitoTempo均可抑制HG诱导的线粒体活性氧和细胞衰老。 HG刺激后,有丝分裂小体形成的两个调节因子PINK1和OPTN的表达显着下降。在HG条件下,PINK1的过表达不能增强线粒体的形成。 OPTN沉默显着抑制HG诱导的线粒体的形成,并且OPTN的过表达通过促进线粒体吞噬减轻了细胞的衰老。在临床标本中,随着肾小管间质损伤评分的增加,肾脏OPTN表达逐渐降低。 OPTN阳性肾小管细胞不表达衰老标记P16。 OPTN表达也与血清肌酐水平呈负相关,与eGFR呈正相关。因此,OPTN介导的自噬在DN引起的HG诱导的RTEC衰老中起着至关重要的调节作用。因此,OPTN可能是DN中潜在的抗衰老因子。

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