首页> 美国卫生研究院文献>Aging (Albany NY) >δ-opioid receptor activation protects against Parkinson’s disease-related mitochondrial dysfunction by enhancing PINK1/Parkin-dependent mitophagy
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δ-opioid receptor activation protects against Parkinson’s disease-related mitochondrial dysfunction by enhancing PINK1/Parkin-dependent mitophagy

机译:δ-阿片受体激活通过增强Pink1 / Parkin依赖性的乳化剂来保护抗帕金森病相关的线粒体功能障碍

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摘要

Our previous studies have shown that the δ-opioid receptor (DOR) is an important neuroprotector via the regulation of PTEN-induced kinase 1 (PINK1), a mitochondria-related molecule, under hypoxic and MPP+ insults. Since mitochondrial dysfunctions are observed in both hypoxia and MPP+ insults, this study further investigated whether DOR is cytoprotective against these insults by targeting mitochondria. Through comparing DOR-induced responses to hypoxia versus MPP+-induced parkinsonian insult in PC12 cells, we found that both hypoxia and MPP+ caused a collapse of mitochondrial membrane potential and severe mitochondrial dysfunction. In sharp contrast to its inappreciable effect on mitochondria in hypoxic conditions, DOR activation with UFP-512, a specific agonist, significantly attenuated the MPP+-induced mitochondrial injury. Mechanistically, DOR activation effectively upregulated PINK1 expression and promoted Parkin’s mitochondrial translocation and modification, thus enhancing the PINK1-Parkin mediated mitophagy. Either PINK1 knockdown or DOR knockdown largely interfered with the DOR-mediated mitoprotection in MPP+ conditions. Moreover, there was a major difference between hypoxia versus MPP+ in terms of the regulation of mitophagy with hypoxia-induced mitophagy being independent from DOR-PINK1 signaling. Taken together, our novel data suggest that DOR activation is neuroprotective against parkinsonian injury by specifically promoting mitophagy in a PINK1-dependent pathway and thus attenuating mitochondrial damage.
机译:我们以前的研究表明,δ-阿片受体(DOR)是一种重要的神经保护剂,通过调节PTEN诱导的激酶1(PINK1),缺氧和MPP +损伤下的线粒体相关分子。由于在缺氧和MPP +损伤中观察到线粒体功能障碍,因此该研究进一步研究了通过靶向线粒体对这些侮辱的细胞保护性。通过将DOR诱导的缺氧的反应与MPP + -MPP + - 诱导的PARINSONIAN损伤进行比较,我们发现缺氧和MPP +均导致线粒体膜电位和严重线粒体功能障碍的崩溃。与对缺氧条件的线粒体对线粒体的对比鲜明对比,用UFP-512,特定激动剂的DOR活化显着减弱了MPP +-诱导的线粒体损伤。机械上,DOR激活有效上调了PINK1表达并促进了Parkin的线粒体易位和改性,从而增强了Pink1-Parkin介导的乳化物。 Pink1敲低或DOR敲低在很大程度上干扰了MPP +条件下的DOR介导的猝存。此外,缺氧与MPP +之间的主要差异在于缺氧诱导的患有缺氧诱导的乳化物无关,与DOR-PINK1信号传导。我们的新数据表明,通过在粉红色的依赖性途径中特别促进水肿,使DOR活化是针对Parkinsonian损伤的神经保护性,从而减轻线粒体损伤。

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