Department of Neurogenetics, Kolling Institute of Medical Research, Royal North Shore Hospital, St. Leonards, New South Wales 2065, Australia.
Sydney Medical School-Northern, University of Sydney, St. Leonards, New South Wales 2065, Australia.
Sci Rep. 2017 Mar 10;7:44373. doi: 10.1038/srep44373.
Therapeutic targets are needed to develop neuroprotective treatments for Parkinson's disease (PD). Mitophagy, the selective autophagic elimination of dysfunctional mitochondria, is essential for the maintenance of mitochondrial integrity and is predominantly regulated by the PINK1/Parkin-mediated pathway. Loss of function mutations in Parkin and PINK1 cause an accumulation of dysfunctional mitochondria, leading to nigral neurodegeneration and early-onset PD with a high penetrance rate. We previously identified an asymptomatic homozygous Parkin mutation carrier who had not developed PD by her eighth decade despite the loss of functional Parkin. Here we discover a putative mechanism that protects her against PD. In contrast to Parkin-related PD patient-derived cells, the asymptomatic carrier cells show preserved mitochondrial function and mitophagy which is mediated by mitochondrial receptor Nip3-like protein X (Nix). Nix-mediated mitophagy was not affected by PINK1 knockdown. Both genetic and pharmacological induction of Nix restores mitophagy in PINK1- and Parkin-related PD patient cell lines, confirming its ability to induce mitophagy in the absence of PINK1/Parkin-mediated pathway. Moreover, Nix over-expression improves mitochondrial ATP production in these patient cells. Our results demonstrate that Nix can serve as an alternative mediator of mitophagy to maintain mitochondrial turnover, identifying Nix as a promising target for neuroprotective treatment in PINK1/Parkin-related PD.
需要寻找治疗靶点来开发治疗帕金森病(PD)的神经保护疗法。线粒体自噬是一种选择性自噬消除功能失调线粒体的过程,对于维持线粒体完整性至关重要,主要由 PINK1/Parkin 介导的途径调控。Parkin 和 PINK1 的功能丧失突变会导致功能失调的线粒体积累,导致黑质神经退行性变和早发性 PD,具有高外显率。我们之前发现了一名无症状的纯合 Parkin 突变携带者,尽管功能丧失了 Parkin,但到她 80 岁时仍未患上 PD。在这里,我们发现了一种可能的机制,可以保护她免受 PD 的侵害。与 Parkin 相关的 PD 患者衍生细胞相比,无症状携带者细胞显示出保留的线粒体功能和线粒体自噬,这是由线粒体受体 Nip3 样蛋白 X(Nix)介导的。Nix 介导的线粒体自噬不受 PINK1 敲低的影响。Nix 的遗传和药理学诱导都能恢复 PINK1 和 Parkin 相关 PD 患者细胞系中的线粒体自噬,证实了其在缺乏 PINK1/Parkin 介导途径的情况下诱导线粒体自噬的能力。此外,Nix 的过表达能改善这些患者细胞中线粒体 ATP 的产生。我们的研究结果表明,Nix 可以作为线粒体自噬的替代调节剂,维持线粒体的周转,确定 Nix 是 PINK1/Parkin 相关 PD 神经保护治疗的一个有前途的靶点。