School of Biosciences, University of Sheffield, Sheffield, UK.
School of Biochemistry, University of Bristol, Bristol, UK.
EMBO Rep. 2022 Feb 3;23(2):e48754. doi: 10.15252/embr.201948754. Epub 2022 Jan 7.
Mitochondria are unavoidably subject to organellar stress resulting from exposure to a range of reactive molecular species. Consequently, cells operate a poorly understood quality control programme of mitophagy to facilitate elimination of dysfunctional mitochondria. Here, we used a model stressor, deferiprone (DFP), to investigate the molecular basis for stress-induced mitophagy. We show that mitochondrial fission 1 protein (Fis1) is required for DFP-induced mitophagy and that Fis1 is SUMOylated at K149, an amino acid residue critical for Fis1 mitochondrial localization. We find that DFP treatment leads to the stabilization of the SUMO protease SENP3, which is mediated by downregulation of the E3 ubiquitin (Ub) ligase CHIP. SENP3 is responsible for Fis1 deSUMOylation and depletion of SENP3 abolishes DFP-induced mitophagy. Furthermore, preventing Fis1 SUMOylation by conservative K149R mutation enhances Fis1 mitochondrial localization. Critically, expressing a Fis1 K149R mutant restores DFP-induced mitophagy in SENP3-depleted cells. Thus, we propose a model in which SENP3-mediated deSUMOylation facilitates Fis1 mitochondrial localization to underpin stress-induced mitophagy.
线粒体不可避免地会受到暴露于一系列反应性分子物种所导致的细胞器应激。因此,细胞会运作一个鲜为人知的质量控制程序——自噬,以促进功能失调的线粒体的消除。在这里,我们使用模型应激剂去铁酮(DFP)来研究应激诱导的自噬的分子基础。我们表明,线粒体分裂蛋白 1(Fis1)是 DFP 诱导的自噬所必需的,并且 Fis1 在 K149 处被 SUMO 化,这是 Fis1 在线粒体定位中至关重要的氨基酸残基。我们发现 DFP 处理导致 SUMO 蛋白酶 SENP3 的稳定,这是通过下调 E3 泛素(Ub)连接酶 CHIP 介导的。SENP3 负责 Fis1 的去 SUMO 化,并且 SENP3 的耗尽会阻止 DFP 诱导的自噬。此外,通过保守的 K149R 突变来阻止 Fis1 的 SUMO 化会增强 Fis1 的线粒体定位。关键的是,表达 Fis1 K149R 突变体能在 SENP3 耗尽的细胞中恢复 DFP 诱导的自噬。因此,我们提出了一个模型,其中 SENP3 介导的去 SUMO 化促进 Fis1 的线粒体定位,从而支持应激诱导的自噬。