Institute of Molecular Medicine, College of Medicine, National Taiwan University , Taipei, Taiwan.
Department of Chemistry and Chemical Biology and Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, NY, USA.
J Cell Biol. 2023 Oct 2;222(10). doi: 10.1083/jcb.202301091. Epub 2023 Aug 16.
Mitochondria are dynamic organelles regulated by fission and fusion processes. The fusion of membranes requires elaborative coordination of proteins and lipids and is particularly crucial for the function and quality control of mitochondria. Phosphatidic acid (PA) on the mitochondrial outer membrane generated by PLD6 facilitates the fusion of mitochondria. However, how PA promotes mitochondrial fusion remains unclear. Here, we show that a mitochondrial outer membrane protein, NME3, is required for PLD6-induced mitochondrial tethering or clustering. NME3 is enriched at the contact interface of two closely positioned mitochondria depending on PLD6, and NME3 binds directly to PA-exposed lipid packing defects via its N-terminal amphipathic helix. The PA binding function and hexamerization confer NME3 mitochondrial tethering activity. Importantly, nutrient starvation enhances the enrichment efficiency of NME3 at the mitochondrial contact interface, and the tethering ability of NME3 contributes to fusion efficiency. Together, our findings demonstrate NME3 as a tethering protein promoting selective fusion between PLD6-remodeled mitochondria for quality control.
线粒体是受分裂和融合过程调节的动态细胞器。膜的融合需要蛋白质和脂质的精细协调,对于线粒体的功能和质量控制尤为关键。PLD6 在 线粒体 外膜上产生的磷脂酸(PA)有助于线粒体的融合。然而,PA 如何促进线粒体融合仍不清楚。在这里,我们表明,线粒体 外膜蛋白 NME3 是 PLD6 诱导的线粒体连接或聚集所必需的。NME3 在外膜上的分布取决于 PLD6,并且 NME3 通过其 N 端两亲性螺旋直接与暴露的 PA 脂质堆积缺陷结合。PA 结合功能和六聚化赋予 NME3 线粒体连接活性。重要的是,营养饥饿增强了 NME3 在 线粒体 接触界面处的富集效率,并且 NME3 的连接能力有助于融合效率。总之,我们的研究结果表明 NME3 作为一种连接蛋白,促进了 PLD6 重塑的线粒体之间的选择性融合,以进行质量控制。