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线粒体 Lon 诱导的自噬通过在 ER-线粒体界面处依赖 Ca2+ 的 FUNDC1 磷酸化促进缺氧抗性。

Mitochondrial Lon-induced mitophagy benefits hypoxic resistance via Ca-dependent FUNDC1 phosphorylation at the ER-mitochondria interface.

机构信息

PhD program in molecular medicine, NHRI & NCU, Taoyuan, Taiwan.

National Institute of Cancer Research, National Health Research Institutes, Zhunan, Miaoli, 35053, Taiwan.

出版信息

Cell Death Dis. 2023 Mar 16;14(3):199. doi: 10.1038/s41419-023-05723-1.

Abstract

During hypoxia, FUNDC1 acts as a mitophagy receptor and accumulates at the ER (endoplasmic reticulum)-mitochondria contact sites (EMC), also called mitochondria-associated membranes (MAM). In mitophagy, the ULK1 complex phosphorylates FUNDC1(S17) at the EMC site. However, how mitochondria sense the stress and send the signal from the inside to the outside of mitochondria to trigger mitophagy is still unclear. Mitochondrial Lon was reported to be localized at the EMC under stress although the function remained unknown. In this study, we explored the mechanism of how mitochondrial sensors of hypoxia trigger and stabilize the FUNDC1-ULK1 complex by Lon in the EMC for cell survival and cancer progression. We demonstrated that Lon is accumulated in the EMC and associated with FUNDC1-ULK1 complex to induce mitophagy via chaperone activity under hypoxia. Intriguingly, we found that Lon-induced mitophagy is through binding with mitochondrial Na/Ca exchanger (NCLX) to promote FUNDC1-ULK1-mediated mitophagy at the EMC site in vitro and in vivo. Accordingly, our findings highlight a novel mechanism responsible for mitophagy initiation under hypoxia by chaperone Lon in mitochondria through the interaction with FUNDC1-ULK1 complex at the EMC site. These findings provide a direct correlation between Lon and mitophagy on cell survival and cancer progression.

摘要

在缺氧状态下, FUNDC1 作为一种线粒体自噬受体,积累在线粒体内质网(endoplasmic reticulum)-线粒体接触部位(endoplasmic reticulum-mitochondria contact sites,EMC),也称为线粒体相关膜(mitochondria-associated membranes,MAM)。在线粒体自噬中,ULK1 复合物在线粒体自噬受体 FUNDC1 的 EMC 位点磷酸化 FUNDC1(S17)。然而,线粒体如何感知应激,并将信号从线粒体内部传递到外部,从而触发线粒体自噬,目前仍不清楚。有报道称,线粒体 Lon 在应激下定位于 EMC,但功能仍不清楚。在这项研究中,我们探讨了缺氧状态下线粒体传感器通过 Lon 在 EMC 中触发和稳定 FUNDC1-ULK1 复合物的机制,以促进细胞存活和癌症进展。我们证明了 Lon 在 EMC 中积累,并通过在缺氧条件下的伴侣活性与 FUNDC1-ULK1 复合物结合,诱导线粒体自噬。有趣的是,我们发现 Lon 诱导的线粒体自噬是通过与线粒体 Na/Ca 交换器(NCLX)结合,促进 FUNDC1-ULK1 介导的 EMC 部位的线粒体自噬,无论是在体外还是体内。因此,我们的研究结果强调了一种新的机制,即在缺氧条件下,Lon 通过与 EMC 部位的 FUNDC1-ULK1 复合物相互作用,作为一种伴侣发挥作用,从而引发线粒体自噬的起始。这些发现为 Lon 在细胞存活和癌症进展中的线粒体自噬之间提供了直接的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f4f/10020552/8ee724cfd811/41419_2023_5723_Fig1_HTML.jpg

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