Lysosomes drive the piecemeal removal of mitochondrial inner membrane

IF 50.5 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Nature Pub Date : 2024-08-21 DOI:10.1038/s41586-024-07835-w
Akriti Prashar, Claudio Bussi, Antony Fearns, Mariana I. Capurro, Xiaodong Gao, Hiromi Sesaki, Maximiliano G. Gutierrez, Nicola L. Jones
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引用次数: 0

Abstract

Mitochondrial membranes define distinct structural and functional compartments. Cristae of the inner mitochondrial membrane (IMM) function as independent bioenergetic units that undergo rapid and transient remodelling, but the significance of this compartmentalized organization is unknown1. Using super-resolution microscopy, here we show that cytosolic IMM vesicles, devoid of outer mitochondrial membrane or mitochondrial matrix, are formed during resting state. These vesicles derived from the IMM (VDIMs) are formed by IMM herniation through pores formed by voltage-dependent anion channel 1 in the outer mitochondrial membrane. Live-cell imaging showed that lysosomes in proximity to mitochondria engulfed the herniating IMM and, aided by the endosomal sorting complex required for transport machinery, led to the formation of VDIMs in a microautophagy-like process, sparing the remainder of the organelle. VDIM formation was enhanced in mitochondria undergoing oxidative stress, suggesting their potential role in maintenance of mitochondrial function. Furthermore, the formation of VDIMs required calcium release by the reactive oxygen species-activated, lysosomal calcium channel, transient receptor potential mucolipin 1, showing an interorganelle communication pathway for maintenance of mitochondrial homeostasis. Thus, IMM compartmentalization could allow for the selective removal of damaged IMM sections via VDIMs, which should protect mitochondria from localized injury. Our findings show a new pathway of intramitochondrial quality control. We show that cytosolic inner mitochondrial membrane vesicles, devoid of outer mitochondrial membrane or mitochondrial matrix, are formed during resting state and directly herniate into lysosomes through pores formed by voltage-dependent anion channel 1 in the outer mitochondrial membrane, thereby allowing their selective removal.

Abstract Image

Abstract Image

溶酶体驱动线粒体内膜的零星清除。
线粒体膜具有不同的结构和功能区。线粒体内膜(IMM)的嵴作为独立的生物能单位发挥作用,会发生快速和瞬时的重塑,但这种分区组织的意义尚不清楚1。在此,我们利用超分辨率显微镜显示,在静息状态下会形成没有线粒体外膜或线粒体基质的细胞膜 IMM 囊泡。这些源自 IMM 的囊泡(VDIMs)是 IMM 通过线粒体外膜上的电压依赖性阴离子通道 1 形成的孔疝形成的。活细胞成像显示,靠近线粒体的溶酶体吞噬了疝出的线粒体,并在运输机械所需的内体分拣复合物的帮助下,以类似微自噬的过程形成了 VDIMs,而放过了细胞器的其余部分。在线粒体受到氧化压力时,VDIM 的形成会增强,这表明它们在维持线粒体功能方面可能发挥作用。此外,VDIMs 的形成需要活性氧激活的溶酶体钙离子通道瞬时受体电位粘脂蛋白 1 释放钙离子,这表明线粒体平衡的维持需要细胞器间的沟通途径。因此,IMM 的分区可以通过 VDIMs 选择性地清除受损的 IMM 部分,从而保护线粒体免受局部损伤。我们的发现展示了线粒体内质量控制的新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nature
Nature 综合性期刊-综合性期刊
CiteScore
90.00
自引率
1.20%
发文量
3652
审稿时长
3 months
期刊介绍: Nature is a prestigious international journal that publishes peer-reviewed research in various scientific and technological fields. The selection of articles is based on criteria such as originality, importance, interdisciplinary relevance, timeliness, accessibility, elegance, and surprising conclusions. In addition to showcasing significant scientific advances, Nature delivers rapid, authoritative, insightful news, and interpretation of current and upcoming trends impacting science, scientists, and the broader public. The journal serves a dual purpose: firstly, to promptly share noteworthy scientific advances and foster discussions among scientists, and secondly, to ensure the swift dissemination of scientific results globally, emphasizing their significance for knowledge, culture, and daily life.
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