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MIROs 和 DRP1 驱动线粒体衍生囊泡的生物发生,并促进质量控制。

MIROs and DRP1 drive mitochondrial-derived vesicle biogenesis and promote quality control.

机构信息

Montreal Neurological Institute, McGill University, Montreal, Quebec, Canada.

Max Planck Institute for Biology of Ageing, Cologne, Germany.

出版信息

Nat Cell Biol. 2021 Dec;23(12):1271-1286. doi: 10.1038/s41556-021-00798-4. Epub 2021 Dec 6.

Abstract

Mitochondrial-derived vesicles (MDVs) are implicated in diverse physiological processes-for example, mitochondrial quality control-and are linked to various neurodegenerative diseases. However, their specific cargo composition and complex molecular biogenesis are still unknown. Here we report the proteome and lipidome of steady-state TOMM20 MDVs. We identified 107 high-confidence MDV cargoes, which include all β-barrel proteins and the TOM import complex. MDV cargoes are delivered as fully assembled complexes to lysosomes, thus representing a selective mitochondrial quality control mechanism for multi-subunit complexes, including the TOM machinery. Moreover, we define key biogenesis steps of phosphatidic acid-enriched MDVs starting with the MIRO1/2-dependent formation of thin membrane protrusions pulled along microtubule filaments, followed by MID49/MID51/MFF-dependent recruitment of the dynamin family GTPase DRP1 and finally DRP1-dependent scission. In summary, we define the function of MDVs in mitochondrial quality control and present a mechanistic model for global GTPase-driven MDV biogenesis.

摘要

线粒体衍生小泡 (MDV) 参与多种生理过程,例如线粒体质量控制,并与多种神经退行性疾病有关。然而,它们的特定货物组成和复杂的分子发生仍不清楚。在这里,我们报告了稳定状态 TOMM20 MDV 的蛋白质组和脂质组。我们鉴定了 107 种高可信度的 MDV 货物,其中包括所有β-桶蛋白和 TOM 导入复合物。MDV 货物作为完整的组装复合物被递送到溶酶体中,因此代表了一种多亚基复合物的选择性线粒体质量控制机制,包括 TOM 机器。此外,我们定义了富含磷酸酰基的 MDV 的关键生物发生步骤,从 MIRO1/2 依赖性形成沿微管丝拉动的薄膜突起开始,随后是 MID49/MID51/MFF 依赖性募集动力蛋白家族 GTPase DRP1,最后是 DRP1 依赖性分裂。总之,我们定义了 MDV 在线粒体质量控制中的功能,并提出了一个用于全局 GTPase 驱动的 MDV 生物发生的机制模型。

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