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线粒体-质膜相互作用和通讯。

Mitochondria-plasma membrane interactions and communication.

机构信息

Unidad de Neurobiología Dinámica, Department of Neurochemistry, Instituto Nacional de Neurología y Neurocirugía, Mexico City, Mexico; Lab. BL-305, Instituto de Fisiología Celular, Department of Cognitive Neuroscience, Universidad Nacional Autónoma de México, Mexico City, Mexico.

出版信息

J Biol Chem. 2021 Oct;297(4):101164. doi: 10.1016/j.jbc.2021.101164. Epub 2021 Sep 3.

Abstract

Mitochondria are known as the powerhouses of eukaryotic cells; however, they perform many other functions besides oxidative phosphorylation, including Ca homeostasis, lipid metabolism, antiviral response, and apoptosis. Although other hypotheses exist, mitochondria are generally thought as descendants of an α-proteobacteria that adapted to the intracellular environment within an Asgard archaebacteria, which have been studied for decades as an organelle subdued by the eukaryotic cell. Nevertheless, several early electron microscopy observations hinted that some mitochondria establish specific interactions with certain plasma membrane (PM) domains in mammalian cells. Furthermore, recent findings have documented the direct physical and functional interaction of mitochondria and the PM, the organization of distinct complexes, and their communication through vesicular means. In yeast, some molecular players mediating this interaction have been elucidated, but only a few works have studied this interaction in mammalian cells. In addition, mitochondria can be translocated among cells through tunneling nanotubes or by other mechanisms, and free, intact, functional mitochondria have been reported in the blood plasma. Together, these findings challenge the conception of mitochondria as organelles subdued by the eukaryotic cell. This review discusses the evidence of the mitochondria interaction with the PM that has been long disregarded despite its importance in cell function, pathogenesis, and evolution. It also proposes a scheme of mitochondria-PM interactions with the intent to promote research and knowledge of this emerging pathway that promises to shift the current paradigms of cell biology.

摘要

线粒体被称为真核细胞的“动力工厂”;然而,除了氧化磷酸化之外,它们还具有许多其他功能,包括钙稳态、脂质代谢、抗病毒反应和细胞凋亡。尽管存在其他假说,但线粒体通常被认为是适应古菌细胞内环境的α-变形菌的后代,几十年来,古菌一直作为一种被真核细胞驯服的细胞器进行研究。然而,一些早期的电子显微镜观察结果暗示,哺乳动物细胞中的一些线粒体与特定的质膜(PM)区域建立了特定的相互作用。此外,最近的发现记录了线粒体和 PM 的直接物理和功能相互作用、不同复合物的组织及其通过囊泡的通讯。在酵母中,已经阐明了一些介导这种相互作用的分子,但是只有少数工作研究了哺乳动物细胞中的这种相互作用。此外,线粒体可以通过隧道纳米管或其他机制在细胞间转移,并且在血浆中已经报道了游离的、完整的、功能正常的线粒体。总之,这些发现挑战了线粒体作为被真核细胞驯服的细胞器的概念。这篇综述讨论了长期以来被忽视的线粒体与 PM 相互作用的证据,尽管它对细胞功能、发病机制和进化很重要。它还提出了一个线粒体-PM 相互作用的方案,旨在促进对这一新兴途径的研究和认识,这有望改变细胞生物学的当前范式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dccc/8503596/38445b0b6199/gr1.jpg

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