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线粒体驻留蛋白 2 介导的脂质转移可维持线粒体形态和脂滴形成。

Mitoguardin-2-mediated lipid transfer preserves mitochondrial morphology and lipid droplet formation.

机构信息

Department of Cell Biology, Yale University School of Medicine, New Haven, CT.

Nanobiology Institute, Yale University, West Haven, CT.

出版信息

J Cell Biol. 2022 Dec 5;221(12). doi: 10.1083/jcb.202207022. Epub 2022 Oct 25.

Abstract

Lipid transport proteins at membrane contacts, where organelles are closely apposed, are critical in redistributing lipids from the endoplasmic reticulum (ER), where they are made, to other cellular membranes. Such protein-mediated transfer is especially important for maintaining organelles disconnected from secretory pathways, like mitochondria. We identify mitoguardin-2, a mitochondrial protein at contacts with the ER and/or lipid droplets (LDs), as a lipid transporter. An x-ray structure shows that the C-terminal domain of mitoguardin-2 has a hydrophobic cavity that binds lipids. Mass spectrometry analysis reveals that both glycerophospholipids and free-fatty acids co-purify with mitoguardin-2 from cells, and that each mitoguardin-2 can accommodate up to two lipids. Mitoguardin-2 transfers glycerophospholipids between membranes in vitro, and this transport ability is required for roles both in mitochondrial and LD biology. While it is not established that protein-mediated transfer at contacts plays a role in LD metabolism, our findings raise the possibility that mitoguardin-2 functions in transporting fatty acids and glycerophospholipids at mitochondria-LD contacts.

摘要

位于膜接触处(细胞器紧密相邻的部位)的脂质转运蛋白在将脂质从内质网(脂质合成的场所)重新分配到其他细胞膜中起着关键作用。这种蛋白介导的转移对于维持与分泌途径(如线粒体)分离的细胞器尤为重要。我们发现,与内质网和/或脂滴(LDs)接触的线粒体蛋白 mitoguardin-2 是一种脂质转运蛋白。X 射线结构显示,mitoguardin-2 的 C 端结构域具有一个疏水腔,可结合脂质。质谱分析显示,甘油磷脂和游离脂肪酸都可以与细胞中的 mitoguardin-2 共纯化,每个 mitoguardin-2 可以容纳多达两种脂质。mitoguardin-2 可以在体外将甘油磷脂在膜之间转运,这种转运能力对于线粒体和 LD 生物学中的作用都是必需的。虽然尚不确定接触处的蛋白介导转移是否在 LD 代谢中起作用,但我们的发现提出了一种可能性,即 mitoguardin-2 可能在在线粒体-LD 接触处转运脂肪酸和甘油磷脂方面发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5097/9597353/716f7801dde9/JCB_202207022_Fig1.jpg

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