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体外揭示的内质网-线粒体接触结构的磷脂转移功能。

A phospholipid transfer function of ER-mitochondria encounter structure revealed in vitro.

作者信息

Kojima Rieko, Endo Toshiya, Tamura Yasushi

机构信息

Department of Material and Biological Chemistry, Faculty of Science, Yamagata University, 1-4-12, Kojirakawa-machi, Yamagata, Yamagata 990-8560, Japan.

Faculty of Life Sciences, Kyoto Sangyo University, Kamigamo-motoyama, Kita-ku, Kyoto 603-8555, Japan.

出版信息

Sci Rep. 2016 Jul 29;6:30777. doi: 10.1038/srep30777.

Abstract

As phospholipids are synthesized mainly in the endoplasmic reticulum (ER) and mitochondrial inner membranes, how cells properly distribute specific phospholipids to diverse cellular membranes is a crucial problem for maintenance of organelle-specific phospholipid compositions. Although the ER-mitochondria encounter structure (ERMES) was proposed to facilitate phospholipid transfer between the ER and mitochondria, such a role of ERMES is still controversial and awaits experimental demonstration. Here we developed a novel in vitro assay system with isolated yeast membrane fractions to monitor phospholipid exchange between the ER and mitochondria. With this system, we found that phospholipid transport between the ER and mitochondria relies on membrane intactness, but not energy sources such as ATP, GTP or the membrane potential across the mitochondrial inner membrane. We further found that lack of the ERMES component impairs the phosphatidylserine transport from the ER to mitochondria, but not the phosphatidylethanolamine transport from mitochondria to the ER. This in vitro assay system thus offers a powerful tool to analyze the non-vesicular phospholipid transport between the ER and mitochondria.

摘要

由于磷脂主要在内质网(ER)和线粒体内膜中合成,细胞如何将特定磷脂正确分配到不同的细胞膜对于维持细胞器特异性磷脂组成而言是一个关键问题。尽管内质网 - 线粒体接触结构(ERMES)被认为有助于内质网和线粒体之间的磷脂转移,但ERMES的这种作用仍存在争议,有待实验证明。在此,我们开发了一种新的体外检测系统,使用分离的酵母膜组分来监测内质网和线粒体之间的磷脂交换。利用该系统,我们发现内质网和线粒体之间的磷脂转运依赖于膜的完整性,而非ATP、GTP等能量来源或线粒体内膜的膜电位。我们进一步发现,缺少ERMES组分损害了磷脂酰丝氨酸从内质网到线粒体的转运,但不影响磷脂酰乙醇胺从线粒体到内质网的转运。因此,这种体外检测系统为分析内质网和线粒体之间的非囊泡性磷脂转运提供了一个强大的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e82/4965753/5513b9687e58/srep30777-f1.jpg

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