Sphingosine kinases regulate ER contacts with late endocytic organelles and cholesterol trafficking

内吞循环 细胞生物学 鞘氨醇 神经酰胺 内质网 鞘脂 生物 脂质信号 生物化学 化学 内吞作用 细胞 受体 细胞凋亡
作者
Elisa N.D. Palladino,Tytus Bernaś,Christopher D. Green,Cynthia Weigel,Sandeep K. Singh,Can E. Senkal,Andrea Martello,John P. Kennelly,Erhard Bieberich,Peter Tontonoz,David A. Ford,Sheldon Milstien,Emily R. Eden,Sarah Spiegel
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:119 (39) 被引量:11
标识
DOI:10.1073/pnas.2204396119
摘要

Membrane contact sites (MCS), close membrane apposition between organelles, are platforms for interorganellar transfer of lipids including cholesterol, regulation of lipid homeostasis, and co-ordination of endocytic trafficking. Sphingosine kinases (SphKs), two isoenzymes that phosphorylate sphingosine to the bioactive sphingosine-1-phosphate (S1P), have been implicated in endocytic trafficking. However, the physiological functions of SphKs in regulation of membrane dynamics, lipid trafficking and MCS are not known. Here, we report that deletion of SphKs decreased S1P with concomitant increases in its precursors sphingosine and ceramide, and markedly reduced endoplasmic reticulum (ER) contacts with late endocytic organelles. Expression of enzymatically active SphK1, but not catalytically inactive, rescued the deficit of these MCS. Although free cholesterol accumulated in late endocytic organelles in SphK null cells, surprisingly however, cholesterol transport to the ER was not reduced. Importantly, deletion of SphKs promoted recruitment of the ER-resident cholesterol transfer protein Aster-B (also called GRAMD1B) to the plasma membrane (PM), consistent with higher accessible cholesterol and ceramide at the PM, to facilitate cholesterol transfer from the PM to the ER. In addition, ceramide enhanced in vitro binding of the Aster-B GRAM domain to phosphatidylserine and cholesterol liposomes. Our study revealed a previously unknown role for SphKs and sphingolipid metabolites in governing diverse MCS between the ER network and late endocytic organelles versus the PM to control the movement of cholesterol between distinct cell membranes.
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