鞘脂
生物
神经酰胺
细胞生物学
碎片(计算)
胰岛素抵抗
线粒体
生物化学
肥胖
细胞凋亡
内分泌学
生态学
作者
Philipp Hammerschmidt,Daniela Ostkotte,Hendrik Nolte,Mathias J. Gerl,Alexander Jaïs,Hanna L. Brunner,Hans‐Georg Sprenger,Motoharu Awazawa,Hayley T. Nicholls,Sarah M. Turpin-Nolan,Thomas Langer,Marcus Krüger,Britta Brügger,Jens C. Brüning
出处
期刊:Cell
[Cell Press]
日期:2019-05-01
卷期号:177 (6): 1536-1552.e23
被引量:323
标识
DOI:10.1016/j.cell.2019.05.008
摘要
Ectopic lipid deposition and altered mitochondrial dynamics contribute to the development of obesity and insulin resistance. However, the mechanistic link between these processes remained unclear. Here we demonstrate that the C16:0 sphingolipid synthesizing ceramide synthases, CerS5 and CerS6, affect distinct sphingolipid pools and that abrogation of CerS6 but not of CerS5 protects from obesity and insulin resistance. We identify proteins that specifically interact with C16:0 sphingolipids derived from CerS5 or CerS6. Here, only CerS6-derived C16:0 sphingolipids bind the mitochondrial fission factor (Mff). CerS6 and Mff deficiency protect from fatty acid-induced mitochondrial fragmentation in vitro, and the two proteins genetically interact in vivo in obesity-induced mitochondrial fragmentation and development of insulin resistance. Our experiments reveal an unprecedented specificity of sphingolipid signaling depending on specific synthesizing enzymes, provide a mechanistic link between hepatic lipid deposition and mitochondrial fragmentation in obesity, and define the CerS6-derived sphingolipid/Mff interaction as a therapeutic target for metabolic diseases.
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