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Seipin 定位于内质网-线粒体接触位点,以控制脂肪细胞中线粒体的钙摄取和代谢。

Seipin localizes at endoplasmic-reticulum-mitochondria contact sites to control mitochondrial calcium import and metabolism in adipocytes.

机构信息

Université de Nantes, CNRS, INSERM, l'institut du thorax, 44000 Nantes, France.

Department of Anatomy and Stem Cells and Metabolism Research Program, Faculty of Medicine, University of Helsinki, Helsinki, Finland; Minerva Foundation Institute for Medical Research, Helsinki, Finland.

出版信息

Cell Rep. 2022 Jan 11;38(2):110213. doi: 10.1016/j.celrep.2021.110213.

Abstract

Deficiency of the endoplasmic reticulum (ER) protein seipin results in generalized lipodystrophy by incompletely understood mechanisms. Here, we report mitochondrial abnormalities in seipin-deficient patient cells. A subset of seipin is enriched at ER-mitochondria contact sites (MAMs) in human and mouse cells and localizes in the vicinity of calcium regulators SERCA2, IP3R, and VDAC. Seipin association with MAM calcium regulators is stimulated by fasting-like stimuli, while seipin association with lipid droplets is promoted by lipid loading. Acute seipin removal does not alter ER calcium stores but leads to defective mitochondrial calcium import accompanied by a widespread reduction in Krebs cycle metabolites and ATP levels. In mice, inducible seipin deletion leads to mitochondrial dysfunctions preceding the development of metabolic complications. Together, these data suggest that seipin controls mitochondrial energy metabolism by regulating mitochondrial calcium influx at MAMs. In seipin-deficient adipose tissue, reduced ATP production compromises adipocyte properties, contributing to lipodystrophy pathogenesis.

摘要

内质网(ER)蛋白 seipin 的缺乏通过尚未完全理解的机制导致全身性脂肪营养不良。在这里,我们报告了 seipin 缺陷患者细胞中的线粒体异常。在人和小鼠细胞中,seipin 的亚群富集在 ER-线粒体接触位点(MAMs)处,并定位于钙调节剂 SERCA2、IP3R 和 VDAC 的附近。seipin 与 MAM 钙调节剂的结合受类似于禁食的刺激物刺激,而 seipin 与脂滴的结合则受到脂质加载的促进。急性 seipin 去除不会改变 ER 钙储存,但会导致线粒体钙内流缺陷,伴随着三羧酸循环代谢物和 ATP 水平的广泛降低。在小鼠中,诱导性 seipin 缺失会导致代谢并发症发生之前出现线粒体功能障碍。总之,这些数据表明 seipin 通过调节 MAMs 处的线粒体钙内流来控制线粒体能量代谢。在 seipin 缺乏的脂肪组织中,减少的 ATP 产生会损害脂肪细胞特性,导致脂肪营养不良的发病机制。

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