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The FATP1–DGAT2 complex facilitates lipid droplet expansion at the ER–lipid droplet interface

机译:FATP1-DGAT2复合物可促进脂质-脂质液滴界面的脂质液滴扩展

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At the subcellular level, fat storage is confined to the evolutionarily conserved compartments termed lipid droplets (LDs), which are closely associated with the endoplasmic reticulum (ER). However, the molecular mechanisms that enable ER–LD interaction and facilitate neutral lipid loading into LDs are poorly understood. In this paper, we present evidence that FATP1/acyl-CoA synthetase and DGAT2/diacylglycerol acyltransferase are components of a triglyceride synthesis complex that facilitates LD expansion. A loss of FATP1 or DGAT2 function blocked LD expansion in Caenorhabditis elegans . FATP1 preferentially associated with DGAT2, and they acted synergistically to promote LD expansion in mammalian cells. Live imaging indicated that FATP1 and DGAT2 are ER and LD resident proteins, respectively, and electron microscopy revealed FATP1 and DGAT2 foci close to the LD surface. Furthermore, DGAT2 that was retained in the ER failed to support LD expansion. We propose that the evolutionarily conserved FATP1–DGAT2 complex acts at the ER–LD interface and couples the synthesis and deposition of triglycerides into LDs both physically and functionally.
机译:在亚细胞水平上,脂肪储存被限制在称为脂质滴(LDs)的进化保守的区室中,该区与内质网(ER)密切相关。但是,人们对使ER-LD相互作用并促进中性脂质装载入LD的分子机制了解甚少。在本文中,我们提供证据证明FATP1 /酰基辅酶A合成酶和DGAT2 /二酰基甘油酰基转移酶是甘油三酸酯合成复合物的组成部分,可促进LD的扩展。 FATP1或DGAT2功能的丧失阻止秀丽隐杆线虫的LD扩张。 FATP1优先与DGAT2相关,并且它们协同作用以促进哺乳动物细胞中LD的扩增。实时成像表明FATP1和DGAT2分别是ER和LD驻留蛋白,并且电子显微镜检查显示FATP1和DGAT2焦点位于LD表面附近。此外,保留在ER中的DGAT2无法支持LD扩展。我们建议,进化上保守的FATP1-DGAT2复合物在ER-LD界面起作用,并将甘油三酸酯的合成和沉积在物理和功能上耦合到LD中。

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