Syntaxin 17 Recruits ACSL3 to Lipid Microdomains in Lipid Droplet Biogenesis

Contact Pub Date : 2019-01-01 DOI:10.1177/2515256419838719
Hana Kimura, Kohei Arasaki, Moe Iitsuka, M. Tagaya
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引用次数: 2

Abstract

During lipid droplet (LD) formation, several key enzymes for neutral lipid biosynthesis, such as acyl-CoA synthetase 3 (ACSL3), translocate from the bilayer of the endoplasmic reticulum membrane or mitochondria-associated membrane to the monolayer surface of LDs. It has been recently shown that syntaxin 17 (Stx17) in cooperation with synaptosomal-associated protein of 23 kDa (SNAP23) facilitates the translocation of ACSL3 from the endoplasmic reticulum/mitochondria-associated membrane to LDs. In this study, we investigated whether lipid microdomains enriched in cholesterol and sphingolipids are important for the formation of LDs and the interaction of Stx17 with ACSL3 and SNAP23. Cholesterol depletion and blockage of ceramide synthesis by chemicals inhibited oleic acid (OA)-induced LD biogenesis and decreased the interaction of Stx17 with ACSL3 and SNAP23, whereas blockage of ganglioside GD3 synthesis by sialyltransferase knockdown interfered with LD biogenesis by affecting the interaction of Stx17 with SNAP23 but not ACSL3. Consistent with the requirement of GD3 in LD biogenesis, Stx17 was found to associate with GD3-containing membranes upon OA loading. SNAP23 and a minor fraction of Stx17 were found to reside in detergent-resistant membranes (DRMs), whereas OA treatment caused redistribution of ACSL3 and Stx17 to DRMs. Importantly, the redistribution of ACSL3 to DRMs was abrogated upon depletion of Stx17 or SNAP23. Taken together, our results highlight the importance of lipid microdomains enriched in cholesterol and sphingolipids as a platform for the interaction of Stx17 with ACSL3 and SNAP23 in LD biogenesis.
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Syntaxin 17在脂滴生物发生中将ACSL3招募到脂质微域
在脂滴形成过程中,中性脂质生物合成的几个关键酶,如酰基辅酶a合成酶3 (ACSL3),从内质网膜的双层或线粒体相关膜转移到脂滴的单层表面。最近有研究表明syntaxin 17 (Stx17)与突触体相关蛋白23 kDa (SNAP23)合作,促进ACSL3从内质网/线粒体相关膜转运到ld。在这项研究中,我们研究了富含胆固醇和鞘脂的脂质微结构域是否对LDs的形成以及Stx17与ACSL3和SNAP23的相互作用很重要。胆固醇消耗和化学物质阻断神经酰胺合成抑制油酸(OA)诱导的LD生物发生,降低Stx17与ACSL3和SNAP23的相互作用,而唾液基转移酶敲低阻断神经节苷脂GD3合成通过影响Stx17与SNAP23的相互作用而干扰LD生物发生,但不影响ACSL3的相互作用。与LD生物发生中GD3的要求一致,Stx17在OA加载后被发现与含GD3的膜结合。发现SNAP23和一小部分Stx17存在于耐洗涤剂膜(DRMs)中,而OA处理导致ACSL3和Stx17重新分布到DRMs中。重要的是,在Stx17或SNAP23耗尽后,ACSL3重新分配到drm被废除。综上所述,我们的研究结果强调了富含胆固醇和鞘脂的脂质微结构域作为Stx17与ACSL3和SNAP23相互作用的平台在LD生物发生中的重要性。
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