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在内质网或脂滴的二酰甘油富集过程中,在脂质储存和动员期间募集脂滴包被蛋白3/TIP47。

Diacylglycerol enrichment of endoplasmic reticulum or lipid droplets recruits perilipin 3/TIP47 during lipid storage and mobilization.

作者信息

Skinner James R, Shew Trevor M, Schwartz Danielle M, Tzekov Anatoly, Lepus Christin M, Abumrad Nada A, Wolins Nathan E

机构信息

Center for Human Nutrition, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Biol Chem. 2009 Nov 6;284(45):30941-8. doi: 10.1074/jbc.M109.013995. Epub 2009 Sep 11.

Abstract

Fatty acid-induced triacylglycerol synthesis produces triacylglycerol droplets with a protein coat that includes perilipin 3/TIP47 and perilipin 4/S3-12. This study addresses the following two questions. Where do lipid droplets emerge, and how are their coat proteins recruited? We show that perilipin 3- and perilipin 4-coated lipid droplets emerge along the endoplasmic reticulum (ER). Blocking membrane trafficking with AlF(4)(-) during fatty acid-induced triacylglycerol synthesis drove perilipin 3 to the tubular ER. Forskolin, which like AlF(4)(-) activates adenylate cyclase, did not redistribute perilipin 3, but when added together with AlF(4)(-) perilipin 3 was recruited to lipid droplets rather than the ER. Thus inhibiting trafficking with AlF(4)(-) redistributed perilipin 3 differently under conditions of triacylglycerol synthesis (fatty acid addition) versus hydrolysis (forskolin) suggesting a shared acylglycerol-mediated mechanism. We tested whether diacylglycerol (DG), the immediate precursor of triacylglycerol and its first hydrolytic product, affects the distribution of perilipin 3. Stabilizing DG with the DG lipase inhibitor RHC80267 enhanced the perilipin 3 recruited to lipid droplets and raised DG levels in this fraction. Treating cells with a membrane-permeable DG recruited perilipin 3 to the ER. Stabilizing DG, by blocking its hydrolysis with RHC80267 or its acylation with triacsin C, enhanced recruitment of perilipin 3 to the ER. Expressing the ER enzyme DGAT1, which removes DG by converting it to triacylglycerol, attenuated perilipin 3 DG-induced ER recruitment. Membrane-permeable DG also drove perilipin 4 and 5 onto the ER. Together the data suggest that these lipid droplet proteins are recruited to DG-enriched membranes thereby linking lipid coat proteins to the metabolic state of the cell.

摘要

脂肪酸诱导的三酰甘油合成产生带有蛋白质外壳的三酰甘油液滴,该蛋白质外壳包括脂滴包被蛋白3/TIP47和脂滴包被蛋白4/S3-12。本研究探讨以下两个问题。脂滴出现在哪里,以及它们的外壳蛋白是如何被招募的?我们发现,带有脂滴包被蛋白3和脂滴包被蛋白4的脂滴沿着内质网(ER)出现。在脂肪酸诱导的三酰甘油合成过程中,用AlF(4)(-)阻断膜运输会使脂滴包被蛋白3转移到内质网管状结构上。与AlF(4)(-)一样能激活腺苷酸环化酶的福斯可林,并不会使脂滴包被蛋白3重新分布,但当与AlF(4)(-)一起添加时,脂滴包被蛋白3会被招募到脂滴而不是内质网上。因此,在三酰甘油合成(添加脂肪酸)与水解(福斯可林)条件下,用AlF(4)(-)抑制运输对脂滴包被蛋白3的重新分布方式不同,这表明存在一种共同的酰基甘油介导机制。我们测试了三酰甘油的直接前体及其首个水解产物二酰甘油(DG)是否会影响脂滴包被蛋白3的分布。用二酰甘油脂肪酶抑制剂RHC80267稳定二酰甘油,会增强被招募到脂滴的脂滴包被蛋白3,并提高该部分的二酰甘油水平。用可透过膜的二酰甘油处理细胞会使脂滴包被蛋白3转移到内质网上。通过用RHC80267阻断其水解或用三辛素C阻断其酰化来稳定二酰甘油,会增强脂滴包被蛋白3向内质网的招募。表达内质网酶二酰甘油酰基转移酶1(DGAT1),该酶通过将二酰甘油转化为三酰甘油来去除二酰甘油,会减弱二酰甘油诱导的脂滴包被蛋白3向内质网的招募。可透过膜的二酰甘油也会使脂滴包被蛋白4和5转移到内质网上。这些数据共同表明,这些脂滴蛋白被招募到富含二酰甘油的膜上,从而将脂滴外壳蛋白与细胞的代谢状态联系起来。

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