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三酰甘油在原代脂肪细胞的特定小窝亚类中合成。

Triacylglycerol is synthesized in a specific subclass of caveolae in primary adipocytes.

作者信息

Ost Anita, Ortegren Unn, Gustavsson Johanna, Nystrom Fredrik H, Strålfors Peter

机构信息

Department of Cell Biology and Diabetes Research Centre, Linköping University, SE58185 Linköping, Sweden.

出版信息

J Biol Chem. 2005 Jan 7;280(1):5-8. doi: 10.1074/jbc.C400429200. Epub 2004 Nov 9.

Abstract

A principal metabolic function of adipocytes is to synthesize triacylglycerol (TG) from exogenous fatty acids. The level of fatty acids has to be tightly controlled in the adipocyte, as they can act as detergents that rapidly dissolve the plasma membrane, causing cell lysis if allowed to accumulate. Fatty acids therefore have to be efficiently converted to TG and stored in the central lipid droplet. We report that in intact primary adipocytes exogenous oleic acid was taken up and directly converted to TG in the plasma membrane, in a novel subclass of caveolae that specifically contains the protein perilipin. Isolated caveolae catalyzed de novo TG synthesis from oleic acid and glycerol 3-phosphate. Electron microscopy revealed the presence of caveolin and perilipin in caveolae and in lipid-laden bulbs in the plasma membrane, and fluorescence microscopy demonstrated colocalization of fatty acids/TG with caveolin and perilipin at the plasma membrane. A second caveolae fraction was isolated, which lacked perilipin and the triacylglycerol synthesizing enzymes. Both caveolae fractions contained caveolin-1 and the insulin receptor. The findings demonstrate that specific subclasses of caveolae carry out specific functions in cell metabolism. In particular, triacylglycerol is synthesized at the site of fatty acid entry in one of these caveolae classes.

摘要

脂肪细胞的一个主要代谢功能是由外源性脂肪酸合成三酰甘油(TG)。脂肪细胞内的脂肪酸水平必须受到严格控制,因为它们可作为去污剂迅速溶解质膜,如果积累过多会导致细胞裂解。因此,脂肪酸必须有效地转化为TG并储存于中央脂滴中。我们报道,在完整的原代脂肪细胞中,外源性油酸在质膜中被摄取并直接转化为TG,该质膜是小窝的一个新亚类,特异性地含有围脂滴蛋白。分离得到的小窝可催化由油酸和3-磷酸甘油从头合成TG。电子显微镜显示小窝以及质膜中充满脂质的小泡中存在小窝蛋白和围脂滴蛋白,荧光显微镜显示脂肪酸/TG与小窝蛋白和围脂滴蛋白在质膜处共定位。分离得到第二个小窝组分,其缺乏围脂滴蛋白和三酰甘油合成酶。两个小窝组分均含有小窝蛋白-1和胰岛素受体。这些发现表明小窝的特定亚类在细胞代谢中执行特定功能。特别是,三酰甘油在其中一类小窝的脂肪酸进入位点合成。

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