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小窝蛋白-1和胆固醇在跨膜脂肪酸转运中的作用。

Role of caveolin-1 and cholesterol in transmembrane fatty acid movement.

作者信息

Meshulam Tova, Simard Jeffrey R, Wharton Jonathan, Hamilton James A, Pilch Paul F

机构信息

Department of Biochemistry, Boston University School of Medicine, 715 Albany Street, Boston, Massachusetts 02118, USA.

出版信息

Biochemistry. 2006 Mar 7;45(9):2882-93. doi: 10.1021/bi051999b.

Abstract

We have created by transfection a series of HEK 293 cell lines that express varying amounts of caveolin-1 to test the possible effect of this protein on the transport and metabolism of long chain fatty acids (FA) in cells with this gain of function. We used an extracellular fluorescent probe (ADIFAB) to monitor binding of exogenous FA to the plasma membrane and an intracellular pH probe to monitor FA equilibration across the plasma membrane. Real-time fluorescence measurements showed rapid binding of oleic acid to the extracellular side of the plasma membrane and a rapid translocation across the lipid bilayer by the flip-flop mechanism (<5 s). Two cell lines expressing levels of caveolin-1 roughly comparable to that of adipocytes, which have a very high level of endogenous expression of caveolin-1, showed a relatively slow change in intracellular pH (t(1/2) < 100 s) in addition to the fast changes in fluorescence. We interpret this additional second phase to represent translocation of additional FA from the outer to inner leaflet of the plasma membrane. The slower kinetics could represent either slower flip-flop of FA across highly organized, rigid regions of the plasma membrane or binding of FA to caveolin-1 in the intracellular leaflet of the plasma membrane. The kinetics of palmitate and elaidate (a trans FA) transmembrane movement were identical to that for oleate. These results were observed in the absence of the putative FA transport protein, CD36, and in the absence of any changes in expression of fatty acid transport proteins (FATP) 2 and 4, and are in direct correlation with increased cellular free cholesterol content. FA metabolism was slow in all cell lines and was not enhanced by caveolin-1 expression. We conclude that transport of FA across the plasma membrane is modulated by caveolin-1 and cholesterol and is not dependent on the putative FA transport proteins CD36 and FATP.

摘要

我们通过转染构建了一系列表达不同水平小窝蛋白 -1 的 HEK 293 细胞系,以通过这种功能获得来测试该蛋白对细胞中长链脂肪酸(FA)转运和代谢的可能影响。我们使用细胞外荧光探针(ADIFAB)监测外源 FA 与质膜的结合,并使用细胞内 pH 探针监测 FA 跨质膜的平衡。实时荧光测量显示油酸迅速结合到质膜的细胞外侧,并通过翻转机制(<5 秒)迅速跨脂质双层转运。两个小窝蛋白 -1 表达水平与脂肪细胞大致相当的细胞系,脂肪细胞中内源性小窝蛋白 -1 表达水平非常高,除了荧光的快速变化外,细胞内 pH 还显示出相对缓慢的变化(t(1/2) < 100 秒)。我们将这一额外的第二阶段解释为额外的 FA 从质膜外小叶向内小叶的转运。较慢的动力学可能代表 FA 在质膜高度有序、刚性区域的较慢翻转,或者 FA 与质膜细胞内小叶中的小窝蛋白 -1 结合。棕榈酸酯和反油酸(一种反式 FA)跨膜运动的动力学与油酸相同。这些结果是在假定的 FA 转运蛋白 CD36 不存在以及脂肪酸转运蛋白(FATP)2 和 4 的表达没有任何变化的情况下观察到的,并且与细胞游离胆固醇含量增加直接相关。所有细胞系中的 FA 代谢都很缓慢,并且小窝蛋白 -1 的表达并未增强这种代谢。我们得出结论,FA 跨质膜的转运受小窝蛋白 -1 和胆固醇调节,并且不依赖于假定的 FA 转运蛋白 CD

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