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小窝内吞作用和一种糖鞘脂类似物的微区缔合取决于其鞘氨醇的立体化学结构。

Caveolar endocytosis and microdomain association of a glycosphingolipid analog is dependent on its sphingosine stereochemistry.

作者信息

Singh Raman Deep, Liu Yidong, Wheatley Christine L, Holicky Eileen L, Makino Asami, Marks David L, Kobayashi Toshihide, Subramaniam Gopal, Bittman Robert, Pagano Richard E

机构信息

Department of Biochemistry and Molecular Biology, Mayo Clinic College of Medicine, Rochester, Minnesota 55905, USA.

出版信息

J Biol Chem. 2006 Oct 13;281(41):30660-8. doi: 10.1074/jbc.M606194200. Epub 2006 Aug 7.

Abstract

We have previously shown that glycosphingolipid analogs are internalized primarily via caveolae in various cell types. This selective internalization was not dependent on particular carbohydrate headgroups or sphingosine chain length. Here, we examine the role of sphingosine structure in the endocytosis of BODIPYtrade mark-tagged lactosylceramide (LacCer) analogs via caveolae. We found that whereas the LacCer analog with the natural (D-erythro) sphingosine stereochemistry is internalized mainly via caveolae, the non-natural (L-threo) LacCer analog is taken up via clathrin-, RhoA-, and Cdc42-dependent mechanisms and largely excluded from uptake via caveolae. Unlike the D-erythro-LacCer analog, the L-threo analog did not cluster in membrane microdomains when added at higher concentrations (5-20 microm). In vitro studies using small unilamellar vesicles and giant unilamellar vesicles demonstrated that L-threo-LacCer did not undergo a concentration-dependent excimer shift in fluorescence emission such as that seen with BODIPYtrade mark-sphingolipids with natural stereochemistry. Molecular modeling studies suggest that in d-erythro-LacCer, the disaccharide moiety extends above and in the same plane as the sphingosine hydrocarbon chain, while in L-threo-LacCer the carbohydrate group is nearly perpendicular to the hydrocarbon chain. Together, these results suggest that the altered stereochemistry of the sphingosine group in L-threo-LacCer results in a perturbed structure, which is unable to pack closely with natural membrane lipids, leading to a reduced inclusion in plasma membrane microdomains and decreased uptake by caveolar endocytosis. These findings demonstrate the importance of the sphingolipid stereochemistry in the formation of membrane microdomains.

摘要

我们之前已经表明,糖鞘脂类似物在各种细胞类型中主要通过小窝进行内化。这种选择性内化不依赖于特定的碳水化合物头部基团或鞘氨醇链长度。在这里,我们研究了鞘氨醇结构在BODIPY商标标记的乳糖神经酰胺(LacCer)类似物通过小窝进行内吞作用中的作用。我们发现,具有天然(D-赤藓糖型)鞘氨醇立体化学结构的LacCer类似物主要通过小窝进行内化,而非天然(L-苏阿糖型)LacCer类似物则通过网格蛋白、RhoA和Cdc42依赖性机制进行摄取,并且在很大程度上被排除在通过小窝的摄取之外。与D-赤藓糖型-LacCer类似物不同,当以较高浓度(5-20微摩尔)添加时,L-苏阿糖型类似物不会在膜微区中聚集。使用小单层囊泡和大单层囊泡的体外研究表明,L-苏阿糖型-LacCer在荧光发射中不会发生浓度依赖性的准分子位移,而具有天然立体化学结构的BODIPY商标鞘脂则会发生这种位移。分子建模研究表明,在D-赤藓糖型-LacCer中,二糖部分在鞘氨醇烃链上方并与其处于同一平面,而在L-苏阿糖型-LacCer中,碳水化合物基团几乎垂直于烃链。总之,这些结果表明,L-苏阿糖型-LacCer中鞘氨醇基团立体化学的改变导致结构紊乱,无法与天然膜脂紧密堆积,从而导致质膜微区中的包含减少以及小窝内吞作用的摄取减少。这些发现证明了鞘脂立体化学在膜微区形成中的重要性。

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