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GM2激活蛋白与鞘糖脂的相互作用。

Interaction of GM2 activator protein with glycosphingolipids.

作者信息

Hama Y, Li Y T, Li S C

机构信息

Department of Biochemistry, Tulane University School of Medicine, New Orleans, Louisiana 70112, USA.

出版信息

J Biol Chem. 1997 Jan 31;272(5):2828-33. doi: 10.1074/jbc.272.5.2828.

Abstract

GM2 activator protein is a protein cofactor that has been shown to stimulate the enzymatic hydrolysis of both GalNAc and NeuAc from GM2 (Wu, Y. Y., Lockyer, J. M., Sugiyama, E., Pavlova, N.V., Li, Y.-T., and Li, S.-C. (1994) J. Biol. Chem. 269, 16276-16283). To understand the mechanism by which GM2 activator stimulates the hydrolysis of GM2, we examined the interaction of this activator protein with GM2 as well as with other glycosphingolipids by TLC overlay and Sephacryl S-200 gel filtration. The TLC overlay analysis unveiled the binding specificity of GM2 activator, which was not previously revealed. Under the conditions optimal for the activator protein to stimulate the hydrolysis of GM2 by beta-hexosaminidase A, GM2 activator was found to bind avidly to acidic glycosphingolipids, including gangliosides and sulfated glycosphingolipids, but not to neutral glycosphingolipids. The gangliosides devoid of sialic acids, such as asialo-GM1 and asialo-GM2, and the GM2 derivatives whose carboxyl function in the NeuAc had been modified by methyl esterification or reduction, were only very weakly bound to GM2 activator. These results indicate that the negatively charged sugar residue or sulfate group in gangliosides is one of the important sites recognized by GM2 activator. For comparison, we also studied in parallel the complex formation between glycosphingolipids and saposin B, a separate activator protein with broad specificity to stimulate the hydrolysis of various glycosphingolipids. We found that saposin B bound to neutral glycosphingolipids and gangliosides equally well, and there was an exceptionally strong binding to sulfatide. In contrast to previous reports, we found that GM2 activator formed complexes with GM2 and other gangliosides in different proportions depending on the ratio between the activator protein and the ganglioside in the incubation mixture prior to gel filtration. We were not able to detect the specific binding of GM2 activator to GM2 when GM2 was mixed with GM1 or GM3. Thus, the specificity or the mode of action of GM2 activator cannot be simply explained by its interaction with glycosphingolipids based on complex formation. The binding of GM2 activator to a wide variety of negatively charged glycosphingolipids may indicate that this activator protein has functions other than assisting the enzymatic hydrolysis of GM2.

摘要

GM2激活蛋白是一种蛋白质辅因子,已被证明可刺激从GM2中酶促水解GalNAc和NeuAc(Wu, Y. Y., Lockyer, J. M., Sugiyama, E., Pavlova, N.V., Li, Y.-T., and Li, S.-C. (1994) J. Biol. Chem. 269, 16276 - 16283)。为了了解GM2激活蛋白刺激GM2水解的机制,我们通过薄层层析(TLC)覆盖法和Sephacryl S - 200凝胶过滤法研究了该激活蛋白与GM2以及其他糖鞘脂的相互作用。TLC覆盖分析揭示了GM2激活蛋白的结合特异性,这在以前尚未被揭示。在激活蛋白刺激β - 己糖胺酶A水解GM2的最佳条件下,发现GM2激活蛋白与酸性糖鞘脂(包括神经节苷脂和硫酸化糖鞘脂)有强烈结合,但与中性糖鞘脂无结合。不含唾液酸的神经节苷脂,如脱唾液酸GM1和脱唾液酸GM2,以及NeuAc中羧基功能经甲酯化或还原修饰的GM2衍生物,与GM2激活蛋白的结合非常弱。这些结果表明神经节苷脂中带负电荷的糖残基或硫酸基团是GM2激活蛋白识别的重要位点之一。为作比较,我们还平行研究了糖鞘脂与鞘脂激活蛋白B之间的复合物形成,鞘脂激活蛋白B是一种具有广泛特异性的单独激活蛋白,可刺激各种糖鞘脂的水解。我们发现鞘脂激活蛋白B与中性糖鞘脂和神经节苷脂的结合同样良好,并且与硫苷脂有异常强烈的结合。与先前的报道相反,我们发现GM2激活蛋白与GM2和其他神经节苷脂形成的复合物比例不同,这取决于凝胶过滤前孵育混合物中激活蛋白与神经节苷脂的比例。当GM2与GM1或GM3混合时,我们无法检测到GM2激活蛋白与GM2的特异性结合。因此,GM2激活蛋白的特异性或作用方式不能简单地通过其基于复合物形成与糖鞘脂的相互作用来解释。GM2激活蛋白与多种带负电荷的糖鞘脂的结合可能表明该激活蛋白除了协助GM2的酶促水解外还有其他功能。

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