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神经唾液酸苷酶、髓鞘相关糖蛋白和雪旺细胞髓鞘蛋白与Chol-1(α系列)神经节苷脂及新型硫酸化Chol-1类似物的结合增强。

Enhanced binding of the neural siglecs, myelin-associated glycoprotein and Schwann cell myelin protein, to Chol-1 (alpha-series) gangliosides and novel sulfated Chol-1 analogs.

作者信息

Collins B E, Ito H, Sawada N, Ishida H, Kiso M, Schnaar R L

机构信息

Department of Pharmacology, The Johns Hopkins School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

J Biol Chem. 1999 Dec 31;274(53):37637-43. doi: 10.1074/jbc.274.53.37637.

Abstract

Extended glycoconjugate binding specificities of three sialic acid-dependent immunoglobulin-like family member lectins (siglecs), myelin-associated glycoprotein (MAG), Schwann cell myelin protein (SMP), and sialoadhesin, were compared by measuring siglec-mediated cell adhesion to immobilized gangliosides. Synthetic gangliosides bearing the alpha-series determinant (NeuAc alpha2,6-linked to GalNAc on a gangliotetraose core) were tested, including GD1alpha (IV(3)NeuAc, III(6)NeuAc-Gg(4)OseCer), GD1alpha with modified sialic acid residues at the III(6)-position, and the "Chol-1" gangliosides GT1aalpha (IV(3)NeuAc, III(6)NeuAc, II(3)NeuAc-Gg(4)OseCer) and GQ1balpha (IV(3)NeuAc, III(6)NeuAc, II(3)(NeuAc)(2)-Gg(4)OseCer). The alpha-series gangliosides displayed enhanced potency for MAG- and SMP-mediated cell adhesion (GQ1balpha > GT1aalpha, GD1alpha > GT1b, GD1a >> GM1 (nonbinding)), whereas sialoadhesin-mediated adhesion was comparable with alpha-series and non-alpha-series gangliosides. GD1alpha derivatives with modified sialic acids (7-, 8-, or 9-deoxy) or sulfate (instead of sialic acid) at the III(6)-position supported adhesion comparable with that of GD1alpha. Notably, a novel GT1aalpha analog with sulfates at two internal sites of sialylation (NeuAcalpha2,3Galbeta1,4GalNAc-6-sulfatebeta1, 4Gal3-sulfatebeta1,4Glcbeta1,1'ceramide) was the most potent siglec-binding structure tested to date (10-fold more potent than GT1aalpha in supporting MAG and SMP binding). Together with prior studies, these data indicate that MAG and SMP display an extended structural specificity with a requirement for a terminal alpha2, 3-linked NeuAc and great enhancement by nearby precisely spaced anionic charges.

摘要

通过测量唾液酸依赖性免疫球蛋白样家族成员凝集素(Siglec)、髓鞘相关糖蛋白(MAG)、雪旺细胞髓鞘蛋白(SMP)和唾液酸粘附素介导的细胞与固定化神经节苷脂的粘附,比较了这三种凝集素的扩展糖缀合物结合特异性。测试了带有α系列决定簇(在神经节四糖核心上NeuAcα2,6连接到GalNAc)的合成神经节苷脂,包括GD1α(IV(3)NeuAc,III(6)NeuAc-Gg(4)OseCer)、在III(6)位带有修饰唾液酸残基的GD1α,以及“Chol-1”神经节苷脂GT1aα(IV(3)NeuAc,III(6)NeuAc,II(3)NeuAc-Gg(4)OseCer)和GQ1bα(IV(3)NeuAc,III(6)NeuAc,II(3)(NeuAc)2-Gg(4)OseCer)。α系列神经节苷脂对MAG和SMP介导的细胞粘附显示出增强的效力(GQ1bα>GT1aα,GD1α>GT1b,GD1a>>GM1(不结合)),而唾液酸粘附素介导的粘附与α系列和非α系列神经节苷脂相当。在III(6)位带有修饰唾液酸(7-、8-或9-脱氧)或硫酸盐(代替唾液酸)的GD1α衍生物支持的粘附与GD1α相当。值得注意的是,一种新型的GT1aα类似物,在两个内部唾液酸化位点带有硫酸盐(NeuAcalpha2,3Galbeta1,4GalNAc-6-硫酸盐beta1,4Gal3-硫酸盐beta1,4Glcbeta1,1'神经酰胺),是迄今为止测试的最有效的Siglec结合结构(在支持MAG和SMP结合方面比GT1aα强10倍)。与先前的研究一起,这些数据表明MAG和SMP显示出扩展的结构特异性,需要末端α2,3连接的NeuAc,并且附近精确间隔的阴离子电荷会大大增强其结合能力。

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