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线性甘露寡糖与三种甘露糖特异性球型凝集素的相互作用。与甘露糖/葡萄糖结合凝集素的比较。

Interaction of linear manno-oligosaccharides with three mannose-specific bulb lectins. Comparison with mannose/glucose-binding lectins.

作者信息

Kaku H, Goldstein I J

机构信息

Department of Biological Chemistry, University of Michigan, Ann Arbor 48109.

出版信息

Carbohydr Res. 1992 May 22;229(2):337-46. doi: 10.1016/s0008-6215(00)90579-2.

Abstract

Three new mannose-binding lectins, isolated from daffodil (NPA), amaryllis (HHA), and snowdrop (GNA) bulbs, are capable of precipitating with a linear mannopentaose (Man alpha 1-3Man alpha 1-3Man alpha 1-3Man alpha 1-2Man). NPA and HHA reacted strongly with the mannopentaose whereas GNA gave a precipitate only at concentrations greater than 500 microM. A phosphate group at C-6 of the nonreducing terminal mannosyl group prevented precipitation in all three cases. The reduced (NaBH4) mannopentaose, Man4Man-ol, did not precipitate with GNA or NPA, but was active with HHA. This activity was lost when Man4Man-ol was converted (NaIO4 then NaBH4; mild acid hydrolysis of the reduced product) into trisaccharide derivatives. With alpha-D-Manp-OMe the three lectins gave UV difference spectra having large positive peaks at 292-293 and 283-284 nm, and a small positive peak at 275 nm, characteristic of tryptophanyl and tyrosyl residues. The association constants for the interaction with alpha-D-Manp-OMe were very low (NPA, 86; HHA, 66; and GNA, 41 M-1), but the lectins bound methyl (1----3)-alpha-mannobioside with increased affinity (K for NPA 540, for HHA 2400, and for GNA 200 M-1). The bulb lectins lack binding sites for hydrophobic ligands, as judged by their failure to interact with the fluorescent probes 8-anilino-1-napthalenesulfonic acid (ANS) and 6-p-toluidino-2-naphthalenesulfonic acid (TNS).

摘要

从水仙(NPA)、孤挺花(HHA)和雪花莲(GNA)鳞茎中分离出的三种新的甘露糖结合凝集素,能够与线性甘露五糖(Manα1-3Manα1-3Manα1-3Manα1-2Man)发生沉淀反应。NPA和HHA与甘露五糖反应强烈,而GNA仅在浓度大于500 microM时才产生沉淀。在所有三种情况下,非还原末端甘露糖基C-6位的磷酸基团都会阻止沉淀。还原型(NaBH4)甘露五糖Man4Man-ol不能与GNA或NPA沉淀,但对HHA有活性。当Man4Man-ol转化为(先用NaIO4然后用NaBH4;还原产物的温和酸水解)三糖衍生物时,这种活性丧失。对于α-D-Manp-OMe,这三种凝集素产生的紫外差光谱在292-293和283-284 nm处有大的正峰,在275 nm处有小的正峰,这是色氨酸和酪氨酸残基的特征。与α-D-Manp-OMe相互作用的缔合常数非常低(NPA为86;HHA为66;GNA为41 M-1),但凝集素与甲基(1→3)-α-甘露二糖苷的结合亲和力增加(NPA的K为540,HHA的K为2400,GNA的K为200 M-1)。根据它们与荧光探针8-苯胺基-1-萘磺酸(ANS)和6-对甲苯胺基-2-萘磺酸(TNS)不相互作用判断,鳞茎凝集素缺乏与疏水配体的结合位点。

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