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来自紫藤种子的一种GalNAc和多聚Galβ1→4GlcNAc反应性凝集素的凝集化学特性

Lectinochemical characterization of a GalNAc and multi-Galbeta1-->4GlcNAc reactive lectin from Wistaria sinensis seeds.

作者信息

Song S S, Chen Y Y, Herp A, Tsai M S, Wu A M

机构信息

Glyco-Immunochemistry Research Lab, Institute of Molecular and Cellular Biology, Chang-Gung Medical College, Kwei-san, Tao-yuan, Taiwan.

出版信息

Eur J Biochem. 1999 Dec;266(3):778-88. doi: 10.1046/j.1432-1327.1999.00908.x.

Abstract

An agglutinin that has high affinity for GalNAcbeta1-->, was isolated from seeds of Wistaria sinensis by adsorption to immobilized mild acid-treated hog gastric mucin on Sepharose 4B matrix and elution with aqueous 0.2 M lactose. The binding property of this lectin was characterized by quantitative precipitin assay (QPA) and by inhibition of biotinylated lectin-glycan interaction. Of the 37 glycoforms tested by QPA, this agglutinin reacted best with a GalNAcbeta1-->4 containing glycoprotein (GP) [Tamm-Horsfall Sd(a+) GP]; a Galbeta1-->4GlcNAc containing GP (human blood group precursor glycoprotein from ovarian cyst fluid and asialo human alpha1-acid GP) and a GalNAcalpha1-->3GalNAc containing GP (asialo bird nest GP), but poorly or not at all with most sialic acid containing glycoproteins. Among the oligosaccharides tested, GalNAcalpha1-->3GalNAcbeta1-->3Galalpha1-->4Galbeta 1-->4Glc (Fp) was the most active ligand. It was as active as GalNAc and two to 11 times more active than Tn cluster mixtures, Galbeta1--> 3/4GlcNAc (I/II), GalNAcalpha1-->3(L-Fucalpha1-->2)Gal (Ah), Galbeta1-->4Glc (L), Galbeta1-->3GalNAc (T) and Galalpha1--> 3Galalpha-->methyl (B). Of the monosaccharides and their glycosides tested, p-nitrophenyl betaGalNAc was the best inhibitor; it was approximately 1.7 and 2.5 times more potent than its corresponding alpha anomer and GalNAc (or Fp), respectively. GalNAc was 53.3 times more active than Gal. From the present observations, it can be concluded that the Wistaria agglutinin (WSA) binds to the C-3, C-4 and C-6 positions of GalNAc and Gal residues; the N-acetyl group at C-2 enhances its binding dramatically. The combining site of WSA for GalNAc related ligands is most likely of a shallow type, able to recognize both alpha and beta anomers of GalNAc. Gal ligands must be Galbeta1-->3/4GlcNAc related, in which subterminal beta1-->3/4 GlcNAc contributes significantly to binding; hydrophobicity is important for binding of the beta anomer of Gal. The decreasing order of the affinity of WSA for mammalian structural carbohydrate units is Fp >/= multi-II > monomeric II >/= Tn, I and Ah >/= E and L > T > Gal.

摘要

通过吸附到固定在琼脂糖4B基质上的经温和酸处理的猪胃粘蛋白上,并用水性0.2M乳糖洗脱,从紫藤种子中分离出一种对GalNAcbeta1--具有高亲和力的凝集素。通过定量沉淀试验(QPA)和抑制生物素化凝集素-聚糖相互作用来表征这种凝集素的结合特性。在通过QPA测试的37种糖型中,这种凝集素与含GalNAcbeta1-->4的糖蛋白(GP)[Tamm-Horsfall Sd(a+) GP]、含Galbeta1-->4GlcNAc的GP(来自卵巢囊肿液的人血型前体糖蛋白和去唾液酸人α1-酸性GP)以及含GalNAcalpha1-->3GalNAc的GP(去唾液酸燕窝GP)反应最佳,但与大多数含唾液酸的糖蛋白反应较差或根本不反应。在所测试的寡糖中,GalNAcalpha1-->3GalNAcbeta1-->3Galalpha1-->4Galbeta 1-->4Glc(Fp)是最具活性的配体。它与GalNAc活性相当,比Tn簇混合物、Galbeta1--> 3/4GlcNAc(I/II)、GalNAcalpha1-->3(L-Fucalpha1-->2)Gal(Ah)、Galbeta1-->4Glc(L)、Galbeta1-->3GalNAc(T)和Galalpha1--> 3Galalpha-->甲基(B)活性高2至11倍。在所测试的单糖及其糖苷中,对硝基苯基βGalNAc是最佳抑制剂;它分别比其相应的α异头物和GalNAc(或Fp)强约1.7倍和2.5倍。GalNAc的活性比Gal高53.3倍。从目前的观察结果可以得出结论,紫藤凝集素(WSA)与GalNAc和Gal残基的C-3、C-4和C-6位结合;C-2位的N-乙酰基显著增强其结合。WSA与GalNAc相关配体的结合位点很可能是浅型的,能够识别GalNAc的α和β异头物。Gal配体必须是Galbeta1-->3/4GlcNAc相关的,其中亚末端β1-->3/4 GlcNAc对结合有显著贡献;疏水性对Gal的β异头物的结合很重要。WSA对哺乳动物结构碳水化合物单元的亲和力由高到低的顺序为Fp >= 多聚体II > 单体II >= Tn、I和Ah >= E和L > T > Gal。

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