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从面包树种子中分离出的一种对Tα(Galβ1→3GalNAcα1→Ser/Thr)和Tn(GalNAcα1→Ser/Thr)具有特异性的凝集素的碳水化合物识别因子。

Carbohydrate recognition factors of a Talpha (Galbeta1-->3GalNAcalpha1-->Ser/Thr) and Tn (GalNAcalpha1-->Ser/Thr) specific lectin isolated from the seeds of Artocarpus lakoocha.

作者信息

Singh Tanuja, Chatterjee Urmimala, Wu June H, Chatterjee Bishnu P, Wu Albert M

机构信息

Glyco-Immunochemistry Research Laboratory, Institute of Molecular and Cellular Biology, Chang-Gung University, Kwei-san, Tao-yuan, 333, Taiwan.

出版信息

Glycobiology. 2005 Jan;15(1):67-78. doi: 10.1093/glycob/cwh144. Epub 2004 Aug 25.

Abstract

Artocarpus lakoocha agglutinin (ALA), isolated from the seeds of A. lakoocha fruit, is a galactose-binding lectin and a potent mitogen of T and B cells. Knowledge obtained from previous studies on the affinity of ALA was limited to molecular and submolecular levels of Galbeta1-->3GalNAc (T) and its derivatives. In the present study, the carbohydrate specificity of ALA was characterized at the macromolecular level according to the mammalian Gal/GalNAc structural units and corresponding glycoconjugates by an enzyme-linked lectinosorbent (ELLSA) and inhibition assays. The results indicate that ALA binds specifically to tumor-associated carbohydrate antigens GalNAcalpha1-->Ser/Thr (Tn) and Galbeta1-->3 GalNAcalpha1-->Ser/Thr (Talpha). It barely cross-reacts with other common glycotopes on glycoproteins, including ABH blood group antigens, Galbeta1-->3/4GlcNAc (I/II) determinants, T/Tn covered by sialic acids, and N-linked plasma glycoproteins. Dense clustering structure of Tn/Talpha-containing glycoproteins tested resulted in 2.4 x 10(5)-6.7 x 10(5)-fold higher affinities to ALA than the respective GalNAc and Gal monomer. According to our results, the overall affinity of ALA for glycans can be ranked respectively: polyvalent Tn/Talpha glycotopes >> monomeric Talpha and simple clustered Tn >> monomeric Tn > GalNAc > Gal; while other glycotopes: Galalpha1-->3/4Gal (B/E), Galbeta1-->3/4GlcNAc (I/II), GalNAcalpha1-->3Gal/GalNAc (A/F), and GalNAcbeta1-->3/4Gal (P/S) were inactive. The strong specificity of ALA for Tn/Talpha cluster suggests the importance of glycotope polyvalency during carbohydrate-receptor interactions and emphasizes its value as an anti-Tn/T lectin for analysis of glycoconjugate mixtures or transformed carbohydrates.

摘要

波罗蜜凝集素(ALA)是从波罗蜜果实种子中分离得到的一种半乳糖结合凝集素,是T细胞和B细胞的强效促有丝分裂原。以往关于ALA亲和力的研究所得知识仅限于Galβ1→3GalNAc(T)及其衍生物的分子和亚分子水平。在本研究中,通过酶联凝集素吸附测定(ELLSA)和抑制试验,根据哺乳动物的Gal/GalNAc结构单元及相应的糖缀合物,在大分子水平上对ALA的碳水化合物特异性进行了表征。结果表明,ALA特异性结合肿瘤相关碳水化合物抗原GalNAcα1→Ser/Thr(Tn)和Galβ1→3GalNAcα1→Ser/Thr(Tα)。它几乎不与糖蛋白上的其他常见糖表位发生交叉反应,包括ABH血型抗原、Galβ1→3/4GlcNAc(I/II)决定簇、被唾液酸覆盖的T/Tn以及N-连接血浆糖蛋白。所测试的含Tn/Tα糖蛋白的密集簇状结构对ALA的亲和力比相应的GalNAc和Gal单体高2.4×10⁵ - 6.7×10⁵倍。根据我们的结果,ALA对聚糖的总体亲和力可分别排序为:多价Tn/Tα糖表位 >> 单体Tα和简单簇状Tn >> 单体Tn > GalNAc > Gal;而其他糖表位:Galα1→3/4Gal(B/E)、Galβ1→3/4GlcNAc(I/II)、GalNAcα1→3Gal/GalNAc(A/F)和GalNAcβ1→3/4Gal(P/S)无活性。ALA对Tn/Tα簇的强特异性表明糖表位多价性在碳水化合物 - 受体相互作用中的重要性,并强调了其作为抗Tn/T凝集素在分析糖缀合物混合物或转化碳水化合物方面的价值。

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