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确定表现出对D-半乳糖醛酸有特殊亲和力的海兔性腺凝集素的碳水化合物特异性。

Defining the carbohydrate specificities of aplysia gonad lectin exhibiting a peculiar D-galacturonic acid affinity.

作者信息

Wu A M, Song S C, Chen Y Y, Gilboa-Garber N

机构信息

Glyco-Immunochemistry Research Laboratory, Institute of Molecular and Cellular Biology, School of Medicine, Chang-Gung University, Kwei-san 33332, Taiwan.

出版信息

J Biol Chem. 2000 May 12;275(19):14017-24. doi: 10.1074/jbc.275.19.14017.

Abstract

Aplysia gonad lectin (AGL), which has been shown to stimulate mitogenesis in human peripheral lymphocytes, to suppress tumor cells, and to induce neurite outgrowth and improve cell viability in cultured Aplysia neurons, exhibits a peculiar galacturonic acid/galactose specificity. The carbohydrate binding site of this lectin was characterized by enzyme-linked lectino-sorbent assay and by inhibition of AGL-glycan interactions. Examination of the lectin binding with 34 glycans revealed that it reacted strongly with the following glycoforms: most human blood group precursor (equivalent) glycoproteins (gps), two Galalpha1-->4Gal-containing gps, and two d-galacturonic acid (GalUA)-containing polysaccharides (pectins from apple and citrus fruits), but poorly with most human blood group A and H active and sialylated gps. Among the GalUA and mammalian saccharides tested for inhibition of AGL-glycan binding, GalUA mono- to trisaccharides were the most potent ones. They were 8.5 x 10(4) times more active than Gal and about 1.5 x 10(3) more active than the human blood group P(k) active disaccharide (E, Galalpha1-->4Gal). This disaccharide was 6, 28, and 120 times more efficient than Galbeta1-->3GlcNAc(I), Galbeta1-->3GalNAc(T), and Galbeta1--> 4GlcNAc (II), respectively, and 35 and 80 times more active than melibiose (Galalpha1-->6Glc) and human blood group B active disaccharide (Galalpha1-->3Gal), respectively, showing that the decreasing order of the lectin affinity toward alpha-anomers of Gal is alpha1-->4 > alpha1-->6 > alpha1-->3. From the data provided, the carbohydrate specificity of AGL can be defined as GalUAalpha1-->4 trisaccharides to mono GalUA > branched or cluster forms of E, I, and II monomeric E, I, and II, whereas GalNAc is inactive.

摘要

海兔性腺凝集素(AGL)已被证明可刺激人外周血淋巴细胞的有丝分裂、抑制肿瘤细胞,并在培养的海兔神经元中诱导神经突生长并提高细胞活力,它表现出独特的半乳糖醛酸/半乳糖特异性。通过酶联凝集素吸附测定法和抑制AGL-聚糖相互作用对该凝集素的碳水化合物结合位点进行了表征。对该凝集素与34种聚糖的结合情况进行检测发现,它与以下糖型强烈反应:大多数人血型前体(等效)糖蛋白(gps)、两种含Galα1→4Gal的gps以及两种含d-半乳糖醛酸(GalUA)的多糖(苹果和柑橘类水果中的果胶),但与大多数人血型A和H活性及唾液酸化的gps反应较弱。在测试用于抑制AGL-聚糖结合的GalUA和哺乳动物糖类中,GalUA单糖至三糖是最有效的。它们的活性比Gal高8.5×10⁴倍,比人血型P(k)活性二糖(E,Galα1→4Gal)高约1.5×10³倍。这种二糖分别比Galβ1→3GlcNAc(I)、Galβ1→3GalNAc(T)和Galβ1→4GlcNAc(II)高效6倍、28倍和120倍,比蜜二糖(Galα1→6Glc)和人血型B活性二糖(Galα1→3Gal)分别高35倍和80倍,这表明凝集素对Galα-端基异构体的亲和力递减顺序为α1→4>α1→6>α1→3。根据所提供的数据,AGL的碳水化合物特异性可定义为GalUAα1→4三糖至单GalUA>E、I和II单体的分支或簇状形式,而GalNAc无活性。

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