Biosynthesis of Vicia graminea lectin- and Vicia unijuga lectin-binding glycoproteins in human tumor and nontumor cells and an estimation of its epitope structure.

Cancer detection and prevention Pub Date : 2000-01-01
K Ohyama, N Uchide, R Suzuki, N Iwamoto, T Bessho, H Watanabe, S Hirakawa, T Yamakawa
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Abstract

We investigated biosynthesis of Vicia graminea lectin (VGA)- and Vicia unijuga lectin (VUA)-binding (Vgu) glycoproteins, which are human malignant tumor-associated antigens, in cultured human tumor and non-tumor cells by pulse-labeling experiments with [35S]-methionine, followed by immunoprecipitation using immobilized VUA, SDS-PAGE and autofluorography. It was shown that Vgu glycoproteins synthesized by tumor cells were 15-30 times greater than those of non-tumor cells. It was also shown that about 40-70% of Vgu glycoproteins synthesized by non-tumor cells were secreted from the cells while more than 80% of the antigen synthesized by tumor cells was not secreted, and that Vgu glycoproteins consisted of multiple molecular species with the same epitope. To estimate the epitope structure of Vgu glycoproteins, in preliminary experiments we prepared sialoglycoproteins and/or sialoglycopeptides from purified human glycophorin A. Human glycophorins A(M) and A(N) (GPs-A(M) and A(N)) were treated with Clostridium perfringens neuraminidase to remove all sialic acid residues linked to carbohydrate chains, with Newcastle disease virus (NDV) to remove alpha2-3 linked sialic acid residues, and by Edman's degradation to eliminate N-terminal amino acid of GP-As. Partial or complete desialylation reactions resulted in disappearance of the reactivity of GP-A(M) and GP-A(N) with corresponding antisera and in appearance of reactivities with VUA and VGA. Elimination of N-terminal amino acid of GP-As also resulted in appearance of reactivities with VUA. These results show that sialoglycoproteins with similar serological properties of Vgu glycoprotein could be prepared from GP-As, and suggest that the epitope structure of Vgu glycoprotein may be related to the MN blood type-epitope structure and its sialic acid residues at N-terminal moiety of GP-As.

人肿瘤和非肿瘤细胞中小麦凝集素和野豌豆凝集素结合糖蛋白的生物合成及其表位结构的估计。
我们通过[35S]-蛋氨酸脉冲标记实验,研究了在培养的人类肿瘤细胞和非肿瘤细胞中,葡萄凝集素(VGA)-和葡萄凝集素(VUA)-结合(Vgu)糖蛋白的生物合成,这两种糖蛋白是人类恶性肿瘤相关抗原,随后采用固定化VUA、SDS-PAGE和自荧光技术进行免疫沉淀。结果表明,肿瘤细胞合成的Vgu糖蛋白是非肿瘤细胞的15 ~ 30倍。非肿瘤细胞合成的Vgu糖蛋白约有40-70%从细胞分泌,而肿瘤细胞合成的抗原有80%以上不分泌,并且Vgu糖蛋白由具有相同表位的多个分子种组成。为了估计Vgu糖蛋白的表位结构,在初步实验中,我们从纯化的人糖蛋白A中制备了唾液糖蛋白和/或唾液糖肽。人糖蛋白A(M)和A(N) (GPs-A(M)和A(N))用产气荚膜梭菌神经氨酸酶处理,去除与碳水化合物链相连的所有唾液酸残基,用新城疫病毒(NDV)去除与α - 2-3相连的唾液酸残基。通过Edman降解去除GP-As的n端氨基酸。部分或完全脱烷基反应导致GP-A(M)和GP-A(N)与相应抗血清的反应性消失,与VUA和VGA出现反应性。GP-As的n端氨基酸的消除也导致了与VUA的反应性。这些结果表明,从GP-As中可以制备出与Vgu糖蛋白具有相似血清学特性的唾液糖蛋白,并提示Vgu糖蛋白的表位结构可能与MN血型表位结构及其在GP-As n端部分的唾液酸残基有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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