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通过一种新型检测方法分析胃癌细胞系KATO III中Leb和Y糖脂的生物合成途径。

Biosynthetic pathways for the Leb and Y glycolipids in the gastric carcinoma cell line KATO III as analyzed by a novel assay.

作者信息

Blaszczyk-Thurin M, Sarnesto A, Thurin J, Hindsgaul O, Koprowski H

机构信息

Wistar Institute, Philadelphia, Pennsylvania 19104-4268.

出版信息

Biochem Biophys Res Commun. 1988 Feb 29;151(1):100-8. doi: 10.1016/0006-291x(88)90564-5.

Abstract

The biosynthetic pathways for the difucosylated type 1 and 2 glycolipids, Leb and Y, respectively, were investigated in the gastric carcinoma cell line KATO III, using a novel chromatogram binding assay. The type of fucosylation obtained was deduced from the binding pattern of monoclonal antibodies specific for the biosynthesized glycolipid products using microsomal fractions as the source of enzyme, pure glycolipids and non-radioactive GDP-fucose as acceptor and donor substrates, respectively. The Leb glycolipid (Fuc alpha 1----2Gal beta 1----3GlcNAc(4----1 alpha Fuc) beta 1----3LacCer) was synthesized mainly via the blood group H, type 1, precursor (Fuc alpha 1----2Gal beta 1----3GlcNAc beta 1----3LacCer). However, the Lea glycolipid (Gal beta 1----3GlcNAc(4----1 alpha Fuc)beta 1----3LacCer) also served as a precursor for the alpha 1----2 fucosyltransferase, thus allowing conversion of Lea to Leb. This biosynthetic route represents either an "aberrant" specificity of the Fuc alpha 1----2 transferase associated with these gastric carcinoma cells and/or a new member of the alpha 1----2 fucosyltransferase family. The Y glycolipid (Fuc alpha 1----2Gal beta 1----4GlcNAc(3----1 alpha Fuc)beta 1----3LacCer) was synthesized exclusively via the classical pathway using the blood group H type 2 glycolipid (Fuc alpha 1----2Gal beta 1----4GlcNAc beta 1----3LacCer) as precursor. The X glycolipid (Gal beta 1----4GlcNAc(3----1 alpha Fuc)beta 1----3LacCer) did not serve as an acceptor substrate for the alpha 1----2 fucosyltransferase(s) present. The use of non-radioactive sugar-nucleotides as donor substrate, defined glycolipid precursors as acceptor substrates and of specific monoclonal anti-glycolipid antibodies for detection provides a rapid and highly specific assay for analyzing biosynthetic pathways of glycosyltransferases.

摘要

利用一种新型的色谱结合分析法,在胃癌细胞系KATO III中分别研究了二岩藻糖基化1型和2型糖脂Leb和Y的生物合成途径。以微粒体部分作为酶源、纯糖脂和非放射性GDP-岩藻糖分别作为受体和供体底物,通过对生物合成的糖脂产物特异性单克隆抗体的结合模式来推断岩藻糖基化的类型。Leb糖脂(Fucα1→2Galβ1→3GlcNAc(4→1αFuc)β1→3LacCer)主要通过血型H 1型前体(Fucα1→2Galβ1→3GlcNAcβ1→3LacCer)合成。然而,Lea糖脂(Galβ1→3GlcNAc(4→1αFuc)β1→3LacCer)也可作为α1→2岩藻糖基转移酶的前体,从而使Lea转化为Leb。这种生物合成途径代表了与这些胃癌细胞相关的Fucα1→2转移酶的“异常”特异性和/或α1→2岩藻糖基转移酶家族的一个新成员。Y糖脂(Fucα1→2Galβ1→4GlcNAc(3→1αFuc)β1→3LacCer)仅通过经典途径合成,以血型H 2型糖脂(Fucα1→2Galβ1→4GlcNAcβ1→3LacCer)作为前体。X糖脂(Galβ1→4GlcNAc(3→1αFuc)β1→3LacCer)不是所存在的α1→2岩藻糖基转移酶的受体底物。使用非放射性糖核苷酸作为供体底物、特定的糖脂前体作为受体底物以及使用特异性单克隆抗糖脂抗体进行检测,为分析糖基转移酶的生物合成途径提供了一种快速且高度特异性的分析方法。

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