首页> 外文期刊>Biochemistry >CHARACTERIZATION OF TWO GLYCOLIPID-ALPHA-2-3SIALYLTRANSFERASES, SAT-3 (CMP-NEUAC-NLCOSE4CER ALPHA-2-3SIALYLTRANSFERASE) AND SAT-4 (CMP-NEUAC-GGOSE4CER ALPHA-2-3 SIALYLTRANSFERASE), FROM HUMAN COLON CARCINOMA (COLO 205) CELL LINE
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CHARACTERIZATION OF TWO GLYCOLIPID-ALPHA-2-3SIALYLTRANSFERASES, SAT-3 (CMP-NEUAC-NLCOSE4CER ALPHA-2-3SIALYLTRANSFERASE) AND SAT-4 (CMP-NEUAC-GGOSE4CER ALPHA-2-3 SIALYLTRANSFERASE), FROM HUMAN COLON CARCINOMA (COLO 205) CELL LINE

机译:人类结肠癌的两种糖脂-α-2-3唾液酸转移酶,SAT-3(CMP-NEUAC-NLCOSE4CERα-2-3唾液酸转移酶)和SAT-4(CMP-NEUAC-GGOSE4CERα-2-3唾液酸转移酶)的表征205)细胞线

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摘要

Sialyltransferase activities, SAT-3 (CMP-NeuAc:nLcOse4Cer alpha 2-3sialyltransferase) and SAT-4 (CMP-NeuAc:GgOse4Cer alpha 2-3sialyltransferase), in Cole 205 cells catalyze the transfer of sialic acid to the terminal galactose of GlcNAc- and GalNAc-containing glycolipid substrates, respectively. Competition kinetic studies with nLcOse4Cer and GM1 as substrates in a sialyltransferase assay show that these two activities are catalyzed by two different catalytic entities. The two enzymes were co-solubilized with taurocholate and resolved by DEAE-Cibacron Blue-Sepharose column chromatography into two elution peaks, The column eluent with SAT-3 activity failed to transfer sialic acid to asialo alpha(1)-acid glycoprotein, indicating that this enzyme is different from the sialyltransferase (ST3N) that synthesizes NeuAc alpha 2-3Gal linkage in asparagine-linked oligosaccharides of glycoprotein. However, SAT-3 activity can be immunoprecipitated with a polyclonal antibody produced against a protein expressed in Escherichia coli as GST-fusion protein from an ECB cDNA homolog of an alpha 2-3sialyltransferase (SAT-3 or STZ) that has been cloned from human melanoma cell and human placenta. Thus a concentration-dependent decrease in the residual SAT-3 activity relative to SAT-4 activity was observed in the supernatant after precipitation of the immune complex. Expression of SAT-3 (STZ) cDNA was also detected in Cole 205 cell by RT-PCR, followed by sequence analysis of the RT-PCR product. Characterization of the catalytic reaction products of SAT-3 and SAT-4 with thin-layer chromatography, sialidase treatment, and binding to specific antibodies indicates that both SAT-3 and SAT-4 catalyze the formation of alpha 2-3 linkage between sialic acid and terminal galactose of glycolipid substrates.
机译:Cole 205细胞中的唾液酸转移酶活性SAT-3(CMP-NeuAc:nLcOse4Cer alpha 2-3sialyltransferase)和SAT-4(CMP-NeuAc:GgOse4Cer alpha 2-3sialyltransferase)催化唾液酸向GlcNAc-末端半乳糖的转移和含GalNAc的糖脂底物。在唾液酸转移酶测定中,以nLcOse4Cer和GM1为底物的竞争动力学研究表明,这两种活性是由两种不同的催化实体催化的。两种酶与牛磺胆酸盐共溶解,并通过DEAE-西巴伦蓝-琼脂糖凝胶柱色谱分离为两个洗脱峰,具有SAT-3活性的柱洗脱液无法将唾液酸转移至脱唾液酸α-(1)-酸糖蛋白,表明该酶不同于在糖蛋白的天冬酰胺连接的寡糖中合成NeuAc alpha 2-3Gal连接的唾液酸转移酶(ST3N)。但是,SAT-3活性可以用抗大肠杆菌中表达的蛋白作为GST融合蛋白产生的多克隆抗体免疫沉淀,该蛋白来自已从人克隆的α2-3唾液酸转移酶(SAT-3或STZ)的ECB cDNA同源物。黑色素瘤细胞和人类胎盘。因此,在免疫复合物沉淀后,在上清液中观察到相对于SAT-4活性的残余SAT-3活性的浓度依赖性降低。还通过RT-PCR在Cole 205细胞中检测到SAT-3(STZ)cDNA的表达,然后对RT-PCR产物进行序列分析。用薄层色谱,唾液酸酶处理以及与特异性抗体的结合表征SAT-3和SAT-4的催化反应产物表明SAT-3和SAT-4都催化唾液酸之间的α2-3连接的形成和糖脂底物的末端半乳糖。

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