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

被引:10
作者
Basu, SS [1 ]
Basu, M [1 ]
Li, ZX [1 ]
Basu, S [1 ]
机构
[1] UNIV NOTRE DAME,DEPT CHEM & BIOCHEM,BIOCHEM BIOPHYS & MOLEC BIOL PROGRAM,NOTRE DAME,IN 46556
关键词
D O I
10.1021/bi960239l
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
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.
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页码:5166 / 5174
页数:9
相关论文
共 40 条
[1]  
BASU M, 1982, J BIOL CHEM, V257, P2765
[2]  
BASU M, 1987, METHOD ENZYMOL, V138, P575
[3]   SOLUBILIZED GLYCOSYLTRANSFERASES AND BIOSYNTHESIS INVITRO OF GLYCOLIPIDS [J].
BASU, S ;
BASU, M ;
DAS, KK ;
DAUSSIN, F ;
SCHAEPER, RJ ;
BANERJEE, P ;
KHAN, FA ;
SUZUKI, I .
BIOCHIMIE, 1988, 70 (11) :1551-1563
[4]  
BASU S, 1990, INDIAN J BIOCHEM BIO, V27, P386
[5]  
Basu S., 1995, BIOL SIALIC ACIDS, P69, DOI DOI 10.1007/978-1-4757-9504-2_3
[6]  
Basu S., 1966, THESIS U MICHIGAN
[7]  
Basu S, 1982, GLYCOCONJUGATES, V3, P265
[8]  
BASU S C, 1991, Glycobiology, V1, P469, DOI 10.1093/glycob/1.5.469
[9]  
BASU SS, 1996, P 4 INT CELL SURF MA, P32
[10]  
BASU SS, 1995, GLYCOCONJUGATES J, V12, P437