IMMOBILIZATION OF GALACTOSYLTRANSFERASE AND CONTINUOUS GALACTOSYLATION OF GLYCOPROTEINS IN A REACTOR

被引:13
作者
SCHNEIDER, R
HAMMEL, M
BERGER, EG
GHISALBA, O
NUEESCH, J
GYGAX, D
机构
[1] CIBA GEIGY AG,DIV PHARMA,KLYBECKSTR 141,CH-4057 BASEL,SWITZERLAND
[2] CIBA GEIGY AG,CENT RES LABS,CH-4057 BASEL,SWITZERLAND
[3] UNIV ZURICH,INST PHYSIOL,CH-8057 ZURICH,SWITZERLAND
关键词
enzyme immobilization; enzyme reactor; galactosyltransferase; glycosylation; glycosyltransferases; recombinant glycoproteins;
D O I
10.1007/BF01189079
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
We immobilized human milk galactosyltransferase covalently to CNBr- and tresylchloride-activated Sepharose. The enzyme was also immobilized non-covalently to Concanavalin A-Sepharose and to monoclonal anti-galactosyltransferase antibodies which were bound via their Fc-fragment to Protein G-Sepharose. With the covalent methods, up to 72% of the enzyme could be bound to the carrier, but more than 90% of the specific activity was lost. In contrast, non-covalent immobilization yielded only about 50% immobilization efficiency, but 21% and 25% of specific activity, respectively, could be recovered. The stability of immobilized galactosyltransferase as compared to native enzyme was considerably increased: at room temperature, 55% of initial immobilized activity was lost after 65 hours compared to 95% of loss of soluble enzyme activity. Immobilized galactosyltransferase was then used for continuous galactosylation of the glycoproteins ovalbumin, endo H-treated yeast invertase and bovine serum albumin-N-acetylglucosamine in a "slurry" reactor. 55%, 35% and 25%, respectively, of all acceptor sites on these glycoproteins could be galactosylated by this method. © 1990 Glycoconjugate Journal.
引用
收藏
页码:589 / 600
页数:12
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