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Summary of Research Contributions
(PhD project) - Active site of chymotrypsin. Identification of the methionine involved in the active center of chymotrypsin.
Research on the biosynthesis of glycoconjugates, primarily on the mechanisms of protein glycosylation.
Pathway of L-fucose catabolism in mammalian liver and enzymatic assay for L-fucose.
Synthesis of radioactive GDP-Fucose.
Intracellular localization of glycosyltransferases in a Golgi-rich fraction. First biochemical evidence supporting Leblond's histochemical data showing that the Golgi apparatus is a major site of glycosylation.
Serum contains glycosyltransferase activities involved in N-glycan and human blood group antigen synthesis. This work facilitated the study of blood group genetics at a time when the cloned glycosyltransferases were not yet available.
Qualitative differences in the N-acetyl-D-galactosaminyltransferases produced by human blood group A1 and A2 genes.
Branch specificity of ß4-Gal-transferase.
Discovery, characterization and synthesis of testis-specific sulfogalactoglycerolipid.
Glycoprotein glycosyltransferase levels during spermatogenesis.
Carbohydrate-binding specificities of various lectins.
Discovery and characterization of a rat liver Golgi α-D-mannosidase dependent on the prior action of UDP-N-acetylglucosamine: α-D-mannoside ß-2-N-acetylglucosaminyltransferase I. This activity was also described by the groups of Kornfeld and Touster and was subsequently named α-mannosidase II.
Summary of Research Contributions
(PhD project) - Active site of chymotrypsin. Identification of the methionine involved in the active center of chymotrypsin.
Research on the biosynthesis of glycoconjugates, primarily on the mechanisms of protein glycosylation.
Pathway of L-fucose catabolism in mammalian liver and enzymatic assay for L-fucose.
Synthesis of radioactive GDP-Fucose.
Intracellular localization of glycosyltransferases in a Golgi-rich fraction. First biochemical evidence supporting Leblond's histochemical data showing that the Golgi apparatus is a major site of glycosylation.
Serum contains glycosyltransferase activities involved in N-glycan and human blood group antigen synthesis. This work facilitated the study of blood group genetics at a time when the cloned glycosyltransferases were not yet available.
Qualitative differences in the N-acetyl-D-galactosaminyltransferases produced by human blood group A1 and A2 genes.
Branch specificity of ß4-Gal-transferase.
Discovery, characterization and synthesis of testis-specific sulfogalactoglycerolipid.
Glycoprotein glycosyltransferase levels during spermatogenesis.
Carbohydrate-binding specificities of various lectins.
Discovery and characterization of a rat liver Golgi α-D-mannosidase dependent on the prior action of UDP-N-acetylglucosamine: α-D-mannoside ß-2-N-acetylglucosaminyltransferase I. This activity was also described by the groups of Kornfeld and Touster and was subsequently named α-mannosidase II.
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Tobias Willer,Hane Lee,Mark Lommel,Takako Yoshidamoriguchi, D Beltran Valero De Bernabe,David P Venzke,S Cirak,Harry Schachter,Jiri Vajsar,Thomas Voit, F Muntoni,Sabine Strahl,
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