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R J Schaeper

Publications and source records attributed to R J Schaeper.

5 recordsLinked to original sources

A kinetic study of the hydrolysis of the N-tosylalanine ester of 3-hydroxy-5-phenylpyrrole and related compounds by human leukocyte elastase.

The tosylalanine ester of 3-hydroxy-5-phenylpyrrole (HOPPy) is localized on reagent strips (Ames LEUKOSTIX) and used diagnostically to test urine for the presence of human leukocyte elastase (HLE) as an indication of urinary tract infection. We have determined the kinetic constants for the HLE-catalyzed hydrolysis of this substrate and the related substrates Tos-Ala-ONp, Cbz-Ala-OPPy, and Cbz-Ala-ONp, in solution at three different pH values. In the reagent strip matrix, diazo coupling of 4-diazo-3-hydroxy-1-napthylsulfonate (HONapN+2) with the enzymatic hydrolysis product HOPPy generates a purple color. We have also studied the kinetics of the reaction of HOPPy with HONapN+2 and other related diazonium salts such as 4-diazo-3-hydroxy-7-nitro-1-napthylsulfonate, 4-diazo-3-hydroxy-1,7-napthyldisulfonate, and 2-methoxy-4-(N-morpholinyl)benzene diazonium chloride. Tos-Ala-OPPy is the most reactive substrate among the compounds examined and kinetic studies indicate that deacylation is rate-limiting for HLE hydrolysis. The presence of decanol accelerates the enzymatic hydrolysis of Tos-Ala-OPPy with a kcat/KM = 10(7) M-1 s-1, which is close to the diffusion-controlled limit. For the diazo coupling reaction, the rate is affected by the substituents on the naphthalene ring and by the buffer in which the reaction occurs. This research has elucidated some important mechanistic features for the reaction of these compounds and may lead to improved methods for the detection of leukocyte elastase.

Alanine↗

In vitro biosynthesis of GbOse4Cer (globoside) and GM2 ganglioside by the (1-->3) and (1-->4)-N-acetyl beta-D-galactosaminyltransferases from embryonic chicken brain. Solubilization, purification, and characterization of the transferases.

(1-->4)-N-Acetyl-beta-D-galactosaminyltransferase (GalNAcT-1) and (1-->3)-N-acetyl-beta-D-galactosaminyltransferase (GalNAcT-2), which are involved in the in vitro biosynthesis of GM2 and GbOse4Cer glycosphingolipids, respectively, have been solubilized and separated by differential detergent extraction from a membrane preparation of 19-day-old embryonic chicken brain. The separated GalNAcT-1 activity had a pH optima of 7.8-8.0, and the separated GalNAcT-2 activity a single pH optimum of 7.2. Furthermore, the partially purified GalNAcT-2 preparation catalyzed the transfer of N-acetylgalactosamine from UDP-D-[3H]GalNAc to only GbOse3Cer and nLcOse5Cer. Both GalNAcT-1 and GalNAcT-2 activities were purified to approximately 316- and 428-fold, respectively, by use of UDP-hexanolamine-Sepharose 4B affinity-column chromatography. However, the partially purified GalNAcT-1 preparation appeared to be active only with GM3, lactosylceramide, and lactotriaosylceramide. The proposed linkage of the N-acetylgalactosamine unit incorporated into GM3 is beta-D-GalpNAc-(1-->4)-GM3 from the isolation of [3H]threitol after hydrolysis of the desialylated, lead tetraacetate-treated, enzymic product, beta-D-GalpNAc-(1-->4)-beta-D-[6-3H]Galp-(1-->4)-beta-D-Glcp-(1-->1)-Cer . In addition, beta-D-GalpNAc-(1-->3)-GbOse3Cer was produced, as shown by the identification of 2,4,6-tri-O-methyl-galactose after permethylation and hydrolysis of the GalNAcT-2 enzymic product, GalpNAc-[6-3H]Galp--->Gal-->Glc-->Cer.

Animals↗

Solubilized glycosyltransferases and biosynthesis in vitro of glycolipids.

The assembly of most of the ceramide-linked glycolipids (GSLs) in eukaryotic cells occurs in Golgi bodies. At least 18 different glycolipid:glycosyltransferases (GSL:GLTs) have been characterized, 10 of which have been solubilized. These GLTs can be classified into 2 distinct groups: 1) GLTs dedicated to either Dol-P-P-sugar(s) or ceramide-linked sugar(s); and 2) GLTs with dual loyalties (i.e., they compete with glycolipid- and glycoprotein-bound oligosaccharides). Studies with solubilized and purified GalNAcT-1 and GalNAcT-2 from embryonic chicken brains prove that GalNAcT-1 (UDP-GalNAc:GM3 beta 1-4GalNAcT) is specific for GSL, whereas GalNAcT-2 (UDP-GalNAc:Gb3 beta 1-3GalNAcT) can transfer to an oligosaccharide containing the alpha-linked terminal galactose. Similarly, GalT-3 (UDP-Gal:GM2 beta 1-3GalT) is more specific for ganglio-oligosaccharide and GalT-4 (UDP-Gal:Lc3 beta 1-4GalT) can transfer galactose to N-acetylglucosamine linked to p-nitrophenol, glycolipid or glycoprotein. Both GalT-3 and GalT-4 have been separated and purified from embryonic chicken brains. Studies with solubilized SAT-4 and SAT-3, from bovine spleen and embryonic chicken brains, respectively, suggest the existence of 2 different gene-expressed alpha 2-3SATs. The newly discovered FucT-3 (GDP-Fuc:NeuGc-iLc6-alpha 1-3FucT) from human colon carcinoma (Colo-205) has also been solubilized and separated from other GSL:GLTs. Using a new activity gel-Western blot combined technique, the molecular mass of this FucT-3 was determined to be 105 kDa.

Animals↗

Glycolipids.

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Animals↗