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Biomedical subjects

S J Turco

Publications and source records attributed to S J Turco.

At least 109 records · Page 6Linked to original sources

Separation of dansyl hydrazine-derivatized oligosaccharides by liquid chromatography.

A sensitive method has been developed for the rapid separation of neutral oligosaccharides derivatized with dansyl hydrazine by liquid chromatography on silica gel modified with 1,4-diaminobutane. Malto-oligosaccharides from corn syrup in amounts ranging from 7 to 280 nmol and ovalbumin-derived oligosaccharides in amounts ranging from 0.25 to 250 nmol were easily detectable and gave linear responses over the respective ranges.

Chemical Phenomena↗

Expression of an unusual acidic glycoconjugate in Leishmania donovani.

An acidic glycoconjugate containing mannose, galactose and phosphate in approximately equimolar amounts was extracted from Leishmania donovani promastigotes and partially characterized. The glycoconjugate could be metabolically labeled with either [3H]mannose or [3H]galactose and was extractable from a delipidated residue fraction with water/ethanol/diethyl ether/pyridine/concentrated NH4OH (15:15:5:1:0.017) at 25 degrees C. The radioactively labeled glycoconjugate was found to possess the following characteristics: 1) comprised 45-60% of the total [3H]mannose label incorporated into macromolecules; 2) was soluble in alkaline solvents and 0.5% Triton X-100; 3) migrated as a broad band upon electrophoresis on sodium dodecyl sulfate-polyacrylamide gels with an approximate molecular weight of 15,000-30,000; 4) bound to DE52 cellulose and was eluted with a salt gradient of 0-0.1 M NaCl; 5) was insensitive to Pronase, hyaluronidase, chondroitinase, endo-beta-N-acetylglucosaminidase H, and endo-beta-galactosidase; and 6) possessed hydrophobic properties. An unusual feature of the glycoconjugate was its lability to mild acid hydrolysis (0.02 N HCl, 15 min, 60 degrees C). As determined by alkaline phosphatase and glycosidase digestion and paper chromatographic analysis, the major fragment generated by mild acid hydrolysis was found to be a phosphorylated galactosyl-beta-mannose disaccharide. All of these characteristics suggest that the glycoconjugate may be a polysaccharide and, possibly, may be important in parasite-host cell interactions.

Animals↗

Altered G-protein glycosylation in vesicular stomatitis virus-infected glucose-deprived baby hamster kidney cells.

The glycosylation of the G-protein was analyzed in vesicular stomatitis virus-infected baby hamster kidney cells incubated in the absence of glucose. The results indicate that the G-protein in glucose-starved cells is initially glycosylated from a lipid donor with a glucosylated oligosaccharide which is resistant to endo-beta-N-acetylglucosaminidase H and partially susceptible to alpha-mannosidase. With longer times, the protein-bound carbohydrate chain becomes much more sensitive to alpha-mannosidase while remaining endo-beta-N-acetylglucosaminidase H-resistant. Purified virions from glucose-starved baby hamster kidney cells, labeled with [35S]methionine and isolated on a sucrose gradient, contain altered forms of the G-protein, whereas the other viral proteins remain unchanged. These altered forms could also be radiolabeled with [3H]mannose, and upon analysis of labeled glycopeptides by chromatography on concanavalin A-Sepharose and Bio-Gel P-6, it was apparent that modification of the oligosaccharide portion of the G-protein occurs in baby hamster kidney cells, leading to aberrant mature carbohydrate chains.

Animals↗

Synthesis of the branched form of erythroglycan by Friend GM979 erythroleukemic cells.

Mouse GM979 erythroleukemic cells were found to synthesize the branched form of erythroglycan, a large polylactosamine structure known to be attached to band 3 and possibly to other proteins on human erythrocytes. Total protein-derived oligosaccharides from GM979 cells, labeled metabolically with [3H]glucosamine, [3H]mannose, or [3H]galactose, were prepared by hydrazinolysis after extracting the lipids. The 3H-labeled oligosaccharides were fractionated on Sephadex G-50 revealing 10-25% of each labeled product as a high molecular weight fraction (Mr = 10,000). Digestion of this [3H]glucosamine fraction with endo-beta-galactosidase from Escherichia freundii, specific for the repeating structure of Gal beta (1 leads to 4)GlcNAc beta (1 leads to 3), resulted in the following four products upon Bio-Gel P-2 Gel filtration: 1) a disaccharide with the structure GlcNAc beta (1 leads to 3)Gal, 2) a trisaccharide with the structure Gal beta (1 leads to 4)GlcNAc beta (1 leads to 3) beta Gal, 3) a tetrasaccharide with the sequence Fuc alpha (1 leads to 2)Gal beta (1 leads to 4)GlcNAc beta (1 leads to 3)Gal, and 4) a large complex fragment which contained mannose, glucosamine, galactose, and fucose (presumably the protein linkage region). Methylation linkage analysis of the large complex fraction shows mainly the presence of 4-substituted and terminal N-acetylglucosamine; 3,6-substituted, 6-substituted, 2-substituted, and 2,3-substituted galactose. The GM979 cell erythroglycan is only 30% susceptible to endo-beta-galactosidase degradation probably because of the branched galactose residues, whereas the linear form of erythroglycan from human K562 cells is 60% susceptible. The branched residues in GM979 cell saccharides indicate that this mouse cell line bears an arborized erythroglycan-like glycopeptide similar to those found on human adult erythrocytes, and thus may be a source for the enzyme which transfers an N-acetylglucosamine residue to a 3-linked galactose to form a 3,6-disubstituted galactose.

Animals↗

Cell-free biosynthesis of erythroglycan in a microsomal fraction from K-562 cells.

Particulate membrane preparations from K-562 [human CML (chronic-myelogenous-leukaemia)-derived] cells catalyse the transfer of [3H]galactose from UDP-[3H]-galactose and [3H]N-acetylglucosamine from UDP-[3H]N-acetylglucosamine into an endogenous product that on digestion with Pronase yields long-chain glycopeptides (mol.wt. 7000--10 000) called 'erythroglycan'. Incorporation of either labelled sugar increased up to 60 min of incubation time. The labelled erythroglycan was isolated by chromatography on Sephadex G-50 and characterized by digestion with endo-beta-galactosidase from Escherichia freundii, followed by analysis on Bio-Gel P-2 and paper chromatography. This digestion gave the following four products: (1) a disaccharide with the sequence beta GlcNAc-beta Gal; (2) a trisaccharide with the sequence betaGal-betaGlcNAc-beta Gal; (3) a larger oligosaccharide containing galactose and N-acetylglucosamine; and (4) a putative protein-linkage region.

Acetylglucosamine↗

Erythroglycan biosynthesis in K-562 cells. Inhibition of synthesis by tunicamycin and lack of attachment to the G-protein of vesicular-stomatitis virus.

K-562 cells, which express foetal erythroglycan, are shown to synthesize the lipid-linked oligosaccharide intermediates commonly found in tissues and cultured fibroblasts. The addition of tunicamycin, which blocks the formation of these intermediates and thus of asparagine-linked oligosaccharides, inhibits the synthesis of erythroglycan (Mr 7000-11 000). Vesicular-stomatitis-virus infection of K-562 cells results in the glycosylation of the G-protein with the transferrin-type oligosaccharide (Mr 3000), but not with the larger erythroglycan. These results suggest that, in K-562 cells, the early stages of erythroglycan biosynthesis are the same as those of the transferrin-type oligosaccharides. However, maturation of the oligosaccharide is influenced by protein structure such that erythroglycan is only expressed on specific glycoproteins.

Anion Exchange Protein 1, Erythrocyte↗

The hexose transport system in the human K-562 chronic myelogenous leukemia-derived cell.

Kinetics of glucose transport in K-562 cells was studied using 3-O-methylglucose, a nonmetabolizable analog of glucose. A Km of 3.7 mM and Vmax of 32.0 nmoles/minute/10(6) cells was found for the process. D-Glucose, phloretin, and phlorizin competitively inhibit the transport of 3-O-methylglucose with Ki values of 4.1 mM, 4.1 muM and 225 muM, respectively, whereas L-glucose did not inhibit transport at all. The results indicate that K-562 cells, which are known to have erythropoietic characteristics, possess a glucose carrier system similar to the one in adult human erythrocytes. However, the Vmax data suggest that more copies of the carrier are present in the malignant cell, presumably to support the high rate of anaerobic glycolysis.

Biological Transport↗

Presence of erythroglycan on human K-562 chronic myelogenous leukemia-derived cells.

Total glycopeptides from human K-562 cells, labeled metabolically with [3H]glucosamine or [3H]mannose, were prepared by extracting the cells with organic solvents to remove lipids and by digesting the residue with pronase. 3H-labeled glycopeptides were fractionated on Sephadex G-50 revealing a high molecular weight fraction (Mr = 7,000 to 11,000), comprising approximately 10% of the [3H]glucosamine and 25% of the [3H]mannose label. Digestion of this glycopeptide fraction with endo-beta-galactosidase from Escherichia freundii, specific for a repeating structure of Gal(beta 1 leads to 4)GlcNAc(beta 1 leads to 3), results in the following four products as resolved by Bio-Gel P-2 gel filtration: 1) a disaccharide with the structure beta-2-deoxy-2-acetamidoglucosyl leads to beta-galactose; 2) a trisaccharide with the structure beta-galactosyl leads to beta-2-deoxy-2-acetamidoglucosyl leads to beta-galactose; 3) a tetrasaccharide with the sequence alpha-N-acetylneuraminyl leads to beta-galactosyl leads to beta-2-deoxy-2-acetamidoglucosyl leads to beta-galactose; and 4) a larger, complex fragment which contains mannose and beta-2-deoxy-2-acetamidoglucose and which is probably the protein linkage region. In addition, visualization of radiolabeled glycoproteins by fluorography on polyacrylamide gels revealed a 105,000-dalton "Band 3"-like glycoprotein and other bands that were sensitive to endo-beta-galactosidase. These results indicate that the K-562 cell line bears a glycopeptide, erythroglycan, which has been found on erythrocytes, and that this polymer is expressed mainly in the fetal form as a linear chain.

Anion Exchange Protein 1, Erythrocyte↗

Arrangement of glucose residues in the lipid-linked oligosaccharide precursor of asparaginyl oligosaccharides.

The lipid-linked oligosaccharide synthesized in vitro, in the presence of 1.0 microM UDP-[3H]Glc, GDP-[14C]Man, and UDP-GlcNAc has been isolated and the structure of the oligosaccharide has been analyzed. The oligosaccharide contains 2 N-acetylglucosamine, 9 mannose, and 3 glucose residues. The N-acetylglucosamine residues are located at the reducing terminus. The 3 glucose residues are arranged in a linear order at one of the nonreducing termini in the sequence Glc 1,2--Glc 1,3--Glc--(Man)9 (GlcNAc)2. The structural analysis was made possible largely by the availability of glucosidase preparations of fungal anad microsomal origin which remove glucose residues from the oligosaccharide without releasing mannose residues.

Asparagine↗

The initial stages of processing of protein-bound oligosaccharides in vitro.

Following the rapid enzymatic transfer of an oligosaccharide (GlcNAc2Man9Glc3) from a lipid carrier to endogenous protein acceptors in membrane preparations from NIL fibroblasts, the transferred oligosaccharide chain undergoes processing. Protein-bound oligosaccharides, released from the polypeptide backbone by treatment with endo-beta-N-acetylglucosaminidase H, were analyzed by gel filtration and by susceptibility to alpha-mannosidase digestion. The initial stages of this processing in vitro consist of sequential excision of 3 glucose residues prior to the removal of mannose residues. The array of oligosaccharides generated in vitro by membrane preparations from NIL cells appears to be identical with processed oligosaccharides derived in vivo in intact NIL cells.

Animals↗