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Biomedical subjects

T Krusius

Publications and source records attributed to T Krusius.

At least 91 records · Page 5Linked to original sources

Analysis of glycoconjugate saccharides in organelles isolated from castor bean endosperm.

The presence of lipid- and protein-bound sugars in the major organelle fractions isolated from germinating castor bean (Ricinus communis L.) endosperm has been established. Microsomes, glyoxysomes and mitochondria were subfractionated into a membrane fraction and a fraction containing peripheral membrane and soluble matrix proteins. The membranes were further subfractionated into monosaccharide lipid, oligosaccharide lipid and lipid-free protein components. The constituent sugars present in the prepared fractions were released and identified by gas-liquid chromatography. While all derived protein fractions contained the N-acetylglucosamine and mannose typically found in the inner core region attached to asparagine residues in many glycoproteins, some differences were noted in the organellar distribution of peripheral sugars such as fucose, arabinose, and xylose.

Journal Article↗

Novel mannitol-containing oligosaccharides obtained by mild alkaline borohydride treatment of a chondroitin sulfate proteoglycan from brain.

Mannitol-containing oligosaccharides have been isolated from a rat brain proteoglycan after mild alkaline borohydride treatment under conditions which prevent "peeling." Their structural properties were studied by gas-liquid chromatography-mass spectrometry of disaccharides as their trimethylsilylated and permethylated derivatives, methylation, analysis, specific degradations, and CrO3 oxidation. The following components were identified: Gal(beta 1 leads to 4) [Fuc(alpha 1 leads to 3)]GlcNAc(beta 1 leads to 3)Manol,GlcNAc(beta 1 leads to 3)Manol, and Manol. Evidence was also obtained for the occurrence of a sialylated oligosaccharide and another (possibly sulfated) acidic oligosaccharide, both having the sequence GlcNAc(beta 1 leads to 3)Manol at their proximal ends. These mannitol-containing oligosaccharides constitute a novel group of alkali-labile oligosaccharides in mammalian glycoconjugates. The origin of the oligosaccharides and the possible occurrence of a carbohydrate-peptide linkage involving mannose are discussed.

Animals↗

Differences between the carbohydrate units of cell-surface glycoproteins of moust B- and T-lymphocytes.

Carbohydrate units of cell-surface glycoproteins of mouse B- and T-lymphocytes, labelled in their sialic acid residues by the periodate/NaB3H4 method and in their galactose residues by the galactose oxidase/NaB3H4 method after neuraminidase treatment, have been studied. Glycopeptides were prepared from the labelled cells by Pronase digestion and fractionated by concanavalin A affinity chromatography into two fractions (A and B). Alkali-labile oligosaccharides were isolated after mild NaOH/NaBH4 treatment by gel filtration. The alkali-labile oligosaccharides were further analysed by t.l.c. To study the relative proportion of neutral mannose-rich carbohydrate units (fraction C) in lymphocyte glycoproteins, glycopeptides were also prepared from unlabelled cells and subjected to concanavalin A affinity chromatography after N-[3H]acetylation of their peptide moiety. The major alkali-labile oligosaccharide component of both cell types was identified as galactosyl-(beta 1 leads to 3)-N-acetylgalactosaminitol. T-Lymphocytes were characterized by a high proportion of this oligosaccharide and a lower proportion of alkali-stable fraction A glycopeptides, whereas the opposite was observed for B-lymphocytes. The relative proportions of the concanavalin A-binding fractions B and C were similar in both cell types. The differences observed may correlate with the different surface properties of B- and T-lymphocytes.

Animals↗

Disialosyl paragloboside. A novel ganglioside isolated from human kidney.

A ceramide hexasaccharide was purified from the gangliosides of human kidney. Its structure was studied by methylation analysis, neuraminidase treatment, weak acid hydrolysis and chromium trioxide oxidation. The structure is suggested to be a disialosyl derivative of paragloboside: formula: (see text) Data indicating the possible existence of a corresponding trisialosyl derivative are also presented.

Carbohydrates↗

Uterine and lung uteroglobins in the rabbit. Two similar proteins with differential hormonal regulation.

Previous studies have shown that several rabbit tissues contain proteins which cross-react in the radioimmunoassay for uteroglobin, a progestin-regulated protein in rabbit uterus (Torkkeli et al. (1977) Mol. Cell. Endocrinol. 9, 101-118). In the present study, a uteroglobin-like protein was purified to an apparent homogeneity from an extra-uterine tissue, rabbit lung, by successive chromatographies on hydroxyapatite, Sephadex G-75, SP-Sephadex, DEAE-cellulose and CM-cellulose. The final preparation behaved homogeneously in various polyacrylamide gel electrophoretic systems and in isoelectric focusing. The uteroglobin-like protein isolated from the lung had very similar physicochemical and immunological properties to those of uteroglobin present in the rabbit uterine fluid. The two proteins had: (i) the same molecular weight, of approx. 13 000, with a two subunit structure (each approx. Mr 7000); (ii) identical behavior in polyacrylamide gel electrophoresis under non-denaturing and denaturing conditions; (iii) the same isoelectric point at pH 5.4; (iv) absence of carbohydrate in the molecule; (v) very similar amino acid compositions; (vi) lack of tryptophan among the amino acids; (vii) the same N-terminal amino acid (glycine), and (viii) indistinguishable immunological characteristics. Collectively, these data strongly suggest that uterine and lung uteroglobins are identical proteins. In contrast to the induction of the uterine uteroglobin by steroids with progestational activity, the synthesis of extra-uterine uteroglobins was no affected by these steroid hormones to any major extent. In keeping with the concept that lung is a target tissue for glucocorticoid action, cortisol and dexamethasone were capable of increasing the concentration of lung uteroglobin 3-fold (from 3 to 9 microgram/mg soluble protein). These compounds did not, however, alter the secretion of the uterine protein. Administration of high doses of testosterone and 5alpha-dihydrotestosterone elevated significantly the content of both uterine and lung uteroglobin. Only approx. one-fifth of the adult pulmonary uteroglobin levels were present in lungs of newborn rabbits indicating that developmental changes occur in the lung uteroglobin content.

Adrenal Cortex Hormones↗

The poly(glycosyl) chains of glycoproteins. Characterisation of a novel type of glycoprotein saccharides from human erythrocyte membrane.

Glycopeptides with complex carbohydrate structure were isolated from delipidated human erythrocyte membranes after digestion with pronase. The poly(glycosyl)peptides isolated (apparent molecular weight 4000--13000) are suggested to contain 20--70 sugar residues in an alkali-stable saccharide chain linked through N-acetylglucosamine to asparagine. The main sugar components are galactose and N-acetylglucosamine, which together account for 80% of total sugars. That the compounds isolated are glycopeptides and not glycolipids is concluded from the following findings: only trace amounts of glucose and fatty acids were present, and no long-chain (sphingosine) bases could be detected; on the other hand, the amounts of mannose and amino acids found are compatible with an N-glycosidic poly(glycosyl)peptide structure. The structure of the poly(glycosyl)peptides was studied using methylation analysis, exoglycosidase treatments, acid hydrolysis of the native as well as the N-deacetylated glycopeptides, and chromium trioxide oxidation. The studies indicate that the poly(glycosyl)peptides contain a repeating-3)galactosyl(beta1-4)N-acetylglucosaminyl(beta1-structure with branch points at the C-6 of the galactose residues. The saccharide chains are terminated in N-acetylglucosaminyl, galactosyl, N-acetylneuraminyl(alpha2-3 and 6)galactosyl and fucosyl(alpha1-2)galactosyl residues, and they also contain blood group A and B determinants.

Amino Acids↗