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Biomedical subjects

V Horejsí

Publications and source records attributed to V Horejsí.

At least 19 recordsLinked to original sources

The nature of large noncovalent complexes containing glycosyl-phosphatidylinositol-anchored membrane glycoproteins and protein tyrosine kinases.

A significant fraction of human glycosyl-phosphatidylinositol-anchored Ag CD59, CD55, CD48, and CDw52 is present in several cell lines tested (HPB-ALL, Jurkat, HL-60, Raji) in very large noncovalent complexes relatively resistant to dissociation by detergents. These complexes also contain some (glyco)lipids, such as these bearing the CD15, CDw17, and CDw65 determinants, and several intracellular components including protein tyrosine kinases and probably several of their potential substrates. Preclearing of the detergent lysates with different antibodies indicated that all these components are present jointly in a common single type of complexes the size of which is around 100 nm (molecular mass in the range of at least tens of thousands kilodaltons) as determined by ultrafiltration and gel chromatography. These results indicate the existence of cell-surface domains, specifically enriched in the above listed components, that may play a critical role in the so far poorly understood phenomenon of cell activation mediated through many different glycosyl-phosphatidylinositol-anchored (glyco)proteins and glycolipids.

Antigens, CD

Shedding of the CD44 adhesion molecule from leukocytes induced by anti-CD44 monoclonal antibody simulating the effect of a natural receptor ligand.

The CD44 adhesion molecule, playing an important role in leukocyte extravasation, was down-regulated by PMA and ionomycin on granulocytes and by an immobilized or soluble anti-CD44 mAb both on granulocytes and lymphocytes. Soluble labeled CD44 molecules of lower apparent molecular mass as compared to their membrane counterparts were isolated from culture supernatants of stimulated surface iodinated cells. Shedding rather than internalization is the mechanism found to be responsible for the loss of CD44 from the cell surface. The size of the soluble CD44 shed from the cells stimulated in vitro corresponds to soluble CD44 isolated from human serum. These data suggest that shedding, induced by anti-CD44 antibody simulating the effect of a natural CD44 ligand, is an important regulatory mechanism controlling surface CD44 expression on leukocytes in vivo.

Antibodies, Monoclonal

Stimulation of the biosynthesis of lactosamine repeats in glycoproteins in differentiating U937 cells and its suppression in the presence of NH4Cl.

We prepared a mouse monoclonal antibody, 2D5, which recognized a highly glycosylated human lysosomal membrane antigen. The apparent molecular mass of this antigen was cell type dependent and ranged between 100 kDa and 130 kDa. The difference was due to a variation in the carbohydrate moiety, since upon removal of the N-linked oligosaccharides the size of the glycoprotein was reduced to approximately 50 kDa in all cases. The high carbohydrate contents, subcellular localization and N-terminal sequence indicated a high similarity or identity of this antigen with the lamp-2 protein. In U937 cells several agents known to elicit differentiation induced synthesis of a larger form of the lamp antigen. Thus, treatment of cells with calcitriol resulted in a shift in its average molecular mass from 115 kDa to 130 kDa. The difference was due to an increase in the contents of lactosamine repeats. In subcellular membranes from calcitriol-treated cells the specific activity of the UDP-N-acetylglucosamine: N-acetyllactosamine N-acetylglucosaminyltransferase was enhanced 3-fold. The enhancement was accompanied with an elongation of lactosamine repeats in N-linked oligosaccharides in the 46 kDa mannose 6-phosphate receptor and the homing receptor, the leucocyte antigen CD44. In contrast, the apparent size of the leucocyte antigen CD43 which bears numerous O-linked oligosaccharides was not changed indicating a selectivity in the modulation of the formation of lactosamine repeats in N- and O-linked carbohydrates. It is shown further that the synthesis of lactosamine repeats in U937 cells is impeded in the presence of NH4Cl.

Amino Acid Sequence

GPI-anchored cell-surface molecules complexed to protein tyrosine kinases.

Binding of ligand or antibody to certain cell-surface proteins that are anchored to the membrane by glycophosphatidylinositol (GPI) can cause activation of leukocytes. However, it is not known how these molecules, which lack intracellular domains, can transduce signals. The GPI-linked human molecules CD59, CD55, CD48, CD24, and CD14 as well as the mouse molecules Thy-1 and Ly-6 were found to associate with protein tyrosine kinases, key regulators of cell activation and signal transduction. A protein tyrosine kinase associated with the GPI-linked proteins CD59, CD55, and CD48 in human T cells, and with Thy-1 in mouse T cells was identified as p56lck, a protein tyrosine kinase related to Src. This interaction of GPI-linked molecules with protein tyrosine kinases suggests a potential mechanism of signal transduction in cells.

Animals

Association of the CD59 and CD55 cell surface glycoproteins with other membrane molecules.

mAb against human glycosyl-phosphatidylinositol-linked leucocyte surface Ag CD59 and CD55 immunoprecipitated from detergent lysates of HPB ALL cell line in addition to the respective Ag a common 80-kDa glycoprotein component and (glyco)lipids. The 80-kDa glycoprotein is different from otherwise similar CD44 Ag. The CD59 immunoprecipitate contained also a small amount of the CD55 glycoprotein and the CD55 immunoprecipitate minute amount of the CD59 Ag. These results are interpreted in terms of existence of noncovalent complexes resistant to dissociation by mild detergents and consisting of the 80-kDa glycoprotein, CD59 and CD55 glycoproteins, relatively tightly bound (glyco)lipids and possibly other so far unidentified components. These complexes contain probably also other glycosyl-phosphatidylinositol-linked Ag, as an anti-CD48 mAb immunoprecipitated also an apparently very similar complex. The complexes immunoprecipitated by mAb against the CD55, CD59, and CD48 Ag also contain a protein kinase activity. This type of complexes could not be demonstrated in several other cell types such as RBC, PBMC, and HeLa cells. However, a qualitatively very similar set of components was immunoprecipitated from the murine thymoma EL-4 cell line by an anti-Thy-1 mAb.

Antigens, CD

The human leucocyte surface antigen CD53 is a protein structurally similar to the CD37 and MRC OX-44 antigens.

CD53 is an N-glycosylated pan-leucocyte antigen of 35-42,000 Mr. The sequence of the CD53 polypeptide deduced from a cDNA clone is 219 amino acids in length. It appears to lack a conventional leader sequence because the deduced NH2-terminal amino acid sequence is very similar to the rat MRC OX-44 and human CD37 antigens. The CD53 molecule is likely to consist of four transmembrane regions and a major extracellular hydrophilic loop containing two potential N-glycosylation sites. It is suggested that the CD53 glycoprotein is the true human homologue of the rat OX-44 antigen, rather than the CD37 antigen of more restricted expression and lower NH2-terminal sequence similarity to OX-44.

Amino Acid Sequence

Galactose oxidase. An enzyme with lectin properties.

Galactose oxidase interacts with immobilized D-galactosyl residues and related immobilized and free sugars under the conditions of affinity electrophoresis in polyacrylamide gel and agglutinates sialidase-treated human erythrocytes. The agglutination is also inhibited by D-galactose and its derivatives and is temperature dependent. The sugar binding and hemagglutinating activity are preserved after removal of Cu2+ essential for enzymic activity. These properties are very similar to those of some typical lectins; however, a number of D-galactose specific lectins do not possess any detectable galactose oxidase activity.

Carbohydrate Metabolism

Properties of Ulex europaeus II lectin isolated by affinity chromatography.

A lectin was isolated from Ulex europaeus seeds by affinity chromatography on affinity adsorbent prepared by copolymerization of acrylamide, N,N'-methylene bisacrylamide and maleylated hog stomach peptone. The lectin is homogeneous as judged by ultracentrifugation (s20,w = 6.4 S), electrophoretic and gel chromatography criteria; it contains 4.2% neutral sugar and 1.4% glucosamine. Its molecular weight is approx. 110,000 and the molecule consists of two noncovalently linked protomers which are formed by two covalently bound basic subunits (Mr = 30,000). The preparation contains three isolectins differing in the strength of interaction with specific sugars (cellobiose, N-acetyl-D-glucosamine) under the conditions of affinity electrophoresis. The lectin is non-specific with human ABO blood group system, the agglutination is inhibited by partial chitin hydrolysate, hog stomach peptone and high concentration of cellobiose.

Amino Acids

Studies on lectins. XLIV. The pH dependence of lectin interactions with sugars as determined by affinity electrophoresis.

The pH dependence of association constants of the lectin-sugar complexes was determined by means of affinity electrophoresis. All the lectins studied (from the seeds of Dolichos biflorus, Glycine soja, Lens esculenta and Vicia cracca and of the fruiting body of Marasmius oreades) were characterized by a similar course of pH dependence of the association constants, with the maximum values at pH 7--9. For concanavalin A and the L-fucose binding Ulex europaeus lectin only the association constants at three selected pH values were determined. Concanavalin A does not interact with immobilized alpha-D-mannosyl residues at pH 2.3. The association constants vs. pH curves measured for lectins isolated from two different lentil varieties slightly differ in accordance with the differences observed in the interaction of these lectins with the Sephadex gel.

Binding Sites

Studies on lectins. XXXIX. S-Glycosyl polyacrylamide gels for affinity chromatography of lectins.

Hydrophilic water-insoluble gels suitable for affinity chromatography of lectins have been prepared by copolymerization of acrylamide, N,N'-methylene bisacrylamide and alkenyl 1-thioglycosides. Water-soluble copolymers of analogous type have been obtained by omitting the cross-linking agent, N,N'-methylene bisacrylamide. In affinity chromatography of the Ricinus communis lectin it could be shown that the capacity for the lectin of the water insoluble copolymers was more than four times higher in copolymers having the S-beta-D-galactosyl ligand attached through a methylene bridge than in derivatives with a nonamethylene spacer. None of the insoluble S-beta-D-glycosyl copolymers prepared could be shown usable as affinity adsorbent for glycosidases though the corresponding soluble copolymers inhibited the activity of the enzymes.

Acrylamides

Affinity electrophoresis of proteins interacting with Blue dextran.

Interaction of several enzymes (pyruvate kinase, myokinase, creatine kinase, aldolase, malate dehydrogenase, lactate dehydrogenase, alcohol dehydrogenase and glucose-6-phosphate dehydrogenase) and other proteins (bovine serum albumin and ovalbumin) with Blue Dextran was studied by means of affinity electrophoresis in polyacrylamide gels. A decrease of electrophoretic mobility of enzymes in affinity gels was dependent on Blue Dextran concentration and in some cases, dissociation constants of the protein-immobilized dye complexes could be calculated. Affinity electrophoresis in the presence of Blue Dextran reveals in some cases additional bands of isoenzymes, as compared with the control gels (without Blue Dextran).

Alcohol Oxidoreductases

The lack of insulin-binding to simple glycosidic receptors.

The results of affinity electrophoresis at pH 8.9 show that insulin does not interact with any of a number of glycosidic ligands which bind various lectins. The results are discussed with respect to some similarities between insulin and concanavalin A.

Binding Sites

Studies on lectins. XLI. Isolation and characterization of a blood group B specific lectin from the role of the powan (Coregonus lavaretus maraena).

A B-specific lectin from the roe of the powan (Coregonus lavaretus maraena), a fish of the Salmonidae family, was isolated by affinity chromatography on O-alpha-D-galactosyl polyacrylamide gel. From 630 g of the lyophilized roe, 346 mg of pure lectin was obtained in a single isolation step. The lectin is electrophoretically homogeneous, its sedimentation coefficient s20,w is 2.9S and molecular weight 25 000. The molecular weight of the subunits estimated by electrophoresis in the presence of dodecyl sulfate is 27 000 for both reduced and nonreduced substance. The lectin contains a large amount of cysteine, has a small content of aromatic amino acids, 10.4% of neutral sugar and 0.145% of Zn. It agglutinates specifically human B-group erythrocytes; the agglutination is stimulated by Zn2+ and Mg2+ ions and partially inhibited by EDTA. The most efficient carbohydrate inhibitors are methyl alpha-L-rhamnoside (6 micrometer), L-rhamnose (12 micrometer) and raffinose (0.1 mM). The association constant of the complex lectin . L-rhamnose is KA = 9.5 . 10(2) M-1, as determined by fluorimetric titration.

ABO Blood-Group System