PubMed Health⌕ Search

Biomedical subjects

V Horejsí

Publications and source records attributed to V Horejsí.

At least 55 records · Page 3Linked to original sources

Association of GPI-anchored glycoproteins with other components of the leucocyte membrane.

The leucocyte surface glycosylphosphatidylinositol (GPI)-anchored membrane proteins are localized within specific membrane microdomains which also contain specific (glyco)lipids and intracellular proteins including protein kinases. These "GPI-domains" are devoid of most abundant transmembrane proteins, but in T-cells they appear to contain small amounts of CD4 and CD8 and in B-cell lines, small amounts of CD10. The existence of these relatively detergent-resistant membrane microdomains explains the signal-transducing ability of GPI-anchored receptors. In addition to the "GPI-microdomains", several other types of analogous very large detergent-resistant complexes/domains appear to exist, such as those containing T-cell receptor, others containing CD45R molecules associated with a protein kinase, and still others composed mainly of several proteins of the tetraspan family. Therefore, we suggest that the leucocyte surface is a mosaic of microdomains of unique composition associated with specific signal-transducing molecules.

Antigens, CD↗

[Ratios of surface markers (CD) on peripheral blood lymphocytes in the working-age Czech population].

The authors present an account of lymphocytic CD signs in adult men (mean age 34 years) and women (mean age 29 years) of the Czech population. Mean values and standard deviations (s.d.) are given for men/women: CD2: 79.6% (6.6)/86.4% (5.3), CD 3: 71.5% (7.4)/81.1% (7.4), CD4: 42.4% (6.3)/48.4% (8.5), %CD45RA+ v CD4+: 41.7% (14.1)/47.3% (13.9), CD5: 69.5% (7.0)/76.00% (6.5), CD8: 33.9% (9.3)/29.8% (6.8). CD10: 1.9% (1.3)/2.5% (1.6), CD11c: 8.3% (4.7)/10.9% (4.4), CD16: 8.3% (3.8)/4.4% (2.3), CD19: 11.5% (4.0)/8.8% (3.2), CD20: 14.7% (4.7)/11.3%, CD22: 10.6% (9.2)/8.9% (3.5), CD45RA: 56.7% (7.6)/61.7% (7.8), CD56: 15.1% (5.7)/16.0% (6.5), CD57: 13.7% (7.9)/8.5% (6.3), CD71: 1.9% (1.3)/3.5% (1.7) a HLA DR: 22.1% (6.4)/19.6% (7.1), DP: 16.3% (7.1)/13.5% (4.9), DQ: 10.9% (5.8)/7.2% (3.2), BJK: 2.6% (2.2)/2.1% (1.1), BJL: 1.8% (1.2)/2.1% (1.3), ratio CD4/CD8 1.35 (0.49)/1.75 (0.69). The examination were made on an apparatus FACScan (Becton Dickinson).

Adult↗

Large, detergent-resistant complexes containing murine antigens Thy-1 and Ly-6 and protein tyrosine kinase p56lck.

A number of human and mouse leukocyte surface (glyco)proteins anchored in a membrane via glycosylphosphatidylinositol (GPI) moiety have been previously shown to be noncovalently associated with protein tyrosine kinases (Science 1991. 254: 1016; J. Biol. Chem. 1992. 267: 12317). Here we show that two murine antigens of this group, Thy-1 and Ly-6, implicated in the activation of the T cells, are associated with each other, with the kinase p56lck and with several of potential kinase substrates in very large, detergent-resistant complexes, the size of which is between 50 and 200 nm, as determined by ultrafiltration and gel chromatography. Experiments on simultaneous solubilization of mixed human and mouse cells rule out that the observed complexes are artifacts induced by the detergent. Complexes of similar composition and properties were obtained when either detergents Brij-58, Nonidet-P40 or 3-[(3-cholamidopropyl)-dimethylammonio]- 1-propane-sulfonate (Chaps) were used for solubilization of the cells, while octylglucoside at least partially dissociated them. These "GPI-complexes" may be essential for the well-known signal-transducing capacity of Thy-1 and Ly-6.

Animals↗

Genomic structure of the human CD53 gene.

The genomic structure of the gene encoding human pan-leukocyte surface glycoprotein CD53 (a member of the "tetraspan family" of membrane proteins) was determined. The gene consists of eight exons encoding all sequences found in cDNA and is spread over more than 26 kilobases of genomic DNA. The exon-intron organization of the CD53 gene is strikingly similar to the CD63 and TAPA-1 genes, which suggests a close evolutionary relationship between these genes. The 5' end of the gene upstream of the first exon contains at least three close transcription start points (approximately 20 base pairs 5' of the 5' end of the published cDNA). The region upstream of the transcription initiation sites is not G+C rich; it contains potential binding sites for several transcriptional factors but no TATA or CCAAT boxes.

Amino Acid Sequence↗

The genes for CD37, CD53, and R2, all members of a novel gene family, are located on different chromosomes.

CD37, CD53, and R2 leukocyte surface antigens are members of a novel family of structurally related proteins. They all have four transmembrane-spanning domains with a single major extracellular loop. The CD37 is expressed on B cells and on a subpopulation of T cells. The CD53 is known as a panleukocyte marker. The R2 protein is an activation antigen of T cells. The CD37, CD53, and R2 genes were assigned with the help of human/rodent somatic cell hybrids and human-specific probes to human chromosomes 19, 1, and 11, respectively. For the regional assignment, various deletion hybrids were used to map CD37 to 19p13-q13.4, CD53 to 1p12-p31, and R2 to 11p12.

Antigens, CD↗

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↗

Novel structurally distinct family of leucocyte surface glycoproteins including CD9, CD37, CD53 and CD63.

Several of the recently described leucocyte surface (glyco)-proteins with significant amino acid sequence similarity (human CD9, CD37, CD53, CD63, TAPA-1, CO-029 and R2 and several homologues of other species) are distinguished by the polypeptide chain apparently four times crossing the membrane. Although the biological role of none of these molecules is known, their structure, associations with other membrane components and the effects of specific monoclonal antibodies suggest that they may constitute a family of ion channels or other transport molecules.

Animals↗

The human leucocyte antigen CD48 (MEM-102) is closely related to the activation marker Blast-1.

The glycosyl phosphatidylinositol (GPI)-linked antigen recognized by monoclonal antibody (mAb) MEM-102 is expressed on all peripheral blood lymphocytes, both resting and activated. Its properties are very similar to a previously described activation antigen, Blast-1. The amino acid sequence deduced from the structure of cloned cDNA is identical to that of the Blast-1 antigen except for a single amino acid residue. There are several other minor differences in the nucleotide sequence of the Blast-1 and MEM-102 cDNAs that do not affect the predicted structure of the polypeptide product. The amino acid sequence of the first 15 N-terminal residues of the antigen purified from Raji cells is found in the deduced sequence close to the presumed boundary between the leader peptide and mature polypeptide. Properties of the recombinant product expressed in COS cells are similar to the antigen isolated from peripheral blood mononuclear cells (PBMNCs) or B-and T-cells lines. The antigen purified on immobilized mAb MEM-102 is recognized by all six known CD48 mAbs under western blotting conditions. COS cells transfected with MEM-102 cDNA react with all the CD48 mAbs. It is concluded that mAb MEM-102 is directed against the as yet poorly characterized antigen CD48, which is therefore structurally closely related to Blast-1. Several possibilities are discussed that might account for the apparent discrepancy between the broad pan-leucocyte expression of the between the broad pan-leucocyte expression of the MEM-102/CD48 antigen and much more restricted expression of the epitope recognized by the previously described mAb defining the Blast-1 antigen.

Amino Acid Sequence↗

A monoclonal antibody applicable for determination of C-peptide of human proinsulin by RIA.

BALB/c, (BALB/c x B10.A)F1 and (BALB/c x B10)F1 hybrid mice were immunized with C-peptide of human proinsulin. The (BALB/c x B10.A)F1 hybrids were the best responders and yielded 3 hybridomas secreting specific monoclonal antibodies. One of them, C-PEP-01, bound the C-peptide with high affinity (Kas = 1.1 x 10(9) l/mol), cross-reacted fully with human proinsulin but not with insulin, glucagon or somatostatin and apparently recognized the regions of C-peptide comprising amino acid residues 8-13 and 25-31. A RIA system could be set up employing this monoclonal antibody suitable for estimation of C-peptide concentrations in a diagnostically useful range (1-50 ng/ml).

Amino Acid Sequence↗

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↗

Monoclonal antibodies against human leucocyte antigens. IV. Antibodies against subunits of the LFA-1 (CD11a/CD18) leucocyte-adhesion glycoprotein.

Six monoclonal antibodies were prepared that recognize a broadly expressed antigen composed of noncovalently associated 95 kDa and 180 kDa subunits. Antibodies MEM-25, MEM-83 and MEM-95 are shown to react with a determinant(s) present on the isolated larger subunit identified as the CD11a glycoprotein, MEM-48 reacts with the isolated smaller subunit which is identical to the CD18 glycoprotein. Antibodies MEM-30 and MEM-94 recognize probably a determinant in the CD11a/CD18 complex (i.e., LFA-1 antigen) dependent on association of the constituent chains. Cytotoxic activity of NK cells in inhibited by antibodies MEM-25, MEM-95 and less strongly by MEM-30 and MEM-94.

Animals↗