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M H Mansour

Publications and source records attributed to M H Mansour.

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Identification and structural characterization of Lyt-1 glycoproteins from tunicate hemocytes and mouse thymocytes.

1. A panel of monoclonal antibodies specific to murine Lyt-1 allotypic and framework determinants was used to investigate the possible occurrence of a Lyt-1 homolog in tunicate (protochoradte) hemocytes. 2. In immunoprecipitation experiments, antigenic activities were associated with a major 67 kDa component on tunicate hemocytes and C57Bl/6 mouse thymocytes. 3. Tunicate and mouse Lyt-1 molecules were compared, in terms of glycosylation, by their sensitivity to glycosidases and analyses on one- and two-dimensional gel electrophoresis. 4. Each of the two molecules appeared to bear two N-linked oligosaccharides, one high-mannose and one complex-type glycan. 5. Both molecules revealed charge microheterogeneity with differences in sialic acid content accounting for the charge difference between each other. 6. However, the difference in the glycans did not account for the microheterogeneity within each molecule, suggesting that other post-translational modifications might be responsible. 7. At the polypeptide level, comparisons of chymotryptic and endoproteinase-Arg-C peptide maps, as well as CNBr-cleavage products, suggested that tunicate and mouse Lyt-1 molecules are structurally similar and that each may contain at least one intra-chain disulfide bridge. 8. The significance of these findings is discussed in terms of the possible biological role of Lyt-1 glycoproteins at different levels of evolution.

Animals

Serological characterization and partial purification of an Lyt-1 homolog in tunicate hemocytes.

A panel of alloantisera and monoclonal antibodies specific to murine Lyt-1 allotypic and framework determinants was used in indirect immunofluorescence and FACS analysis to investigate the occurrence of an Lyt-1 homolog in tunicate (protochordate) hemocytes. Binding assays and quantitative absorption experiments established the expression of Lyt-1 cross-reacting determinants on a distinct population of tunicate hemocytes. These determinants were expressed exclusively by cells with the morphological characteristics of hemoblasts and lymphocytes. In a rapid two-step purification procedure, Lyt-1 glycoproteins from tunicate hemocytes and C57B1/6 mouse thymocytes were solubilized and partially purified by affinity chromatography using a mAb anti-Lyt-1 frame-work determinant. In both cell types, antigenic activities were associated with a major 67-kDa component. Our findings suggest an early phylogenetic emergence of an Lyt-1 homolog at this level of evolution.

Animals

Thy-1 evolution.

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Amino Acid Sequence

Isolation, purification, and amino acid composition of the tunicate hemocyte Thy-1 homolog.

A serologic cross-reacting homolog to rodent Thy-1 glycoproteins has been isolated from hemocyte cell surfaces of the advanced invertebrate group of tunicates. The Thy-1.1 cross-reacting antigenic activity was followed during purification by inhibiting the binding of MRC OX7 monoclonal antibody to pure rat brain Thy-1 in a soluble phase radioimmunoassay. After solubilization in deoxycholate, tunicate hemocyte Thy-1.1 antigenic activity was purified by affinity chromatography using an MRC OX7 monoclonal antibody affinity column, followed by gel filtration. A 602-fold enrichment in the Thy-1.1 antigenic activity, with a yield of 55.6% compared to the starting crude membrane fraction, was obtained. The antigenic activity was associated with a single glycoprotein of molecular size of 3.1 nm and molecular weight estimated at 27,000 by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (15% gels). Amino acid composition of the purified molecule was compared by the S delta Q index of differences in composition to mammalian and non-mammalian Thy-1 glycoproteins, Ig, major histocompatibility complex-encoded polypeptides, beta 2-microglobulin, and other recognition molecules. With this parameter, the tunicate hemocyte Thy-1 homology revealed significant relatedness to avian and mammalian Thy-1 molecules and was interestingly more related to mu chains of primitive vertebrates and to HLA class I and II encoded polypeptides than to Thy-1 molecules of higher vertebrates. Based upon these observations, the tunicate hemocyte Thy-1 homolog seems to represent an ancestral Thy-1 molecule which, in structural terms, may represent an invertebrate member of the Ig superfamily.

Amino Acids

Serological and partial molecular characterization of a Thy-1 homolog in tunicates.

The occurrence of a Thy-1 homolog in the tissues of the advanced invertebrate group of tunicates has been investigated by using two monoclonal antibodies specific to rodent Thy-1.1 determinants and a heterologous anti-rat Thy-1 antiserum. In cellular and soluble-phase radioimmunoassays for Thy-1 using intact hemocytes, tissue extracts and hemolymph, membrane-bound and soluble Thy-1.1 cross-reacting determinants have been detected. Immunoprecipitation experiments with hemocyte deoxycholate extracts and hemolymph, labeled with 125I by lactoperoxidase/chloramine T and with NaB3H4 by galactose oxidase, established the association of the Thy-1.1 cross-reacting determinants with a single glycoprotein of apparent m.w. estimated at 27 000 in hemocytes and 22 500 in hemolymph by sodium dodecyl sulfate polyacrylamide gel electrophoresis. The significance of this finding is discussed in relation to the phylogenetic emergence of the Thy-1 molecule during evolution.

Animals

Purification and characterization of Rana pipiens brain Thy-1 glycoprotein.

The occurrence of Thy-1 antigens in Rana brain has been studied by the use of heterologous anti-Rana brain antisera raised in rabbit and BALB/c mouse (Thy-1.2) and AKR/J mouse (Thy-1.1) strains and by monoclonal anti-mouse Thy-1.1 and anti-mouse Thy-1.2 antibodies with the use of quantitative absorption assays. Three antigenic determinants were defined on Rana brain and referred to as: 1) the Rana-specific xenoantigen, 2) the Rana-mouse cross-reacting xenoantigen, and 3) the Thy-1.1 antigen. Thy-1 antigenic activities were solubilized from crude brain membranes in deoxycholate and followed by measuring the Rana-specific and the Thy-1.1 antigenic determinants. After solubilization, Rana brain Thy-1 antigens were purified by lentil lectin affinity chromatography and gel filtration on Sephadex G-200. A 605-fold and 400-fold enrichment in the Rana-specific and the Thy-1.1 antigenic activities with a yield of 25% and 17%, respectively, were obtained. Both antigenic activities were associated with a single glycoprotein of molecular size 3.1 nm and m.w. estimated at 27,000 by SDS-polyacrylamide gel electrophoresis. The serologic and biochemical properties of our purified Rana brain Thy-1 glycoprotein were very similar to those of the mammalian Thy-1 molecule, suggesting the conservation of the gene coding for Thy-1 during vertebrate evolution.

Animals

Identification and structural characterization of an LYT-2/3 homolog in tunicates.

1. A serologic and structural homolog to murine Lyt-2/3 molecular complex was sought in tunicate hemocytes by using a monoclonal antibody specific to Lyt-2 framework determinants (mAb 53-6.7). 2. This antibody labeled a distinct population of tunicate hemocytes, as determined in indirect immunofluorescence and FACS analysis, and immunoprecipitated disulfide-bonded subunits from hemocytes equivalent to the 38 kDa (alpha), 34 kDa (alpha') and 30 kDa (beta) subunits of murine Lyt-2/3 molecules. 3. As in mice, tunicate alpha- and alpha' -subunits each appeared to bear three N-linked oligosaccharides, one high mannose- and two complex-type glycans and focused as a number of heterogeneous spots on IEF gels. 4. In contrast, beta-subunits of both species were associated with a single N-linked glycan of the complex type and focused as basic components of limited charge heterogeneity. 5. Based on tryptic peptide patterns, alpha and alpha' -subunits, are likely to be structurally similar in both tunicate and mouse complexes. 6. However, CNBr cleavage patterns indicated that the alpha-subunit of both species may differ in the size-location of the intrachain disulfide bridge. 7. Collectively our observations suggest the phylogenetic emergence of an Lyt-2/3 homolog at an early level of evolution.

Animals