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J Lambris

Publications and source records attributed to J Lambris.

6 recordsLinked to original sources

Different features of the MHC class I heterodimer have evolved at different rates. Chicken B-F and beta 2-microglobulin sequences reveal invariant surface residues.

Chicken beta 2-microglobulin (beta 2m) and class I (B-F19 alpha chain) cDNA clones were isolated and the sequences compared to those of B-F Ag isolated from chicken E. These clones represent the major expressed class I molecules on E, with B-F alpha size variants evidently due to alternative use of small exons in the cytoplasmic region. The cDNA sequences were compared to turkey beta 2m, the apparent allele B-F12 alpha and other vertebrate homologs, using the 2.6 A structure of the human HLA-A2 molecule as a model. Both chicken alpha 1 and alpha 2 domains resemble mammalian classical class I molecules and the MHC-encoded nonclassical molecules more than CD1 or the class I-like FcR. In contrast, the chicken alpha 3 domain is equally homologous to all alpha 3 domains, to beta 2m and to class II beta 2 domains. For each pair of extracellular domains (alpha 1 vs alpha 2, alpha 3 vs beta 2m), the level of sequence homology between mammalian and avian molecules is quite different. This suggests that the structurally homologous domains have been under different selective pressures during evolution. There is a very strong G + C bias in alpha 3 and beta 2m, leading to an overall change in amino acid composition in B-F compared to class I molecules from other taxa. Many of the surface residues are quite diverged, particularly in alpha 3 and beta 2m. There are fewer changes in intra- and interdomain contact sites. Some residues with important functions are invariant, including seven residues that bind the ends of the peptide, two residues that bind CD8, and three residues that are phosphorylated. The positions of the allelic residues are conserved. There are other patches of invariant residues on alpha 1, alpha 2, and beta 2m; these might bind TCR or other molecules involved in class I function.

Amino Acid Sequence↗

Lymphocyte mitogenesis induced by monoclonal antibodies to the T3 complex. Differential modulation by human IgG.

Murine monoclonal antibodies OKT3 (IgG2), 64.1 (IgG2), and Leu 4 (IgG1) react with a common membrane antigen on human T cells and induce potent mitogenesis at concentrations of 1 ng/ml, 10 ng/ml, and 100 ng/ml, respectively. Human serum inhibits the mitogenic effect of antibodies OKT3 and 64.1, but not that of Leu 4. The inhibitor in serum has been identified as immunoglobulin G (IgG) as evidenced by the ability of anti-human IgG-Sepharose affinity columns to retain the inhibitory activity. Various immunoglobulin classes and subclasses obtained from human myelomas differ in their ability to inhibit the OKT3-induced activation. The best inhibition is obtained with the IgG subclasses IgG1 and IgG3, followed by IgG2; IgG4, IgM, and IgA have little if any effect. None of the IgG subclasses inhibit the Leu 4-induced mitogenesis. Indomethacin as well as supernatants containing interleukin 2 (IL-2) can reverse the inhibitory effects of IgG. Prostaglandins (PGE1 and PGE2) inhibit both the OKT3- and Leu 4-induced mitogenesis, thus lacking the selectivity seen with IgG. Since stimulation by the monoclonal antibodies requires the participation of monocytes, an interpretation consistent with the present data is that IgG stimulates monocytes via its Fc portion to release prostaglandins and/or other suppressor factors via an indomethacin-sensitive pathway. The inability of IgG to inhibit Leu 4-induced mitogenesis may therefore relate to an inability of the monocyte subpopulation, which mediates the Leu 4 response, to secrete suppressor factors. These data suggest a potential value of the mitogenic monoclonal antibodies as probes in studying monocyte heterogeneity and T-cell-monocyte interactions.

Antibodies, Monoclonal↗

Activation of the alternative pathway of human complement by the extracellular slime glycolipoprotein of Pseudomonas aeruginosa.

The capability of the extracellular slime glycolipoprotein (GLP) of Pseudomonas aeruginosa to activate human complement was investigated. When slime GLP was added to type AB human serum, C3 and factor B were converted to their respective major cleavage fragments, C3b and Bb. This activation also occurred when slime GLP was incubated with serum-ethylene glycol bis(trichloroacetate)-Mg++, a result which indicates that the alternative complement pathway is involved. Additional support for the hypothesis of alternative pathway activation was provided by the fact that when serum-ethylene glycol bis(trichloroacetate)-Mg++ was preheated to inactivate factor B, slime GLP did not induce conversion of C3. The activation of the alternative pathway of human complement by slime GLP may represent an early nonimmune defense against P. aeruginosa infection.

Animals↗

A method for analysing lymphocyte surface antigens.

A method is described for isolating and characterizing external lymphocyte surface proteins. Intact 125I-labelled tonsillar lymphocytes were incubated with antilymphocyte serum, solubilised with NP-40 precipitated with Staphylococcus aureus and the labelled proteins analysed on SDS polyacrylamide gels. The molecular weights of the proteins labelled in this way were compared with those of surface antigens labelled by the galactose oxidase method. This method may also be used for isolation of surface receptor molecules which lose their stereochemical structure upon solubilisation of the cells.

Animals↗

Fluorescent labelling of proteins of lymphocyte plasma membranes.

Fluorescamine has been used for labelling proteins present on the surface of normal human peripheral blood lymphocytes. Under the conditions of study, 12 labelled proteins could be detected by SDS gel electrophoresis. This method may be of value in biochemical studies of lymphocyte membranes.

Antigens, Surface↗