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C Mawas

Publications and source records attributed to C Mawas.

At least 73 records · Page 4Linked to original sources

Two distinct TL-like molecular subsets defined by monoclonal antibodies on the surface of human thymocytes with different expression on leukemia lines.

Monoclonal antibodies reacting with TL-like class I antigens expressed on the surface of human thymocytes and some T leukemia lines were found to define three independent epitopic clusters, two of which could be shown to reside on serologically distinct molecular subsets by a solid-phase radioimmunoassay as well as by sequential immunoprecipitation. Both molecular subsets consist of a 49-K heavy chain associated with a beta-2 microglobulin light chain. Thymocytes expressed similar amounts of the two molecular subsets, while on T leukemia lines the amount of these two molecular subsets varied from line to line.

Antibodies, Monoclonal↗

Cellular localization of class I (HLA-A, B, C) and class II (HLA-DR and DQ) MHC antigens on the epithelial cells of normal human jejunum.

HLA class I and class II (HLA-DR (human I-E equivalent) and DQ (human I-A equivalent] antigens were localized by immunofluorescence technique on thin frozen sections of normal human jejunum using a panel of monomorphic monoclonal antibodies. HLA class I (A, B and C) and HLA-DR molecules were found in the basolateral membrane of enterocytes; HLA-DR were also detected in a patchy distribution in the apical part of enterocytes; HLA-DQ molecules (the human equivalent of the murine I-A molecular subset) were not detected on normal enterocytes. All three molecules were detected on the membrane of lymphocytes and monocytes present in the lamina propria.

Cell Membrane↗

Distinct HLA-DR epitopes and distinct families of HLA-Dr molecules defined by 15 monoclonal antibodies (mAb) either anti-DR or allo-anti-Iak cross-reacting with human DR molecule. I. Cross-inhibition studies of mAb cell surface fixation and differential binding of mAb to detergent-solubilized HLA molecules immobilized to a solid phase by a first mAb.

A series of HLA-DR-reactive mouse anti-human B cell or anti-Ia monoclonal antibodies (mAb) have been used to explore the serological complexity of human class II antigens at the determinant level, using two techniques: (a) cross antibody-binding competitor assays using 125I-labeled and-unlabeled mAb were performed to study the topological organization of the corresponding determinants to determine epitopic clusters recognized by this collection of mAb and (b) differential reactivity of mAb to detergent-solobilized solid-phase-immobilized HLA-DR molecules to determine epitopes expressed on identical DR isotypes. The fifteen mAb could be classified according to the first technique as falling into three different epitopic clusters. Using the second technique, we were able to define at least two independent molecular subsets, one co-expressing two of the three epitopic clusters and the second expressing only the third one. We could not formally identify molecular subsets expressing only one of the first two clusters, using the second technique. The precise serological mapping of the determinants recognized by various anti-class II mAb should prove very useful if such mAb were to be introduced in anti-class II-specific T cell clone blocking experiments. We anticipate that some of them should facilitate the correlation at the clonal level between the T cell repertoire and the epitopes or molecular subsets defined by these mAb. However, within mAb belonging apparently to a same cluster, some could mediate different biological effects.

Animals↗

Murine H-2Dd-reactive monoclonal antibodies recognize shared antigenic determinant(s) on human HLA-B7 or HLA-B27 molecules or both.

We have evaluated the serological relationships between the murine H-2Dd and human HLA molecules using four H-2Dd-reactive monoclonal antibodies (mAbs) produced in the A.BY (KbIbDb) anti-A.TL (KsIkDd) combination. In the mouse, these reagents exhibited three distinct reactivity patterns: Dd, Ks, and H-2u (mAb 81.L); Dd, H-2p, and H-2u (mAb 81.R); and Dd, Kd, H-2p, H-2u, and H-2v (mAbs 97.G and 97.H). Sequential immunoprecipitation and cross-competitive mAb binding experiments revealed that these mAbs recognized determinants in two spatially distinct polymorphic domains on the H-2Dd molecule of B10.A(5R) cells (defined by mAbs 81.L and 81.R, 97.H, and 97.G, respectively). MAbs 81.R, 97.G, and 97.H, but not 81.L, also defined an HLA-linked polymorphism in the human, the main characteristics of which can be summarized as follows: (i) on B lymphoblastoid cell lines, mAbs 81.R and 97.H bound to cells expressing the HLA-B7, HL-B27 or Bw40 cross-reacting specificities, (ii) on peripheral blood lymphocyte (PBL) panel mAb 81.R exerted C dependent cytotoxicity to 118 of 400 cells tested, including almost all HLA-B7 or HLA-B27 cells or both (r: 0.952), (iii) the expression of the 81.R cross-reacting determinant segregated in an informative family with the parental haplotype carrying the HLA-B7 allele, and (iv) mAbs 81.R, 97.G, and 97.H recognized topologically related determinants on the same class I molecule(s) of the human B lymphoblastoid cells JY (HLA-A2,2, -B7,7). These data support the view that some, but not all H-2Dd allotopes have been conserved throughout evolution and are associated in the human with the HLA-B7, -B27 cross-reacting specificities.

Animals↗

A 55,000 Mr surface antigen on activated human T lymphocytes defined by a monoclonal antibody.

A T cell growth factor-dependent alloreactive human T cell line has been used to generate a monoclonal antibody B1.49.9 that reacts with an antigen present on most if not all mitogen or alloantigen activated T cells but not on resting T cells. The T lymphoblastoid cell line HUT-102 is also strongly reactive with B1.49.9 but all other T and non-T leukemia-lymphoma cell lines tested were negative. The B1.49.9 antigen is a glycoprotein of 55,000 Mr on mitogen or alloantigen activated T cells and 50,000 Mr on the cell line HUT-102. Pulse labeling experiments showed that a 40,000 Mr precursor (at approximately 0.7 h) which does not bind to ricin lectin precedes the appearance of the ricin-binding 55,000 Mr form. Comparisons of the monoclonal antibody anti-Tac, which recognizes the IL-2 receptor, to B1.49.9 suggest that B1.49.9 also recognizes a structure similar or identical to the IL-2 receptor.

Animals↗

Human allospecific T cell proliferative clones: different T cell clones expressing an apparently identical HLA class II specificity are heterogeneous in regard to their proliferative inhibition by a panel of monoclonal antibodies against human Ia-like antigens.

Four independent PLT clones displaying an apparently identical class II specificity (i.e., Dw/DR3) were found to give a heterogeneous pattern of inhibition in relation to 15 anti-class II mAb and an anti-beta 2m mAb used as a control. Some clones were inhibited by all anti-class II mAbs, irrespective of the cluster of molecular subsets with which they reacted. Such clones were also inhibited by the control anti-beta 2m mAb. Other clones were inhibited by only a few of the mAb tested. Within this group of T clones following the addition of a limiting amount of conditioned medium the inhibitory data of all independent clones with an identical specificity were inhibited by the same mAb; under these conditions, it was possible to relate the mAb inhibition patterns with the specificity of the T cell clones and these T cell specificities with the epitopic cluster/molecular subsets defined by these mAbs. A new level of T cell subset heterogeneity within T cell clones with apparent identical proliferative specificities is demonstrated, in relation to the T cell clone "susceptibility" or "resistance" to the effects of anti-class II mAbs directed towards their own Ia-like antigens.

Antibodies, Monoclonal↗

Genetic mapping of a human class II antigen beta-chain cDNA clone to the SB region of the HLA complex.

A class II antigen beta-chain cDNA clone was isolated from a human B-cell cDNA library by using as a probe the murine I-A beta gene. This cDNA clone, pHA beta, was shown to be distinct from the DC beta- and DR beta-related loci by DNA sequence analysis, thus suggesting that it might correspond to a third polymorphic human class II locus, SB, which encodes secondary B-cell antigens. Genetic mapping of this beta-chain cDNA clone to the SB region was performed by the blot hybridization procedure. We showed that (i) within panels of HLA-DR homozygous human B-cell lines and of unrelated individuals who have been typed for HLA antigens, differential mobility of DNA fragments segregated with distinct SB genotypes; (ii) gamma-ray-induced deletion mutants that have lost the expression of DR or DC/MT antigens but maintain SB expression preserved a pattern consistent with (a) their SB phenotype and (b) the genetic independence of the SB locus with respect to DR and DC/MT; and (iii) within an informative family, two siblings differing only for one allele at the SB locus (because of the occurrence of an internal recombination between DR and GLO) and otherwise HLA identical exhibited a restriction enzyme polymorphism linked to the SB locus. Therefore, all available data are compatible with identity between HA beta and SB beta.

Alleles↗

The effect of in vivo application of monoclonal antibodies specific for human cytotoxic T cells in rhesus monkeys.

Rhesus monkeys were treated in vivo with monoclonal antibodies specific for human cytotoxic T cells. These antibodies reacted with rhesus lymphocytes as they do with human lymphocytes. Injection of a pool of monoclonal antibodies resulted in rapid elimination of the relevant T cell subpopulation from the circulation. Injection of a single monoclonal antibody did not result in elimination of the subpopulation, but the cells were coated with the injected monoclonal antibody. Injection of the single monoclonal antibody did not prolong the allogeneic skin graft. These results indicate that the rhesus monkey is a useful model for testing antihuman monoclonal antibodies.

Animals↗

Human cytotoxic T cell structures associated with expression of cytolysis. I. Analysis at the clonal cell level of the cytolysis-inhibiting effect of 7 monoclonal antibodies.

Monoclonal antibodies (mAb) derived from BALB/c mice immunized with human anti-HLA-A2 cloned cytotoxic T lymphocytes (CTL) were screened for their ability to block, in the absence of complement, the cytolytic activity of the immunizing CTL clone. Eight cytolysis-inhibiting mAb have been derived. One of these was directed against a monomorphic determinant expressed on HLA-class I molecules and thus probably inhibited cytolysis via a target cell antigen-masking effect. The 7 other mAb recognized "CTL function-associated structures" and did not have to interfere with target cell antigens in order to inhibit cytolysis. F(ab')2 and Fab fragments of these 7 mAb were also inhibitory. Competitive inhibition of binding and preliminary biochemical analysis suggested that these 7 mAb defined on cloned CTL various epitopes of a structure of 30 kDa disulfide-bonded into several multimeric forms when analyzed without reduction. The inhibitory effect of these 7 mAb has been investigated on a series of short-term (1 month) and long-term (greater than 10 months) expanded cloned CTL lines derived in vitro from an in vivo allosensitized individual exhibiting various specificities. Unexpectedly, only 10% of these CTL clones were inhibited. Flow cytofluorimetric analysis further revealed that noninhibited and inhibited CTL clones expressed similar amounts of the 30-kDa structure. Consequently, the inhibition of CTL was heterogeneous when analyzed at the clonal level and not simply related to the presence or absence of this structure. Furthermore, the ability of CTL clones to be inhibited appeared to be unrelated to their HLA-A, B or C specificity or to their lytic activity. The connections between this mAb-defined structure and CTL function are discussed.

Animals↗

HLA-SB in the south of France. Correlation between locally derived and reference typing reagents.

The HLA-D region of the Major Histocompatibility Complex has been subdivided since 1978 (Mawas et al. 1978) into two subregions separable by recombination: a telomeric subregion (closer to HLA-B), coding for the classical HLA-DR or Dw specificities (Mawas et al. 1980) as well as for the more recent MT series (Park et al. 1980); and a centromeric subregion (closer to GLO), coding for a new series of alleles provisionally named SB (for secondary B cell antigens) (Shaw et al. 1980, 1981a). Reagents allowing the identification of six independent alleles have been characterized in two laboratories (Charmot et al. 1980 and Shaw et al. 1980, 1981b) using the technology of primed lymphocytes typing (Sheehy et al. 1975; Mawas et al. 1975). The existence of this new locus is supported by the following arguments: population studies by Shaw demonstrating five traits distinct from DR behaving as alleles (Shaw et al. 1981b), analysis of two informative SB/DR recombinant families (Mawas et al. 1978; Mawas et al. 1980; Shaw et al. 1981a), and, finally, studies of mutants showing independent loss of DR expression without loss of SB expression (Kavathas et al. 1981). The present report summarizes the HLA-SB typing of 109 unrelated individuals from the South of France and segregation studies in 14 unrelated families; a first attempt to correlate local "SB" reagents with the NIH reference standards is presented.

Female↗

Monoclonal mouse anti-I-Ak and anti-I-Ek antibodies cross-reacting with HLA-DR supertypic and subtypic determinants rather than classical DR allelic specificities.

Thirty monoclonal alloantibodies (mAB) against mouse Iak antigens have been derived by fusion of mouse myeloma and spleen cells from A.TH (Ks Is Dd) mice immune to A.TL (Ks Ik Dd) lymphoid cells. Analysis of: (i) their reactivity (using 125I labelled protein A cell binding or cytotoxicity assays) on lymphoid cells from selected mouse strains with recombinant H-2 haplotypes; and (ii) the spatial arrangement of the specificities detected on the Iak molecules (studied by means of competitive inhibition of binding of radio-labelled monoclonal antibodies), permitted the identification of various epitopes present either on the I-Ak molecules (some of which were apparently identical to the conventional Ia.2, Ia.1 and Ia.19 specificities), or the I-Ek molecule (some being apparently analogous to the Ia.7 specificity) or on both I-Ak and I-Ek products. These mAB were tested in two different panels of human T and B lymphocytes. Panel (a) consisted of 28 Caucasian unrelated individuals, highly selected with regard to HLA-DR specificities, while panel (b) concerned 53 random HLA-A, B, C, DR typed individuals. The standard complement dependent lymphocytotoxicity microtechnique of histocompatibility workshop VIII was used throughout. All mAB were negative on resting T cells. Testing on B cells produced three patterns: 1) ten mAB did not react with any B cell tested; 2) four mAb reacted with all the panel cells; 3) sixteen mAb reacted with different sets of the panel indicating identification of polymorphic determinants. However, the strength of positivity obtained with a majority of single mAb varied considerably in the panel, suggesting identification of cross-reactive determinants. This necessitated the use of individual assignment criteria for each mAb. Following this procedure, 8 mAb were ascertained as reacting with HLA-DR supertypic determinants, 6 with associations to MT1, MT2, or both. Eight mAb reacted with HLA-DR subtypic determinants (more restricted than a classical DR allele). No mAb were ascertained, reacting exquisitely with acknowledged HLA-DR allelic specificities.

Alleles↗

The HLA-D system: at least two loci and four distinct phenotypic traits per haplotype. Introduction to component typing in families and population by primed lymphocyte typing.

Using a number of intrafamilial PLTs raised against identical HLA haplotypes it has been possible to construct a model in an informative family defining the HLA-D region as a genetic system. This system consists of at least two regions separated by a recombination between HLA-D and GLO. In relation to the site of recombination, a minimum of one centromeric and three telomeric components can be identified per haplotype. - Fourteen PLTs raised and defined within the family were subsequently tested in a Caucasian population (n = 84) and in 13 unrelated, complete families. - It is concluded that the hypothetical model proposed for the HLA-D regions as a genetic system of linked loci, coding at the cell surface for associated but distinct components (at least four per haplotype), allows for typing of the components of the HLA-D system of any given haplotype. Serological typing of HLA-D components should, in the near future, provide a more convenient way of establishing component phenotypes than the present use of primed lymphocyte typing reagents. Among the components isolated, some have a high association with the classic alleles defined either by homozygous typing cells or DR serology. Others form the basis of cross-reactivity but their presence does not interfere with standard typing. Others, however, seem by their mere presence to be responsible for false assignments. - The concept of HLA-D as a genetic system clarifies many of the inconsistencies observed with a one-locus system.

Chromosome Mapping↗

Expansion of human lymphocyte populations expressing specific immune reactivities. III. Specific colonies, either cytotoxic or proliferative, obtained from a population of responder cells primed in vitro. Preliminary immunogenetic analysis.

Human alloreactive cell lines were maintained in culture over prolonged periods of time using conditioned medium. Primed lymphocyte typing reactivity was observed in these T cell lines for only 1 mo, but these T cell lines have remained for more than 7 mo highly and specifically cytotoxic. Using as growth promoter an irradiated autologous feeder consisting of irradiated peripheral blood lymphocytes and the lectin leucoagglutinin, we have derived by limiting dilution cloning of in vitro primed allogeneic combinations, primary colonies (or primary clones) with monofunctional immune reactivities: either cytotoxic (the rarest observed) or PLT reactive (the majority of the colonies). Furthermore, each monofunctional primary colony when tested for PLT or CML reactivity on a panel of unrelated PBL, always showed a restricted specificity when compared to the original primed population. The PLT reactivity of each of the primary clones was short lasting in contrast to their growth potential. The CML reactivity of the primary clones, as for the T cell lines, was long lasting as was their growth potential.

Cells, Cultured↗

Clones of human cytotoxic T lymphocytes derived from an allosensitized individual: HLA specificity and cell surface markers.

By planned immunization of a volunteer, two stable (greater than or equal to 6 months), specific, alloreactive cytolytic T-cell clones have been established from his peripheral blood lymphocytes. One clone reacts with all serologically defined HLA-Cw3 cells from our panel, whereas the other defines a split within the serological HLA-B40 specificity. The two cytotoxic clones are SmIg-negative, E-rosette positive, EA and EAC rosette-negative, HLA-A, -B and -C- positive, and also HLA-DR- or 'Ia like'-positive. In addition, they present very similar patterns of iodinated cell surface molecules as analysed by sodium dodecylsulphate polyacrylamide gel electrophoresis (SDS-PAGE), contrasting with that of an EBV cell line derived from the same donor.

Adult↗