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Biomedical subjects

M Pierres

Publications and source records attributed to M Pierres.

At least 109 records · Page 6Linked to original sources

A new brain cell surface glycoprotein identified by monoclonal antibody.

Of 207 monoclonal antibodies produced against cultured mouse cerebellar cells, 16 reacted with cerebellar cell surfaces and 4 reacted with glycoproteins. One of them, called an anti-BSP-3 (Brain cell Surface Protein-3) defines a 48,000 molecular weight protein which can be iodinated at the surface of cultured cerebellar cells. Lectin-binding and sugar incorporation studies established the glycoprotein nature of the antigen. Astroglia (glial fibrillary acidic protein-positive cells) in primary cerebellar cultures were labelled intensely for this antigen by the indirect immunofluorescence method while neuronal cells and their processes were more weakly labelled. Fibronectin-positive cells were negative for BSP-3. In cerebellar sections using the immunoperoxidase method at both the optical and electron microscope levels, the difference in staining intensity between astrocytes and neuronal cells was not significant: in Purkinje cells and in the large neurones present in the deep cerebellar nuclei the immunoperoxidase percipitate was confined to the plasma, membrane while in both astrocytes and granule cells cytoplasmic labelling was also observed. Oligodendrocytes do not appear to react with the anti-BSP-3 monoclonal antibody; neither do endothelial or leptomeningeal cells. The availability of a monoclonal antibody produced by a stable hybridoma line will be a powerful tool in attempts to purify the BSP-3 antigen and to elucidate its function.

Animals↗

Characterization of an Lyt-1+ cytolytic T-cell clone specific for a polymorphic domain of the I-Ak molecule.

We have characterized a cytolytic T-cell clone, isolated from a A.TH anti-A.TL mixed lymphocyte culture, which recognized a private determinant of the I-Ak molecule. This specificity has been confirmed by inhibition of effector-target cell interaction by anti-I-Ak monoclonal antibody (mAb). Comparison of the inhibitory capacity of various mAb and the spatial arrangement of their epitopes (defined in previous studies by antibody-binding competition) indicated that the antigenic site recognized by this cytolytic T-cell clone was topologically related to one of the major polymorphic domains of the Ak molecule. This clone expressed the Thy-1.2+, Lyt-1.+, Lyt-1.2+low and I-As- cell surface phenotype. Testing of several rat mAb, screened for their ability to inhibit H-2K/D-specific cytolysis at the level of the effector cells, revealed that two anti-p94, 180 mAb but not various anti-Lyt-2 mAb inhibited the lytic function of this anti-I-Ak T-cell clone.

Animals↗

Molecular specificity of a monoclonal anti-Ik alloantibody identifying a highly conserved determinant on mouse I-A, I-E and human DR antigens.

We have investigated, using serological and biochemical assays, the specificity of an A.TH anti-A.TL-derived monoclonal antibody (mAb), designated 40.B, directed at a highly conserved antigenic determinant expressed on the majority of murine and human MHC class II antigens. In the mouse, mAb 40.B defines a new specificity expressed on the Ia products of the H-2 haplotypes K, d, b, v, r, p, u, j and w3. Analysis of its reactivity with H-2 recombinant strains and the results of the competitive binding inhibition of 125I-labeled mAb 40.B to B10.BR cells with I-Ak and I-Ek specific mAb suggested recognition of a shared Ia determinant expressed on both I-Ak and I-Ek molecules. This has been confirmed by sequential immunoprecipitation studies which demonstrated the specificity of mAb 40.B for the Ak beta Ak alpha, Ab beta Ab alpha, Ad beta Ad alpha, Ek beta Ek alpha, Es beta Ek beta and Ed beta Ed alpha dimers. In humans, this mAb bound to and immunoprecipitated HLA-D/DR molecules expressed on lymphoblastoid cell lines carrying the MT1 and MT2 supertypic specificities. The possible implications of these findings with regard to an evolutionary model of MHC class II antigens are discussed.

Animals↗

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↗

Lymphoid cell surface interaction structures detected using cytolysis-inhibiting monoclonal antibodies.

We screened monoclonal antibodies obtained by xenogeneic immunization for their capacity to inhibit T cell-mediated cytolysis. These antibodies fell into two classes according to the cell structures they recognized, of 30-35 K and 94-180 K apparent molecular weight, respectively. The main features of these structures and of their interaction with the corresponding antibodies were reviewed. The inhibition of cytolysis by these antibodies was shown to occur mainly at the effector cell level, at the recognition stage of cytolysis, and to depend on the nature of target cells, effector cells, and link between these cells. T cell functions other than cytolysis were also inhibited by some of these antibodies. We considered various possible mechanisms to account for the inhibition of cytolysis by these mAb. We favor an hypothesis based on inhibition by these mAb of lymphoid cell surface interaction structures. This hypothesis was discussed within the general framework of cell interaction structures in immunological and non-immunological experimental systems.

Animals↗

Idiotypic analysis of hybridoma antibodies to branched synthetic polymer (Tyr, Glu)-Ala-Lys: idiotypic relationship with antibodies to linear random polymer (Glu60, Ala30, Tyr10).

The expression of three anti-GAT idiotypes, CGAT, Gte, and GA-1, on 17 C57BL/10 and four C3H.SW hybridoma anti-(T,G)-A--L antibodies was analyzed. These hybridoma anti-(T,G)-A--L antibodies exhibited two patterns of fine antigen binding specificity. The majority of the hybridoma antibodies bound the (T,G)-A--L, GT, and GAT polymers but not the GA polymer, and were designated as GT-reactive hybridoma antibodies. A minor population of hybridoma anti(T,G)-A--L antibodies bound to (T,G)-A--L but not to GT, GAT, or GA, i.e., (T,G)-A--L-specific. A complete correlation between fine antigen binding pattern and the expression of CGAT idiotype was demonstrated. None of the 21 hybridoma anti-(T,G)-A--L antibodies expressed the GA-1 idiotype. All of the GT-reactive and none of the GT-nonreactive hybridoma anti-(%,G)-A--L antibodies expressed the CGAT idiotype. Furthermore, the Gte idiotype was found on the majority of CGAT+-bearing C57BL/10 hybridoma anti-(T,G)-A--L antibodies. These results indicate that C57BL/10 anti-(T,G)-A--L antibody repertoire can be grouped into a minimum of three families; i.e., CGAT+ Gte+, CGAT+ Gte-, and CGAT- Gte- families, with the CGAT+ Gte+ family as the major compartment. This is confirmed by the high percentage idiotype binding of serum anti-(T,G)-A--L antibodies with anti-CGAT idiotypic antisera. Finally, anti-idiotypic antisera made against CGAT+ hybridoma anti-GAT or anti-(T,G)-A--L antibodies crossreact extensively with other CGAT+ hybridoma anti-GAT and anti-(T,G)-A--L antibodies. However, additional experiments demonstrated that CGAT+ hybridoma anti-(T,G)-A--L antibodies also possess private idiotypes.

Animals↗

Drug transfer into lymphoblasts mediated by liposomes bound to distinct sites on H-2 encoded I-A, I-E, and K molecules.

Protein A from S. aureus was covalently coupled to small sonicated liposomes containing methotrexate (MTX) and carboxyfluorescein (CF). These liposomes were incubated with mitogen-stimulated CBA T or B cells preincubated with one of a panel of murine IgG2 monoclonal antibodies directed at distinct sites on H-2Kk, I-Ak, or I-Ek molecules. Liposomes became bound to the cells as a consequence of the interaction of protein A on the liposome and antibody on the cell. The number of bound liposomes was measured by fluorescence, and the endocytosis of liposomes was evaluated by the MTX-mediated reduction in radiolabeled deoxyuridine incorporation. T cells were sensitive to MTX in liposomes bound to all anti-H-2Kk antibodies tested, but B cells were essentially insensitive, even though they expressed more H-2Kk, bound more liposomes directed at this molecule, and were equally sensitive to free MTX. By contrast, B cells were sensitive to liposome-encapsulated MTX when liposomes were bound to any antibody directed at I-Ak. The situation was more complex with respect to I-Ek. Antibodies directed at one part of the molecule were quite effective at drug delivery, while antibodies directed at other, spatially separate domains were much less effective, even though the number of liposomes bound to these various determinants was the same. The results suggest differential regulation of the internalization of H-2K by T and B cells, and are compatible with the existence of functionally distinct I-E molecules.

Animals↗

Monoclonal antibody against cell surface glycoprotein of neurons.

A monoclonal antibody, named BSP-2, has been produced against glycoproteins extracted from neonatal mouse brain. Its reactivity with live cells established the surface location of the antigen. In primary cultures of dissociated cerebellar cells, the antibody bound to neuronal cell types, but not to astrocytes nor to fibroblasts. Immunoprecipitates prepared with the BSP-2 antibody contained a triplet of high-molecular weight glycoproteins with apparent molecular weights of 180,000, 140,000 and 120,000.

Animals↗

Clonal analysis of B- and T-cell responses to Ia antigens. I. Topology of epitope regions on I-Ak and I-Ek molecules analyzed with 35 monoclonal alloantibodies.

Thirty-five Iak-specific monoclonal alloantibodies, derived from hybridomas constructed by fusion between mouse myeloma and spleen cells from A.TH alloimmune mice (Is anti-Ik), have been used to estimate the allotypic polyporphism of the Ik-gene products. Cross-blocking studies using 17 mAb specific for the I-A molecule indicated that six determinants, which were associated with the conventional specificities Ia.2 and Ia.19, were organized in at least three distinct polymorphic areas of the I-Ak molecules. Similarly, another group of six determinants, which did not correspond to previously described conventional Ia specificities, were found to be topologically heterogeneous. By contrast, the five epitopes associated with the Ia. 1 specificity were clustered into a single region of this molecule. In addition the potentiation of binding observed between mAb specific for topologically distinct epitope regions of the I-Ak molecule, suggested that the latter may undergo conformational changes after binding of a given mAb. A similar analysis of 17 mAb specific for the I-Ek molecule indicated that specificity Ia. 7 of the E alpha chain (as defined in this series by eight mAb) was composed of three topologically distinct polymorphic areas, one of which is also spatially related to a complex cluster of eight new determinants of the I-Ek molecule. Finally, one mAb identified a so far undescribed shared determinant of the I-Ak and I-Ek molecules. The present results, which provide a new estimate of the allotypic polymorphism of the Iak antigens, are discussed with regard to their functional, biochemical, and evolutionary implications.

Animals↗

Biosynthetic incorporation of [75Se]selenomethionine: a new method for labelling lymphocyte membrane antigens.

A novel approach for radiolabelling lymphocyte membrane antigens is described. This technique is based on the use of the gamma-emitting amino acid analogue [75Se]selenomethionine. Human HLA-A, B, C and DR heavy and light chains and mouse Ia antigens were efficiently labelled by this technique and were precipitated with monoclonal antibodies. Approximately the same radioactivity was incorporated into the HLA-A, B, C chains whether [75Se]selenomethionine, [35S]methionine or [3H]leucine were used as precursors. Easily detectable as a gamma-emitter, [75Se]selenomethionine thus constitutes a useful biosynthetic label of lymphocyte surface antigens. The same method was used to label immunoglobulins produced by hybridomas and to determine the nature of the secreted light chains.

Animals↗

Idiotypic analysis of anti-GAT antibodies. VIII. Comparison of interstrain and allotype-associated idiotypic specificities.

A guinea pig anti-idiotypic antiserum made against pooled specifically purified A/J anti-GAT antibodies was characterized. This antiserum contains anti-idiotypic antibodies specific to interspecies, interstrain, and allotype-linked idiotypic determinants. These idiotypic determinants are associated with the combining sites of idiotypic antibodies that are induced by GT-related but not GA-related antigenic moieties. Genetic and strain distribution studies indicated that the shared allotype-linked idiotypic determinants are controlled by Igh-1e- or Igh-1b-linked genes. The interrelationships of the allotype-linked and interstrain CGAT idiotypic specificities are described using monoclonal anti-GAT hybridoma antibodies. Four of 7 hybridoma anti-GAT antibodies of C57BL/6 origin expressed a major fraction of the idiotypic specificities of A/J anti-GAT antibodies. These 4 hybridoma antibodies also carried the common interstrain idiotype, termed CGAT, but not all CGAT-bearing anti-GAT hybridoma antibodies expressed the allotype-linked idiotypic specificities. The Ig-1b-positive, F17-167.1 hybridoma anti-GAT antibody was used as a ligand to selectively identify the major allotype-linked idiotypic specificities, which were designated Gte idiotype.

Animals↗

Cross-reactions between mouse Ia and human HLA-D/DR antigens analyzed with monoclonal alloantibodies.

Two mouse monoclonal anti-I-E/Ck alloantibodies (H7-8.26 and H10-81.10) directed against 2 distinct determinants of the specificity Ia-7 and 1 anti-I-Ak alloantibody (H8-15.9) directed against a public determinant common to the I-A subregion products of the H-2k, H-2b, H-2d, H-2q, and H-2ja haplotypes identified cross-reactive determinants on lymphoid cells from various mammalian species, including rat, dog, pig, cow, hamster, and guinea pig. In man, these antibodies detected nonpolymorphic determinants of DR antigens on B cell-enriched peripheral blood lymphocytes from 50 unrelated individuals. These cross-reactive DR determinants were also detected on lymphoblastoid B cell lines, on PHA-activated peripheral T lymphocytes, and on allospecific cytolytic T cell clones, but not on various DR-negative human T leukemia cell lines. Two chains of 29,000 and 35,000 daltons m.w., corresponding to DR antigens, were precipitated by H7-8.26 and H8-15.9 antibodies from radiolabeled membrane extracts of Raji cells. Competitive binding experiments indicated that the 3 mouse anti-Iak antibodies identified 3 distinct cross-reactive determinants on human cells. The results indicate that: a) The cross-reactivity described between mouse I-E/C gene products (Ia-7) and human DR antigen(s) involves, in fact, several distinct and topologically distant determinants. b) At least 1 determinant cross-reacting with DR can be identified on I-Ak gene products. c) The intriguing genetic problem of mouse MHC allotypic determinant(s) being nonpolymorphic in man cannot be simply explained by the deletion of an I-E alpha chain in some strains of mice.

Absorption↗

Distinct epitopes of Ik gene products identified by monoclonal antibodies.

Analysis of reactivity of monoclonal anti-Iak alloantibodies, obtained by fusion between NS 1 myeloma and spleen cells from alloimmune A. TH mice, permitted the identification of 9 distinct determinants of the Ik gene products. Competitive binding experiments indicated that 2 private epitopes (defined by H8-109.13 and H8-138.4 antibodies) of the I-Ak product could be separated, thereby apparently splitting the Ia.2 specificity. A public determinant of the I-Ak molecule (identified by H8-15.9 antibody) was found expressed not only on the I-A products of the H-2b, H-2d, H-2ja, H-2p and H-2q murine haplotypes, but also on human HLA-DR antigens. Four determinants of the I-E/Ck antigen (defined by H7-8.26, H10-81.10, H10-93.2 and H8-86.2 antibodies) had a strain distribution analogues to the Ia.7 specificity. However, competitive binding experiments, and the cross-reactivity pattern with Ia-like antigens from other species (e.g. human HLA-DR antigens) indicated that these antibodies detected distinct determinants on the I-E/Ck molecule, thereby subdividing the broad Ia. 7 specificity. Two other determinants (defined by H9-14.8 and H9-15.4 antibodies) had a strain distribution that did not permit a precise assignment to a given Ia antigen, even though preliminary data suggested that they could detect separate determinants on the I-E/Ck product. All these monoclonal antibodies identified membrane antigens with the expected Ia tissue distribution pattern, and most of them could precipitate a molecule containing two chains of 28kD and 35kD, from mouse spleen cell lysates.

Animals↗

Idiotypic analysis of anti-GAT antibodies. VII. Common idiotype on hybridoma antibodies to poly(Glu60 Ala40)

A single DBA/2 mouse, immunized with L-glutamic acid60-L-alanine40 (GA), was used to produce hybridoma cell lines. Seven hybridoma anti-GA antibodies were obtained for idiotypic analyses. Two hybridoma anti-L-glutamic acid60-L-alanine30-L-tyrosine10 (GAT) antibodies, preferentially reactive to GA, were studied in parallel. Anti-idiotypic antisera to purified anti-GAT and anti-GA serum antibodies and to hybridoma anti-GA antibodies were analyzed by idiotype binding and inhibition of idiotype binding assays. Five of the nine hybridoma antibodies exhibited common GA-1 idiotypic specificities previously demonstrated on the majority of anti-GA antibodies of inbred mouse strains of differing immunoglobulin heavy chain linkage groups; these hybridoma antibodies also possessed private idiotypic determinants. Two GA-1 negative hybridoma anti-GA antibodies appeared identical by immunochemical criteria, arguing that somatic hybridization does not artifactually generate private idiotypic determinants. The results demonstrate that the common GA-1 idiotype system is associated with a family of nonidentical but idiotypically related antibody molecules present in a single DBA/2 mouse, and these antibodies are part of the "GA-1 idiotypic family".

Alanine↗