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C S David

Publications and source records attributed to C S David.

At least 145 records · Page 8Linked to original sources

Prevention of collagen induced arthritis in mice by treatment with an antibody directed against the T cell receptor alpha beta framework.

Collagen induced arthritis (CIA) is an animal model of inflammatory polyarthritis. Type II collagen is the major matrix protein of hyaline cartilage. Susceptibility to CIA is linked to the Major Histocompatibility Complex Class II genes but the presence of T cells expressing specific variable beta (V beta) chain of their T cell receptor (TCR) is also required. Pretreatment with the monoclonal antibody H57-597 directed against the TCR alpha beta framework prevented the onset of arthritis in the majority of animals. The depletion of the T cell population did not lead to any apparent health problems. These experiments demonstrate the important role of the alpha/beta T cell and its receptors in the CIA model. Further, anti-TCR alpha beta antibodies may be of value in the therapy of autoreactive disorders.

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Mouse T lymphocyte response to acetylcholine receptor determined by T cell receptor for antigen V beta gene products recognizing Mls-1a.

Mice of strain B6, but not AKR/J, respond to immunization with Torpedo acetylcholine receptor (AChR) by manifesting in vitro an Ag-specific T lymphocyte proliferative response. Our analysis of (AKR x B6)F1 mice reveals that the T cell unresponsiveness of AKR/J is inherited as a dominant trait, possibly associated with expression of the Mls-1a allele. Mice derived from backcrossing (AKR x B6)F1 x B6 were selected for H-2b homozygosity and were classified as Mls-1a or Mls-1b according to the relative numbers of peripheral blood T cells that expressed the TCR V beta 6 gene product. After challenge by injection with AChR in CFA, lymph node cells from mice classified as having less than 2% of V beta 6+ peripheral T cells had low responsiveness to AChR, whereas mice with greater than 7% V beta 6+ peripheral T cells had high T cell responsiveness to AChR. These results are consistent with the notion that regulation of the T cell repertoire by Mls loci may be a determinant of susceptibility to autoimmunity.

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Role of Mls-1 locus and clonal deletion of T cells in susceptibility to collagen-induced arthritis in mice.

The role of T cell-mediated and humoral immunity to type II collagen has been well documented in collagen-induced arthritis (CIA). Previous work from our laboratory has indicated that genomic deletions of TCR V beta genes may play a role in CIA resistance in mice. This indicated a selectivity of TCR usage by autoreactive T cells in CIA in mice. Certain strains of mice, although having a normal genomic V beta TCR repertoire, can show clonal deletion of peripheral T cells that bear specific V beta gene products in their TCR. These clonally deleted T cells are reactive with self-Ag such as minor lymphocyte stimulation (Mls) Ag. An Mls-congenic strain, BALB.D2.Mlsa, which differs only at the Mls-1 a locus from BALB/c (Mls-1b), was used to examine the effect of clonal deletion of Mls-1a-reactive T cells in CIA. These two strains were crossed to three CIA-susceptible strains, B10.RIII (H-2r, Mls-1b), DBA/1 (H-2q, Mls-1a), and B10.Q (H-2q, Mls-1b), and the crosses were injected with type II collagen. A significantly decreased incidence of arthritis was observed in the (BALB.D2.Mlsa x B10.Q)F1 hybrids, compared with (BALB/c x B10.Q)F1 hybrids, upon immunization with chick type II collagen. The BALB.D2.Mlsa cross mice also had significantly lower levels of antimouse collagen antibodies. Flow cytometric analysis confirmed the clonal deletion of Mls-1a-reactive V beta 8.1, V beta 6, V beta 7, and V beta 9 subsets in the (BALB.D2.Mlsa x B10.Q)F1 hybrids. The study of H-2q/d mice in (BALB.D2.Mlsa x B10.Q) x B10.Q back-crosses demonstrated a significant correlation between CIA resistance and Mls-1a locus. On the other hand, B10.RIII crosses showed only a modest decrease in CIA incidence in the presence of Mls-1a. As expected, all the DBA/1 crosses had an equal incidence of CIA, which was somewhat less than that seen in DBA/1 mice themselves. These studies point out that the Mls-1a locus could play a role in decreasing CIA incidence by clonal deletion of T cells bearing specific V beta TCR, which may be involved in the pathogenesis of CIA. The influence of the clonal deletion of T cells on CIA, and hence the usage of specific V beta TCR by autoreactive anti-type II collagen T cells, however, depends not only on the source of the type II collagen and the MHC class II molecules involved but also on other background genes in mice.

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Expression of human HLA-B27 transgene alters susceptibility to murine Theiler's virus-induced demyelination.

Infection of certain strains of mice with Theiler's murine encephalomyelitis virus results in persistence of virus and an immune-mediated primary demyelination in the central nervous system that resembles multiple sclerosis. Because susceptibility/resistance to demyelination in B10 congeneic mice maps strongly to class I MHC genes (D region) we tested whether expression of a human class I MHC gene (HLA-B27) would alter susceptibility to Theiler's murine encephalomyelitis virus-induced demyelination. Transgenic HLA-B27 mice were found to co-express human and endogenous mouse class I MHC genes by flow microfluorimetry analysis of PBL. In the absence of the human transgene, H-2stf, or v mice but not H-2b mice had chronic demyelination and persistence of virus at 45 days after infection. No difference in degree of demyelination, meningeal inflammation, or virus persistence was seen between transgenic HLA-B27 and nontransgenic littermate mice of H-2f or H-2v haplotype. In contrast, H-2s (HLA-B27+) mice showed a dramatic decrease in extent of demyelination and number of virus-Ag+ cells in the spinal cord compared with H-2s (HLA-B27-) littermate mice. In addition, none of the eight H-2s mice homozygous for HLA-B27 gene had spinal cord lesions even though infectious virus was isolated chronically from their central nervous system. Expression of HLA-B27 transgene did not interfere with the resistance to demyelination normally observed in B10 (H-2b) mice. These experiments demonstrate that expression of a human class I MHC gene can modulate a virus-induced demyelinating disease process in the mouse.

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Thymic deletion of V beta 11+, V beta 5+ T cells in H-2E negative, HLA-DQ beta+ single transgenic mice.

DQw6b transgenic mice have been generated by microinjecting a linearized cosmid clone containing 34-kb DQb genomic DNA, isolated from HLA-homozygous B cell line AKIBA (DR2, Dw12, DQw6), into embryos of (CBA x B10.M)F2 or (SWR x SJL)F2. Among 85 mice screened, eight mice were transgene-positive. The transgene in seven of eight founders was germline-transmitted. FACS analysis and immunohistochemical studies with DQ beta-specific mAb demonstrated that DQ beta molecules in association with mouse A alpha f molecules are expressed on peripheral mononuclear cells, spleen cells, and in thymic medulla. More interestingly, V beta 11-, V beta 5.1-, and V beta 5.2-bearing T cells, but not V beta 8.2-bearing T cells, were clonally deleted in the H-2E-negative but DQ beta+ progeny of two selected founders (260-23 and 258-10). The deletion was found to take place intrathymically during the transition stage from immature to mature thymocyte development. We postulate that although human DQ genes are more homologous to mouse H-2A genes, A alpha f/DQ beta hybrid molecules may possess the same self-peptide- (or superantigen)-presenting epitope as E alpha/E beta molecules critical for deletion of V beta 11-, V beta 5.1-, and V beta 5.2-bearing T cells in thymus. Our results also confirm the previous findings that accessory molecules on thymocytes such as CD4 may be involved in thymic selection, and further suggest that an interaction of mousE CD4 and mouse A alpha chain is required for the clonal deletion.

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Expression of HLA-B27 in transgenic mice is controlled by the H-2D gene(s).

The HLA-B27 transgene was introduced into mice of the B10 background with various H-2 haplotypes. High levels of B27 antigen were detected on the surface of peripheral-blood lymphocytes from mice homozygous for the H-2b, H-2f, H-2s, H-2p, H-2r and H-2k haplotypes. In contrast, cell-surface expression of B27 was decreased in mice homozygous for the H-2d, H-2q and H-2v haplotypes. Only minimal levels of B27 could be detected on cells from B10.RKDB (KkSkDdLb) mice, indicating that the H-2D region of the H-2d haplotype appears to interfere with B27 expression. To try to determine the specific area of the H-2D genes affecting B27 expression, the B27 transgene was introduced into B10.D2-dml and BALB/c-dm2 mice. Expression was normal in the dm2 animals which have only one functional gene, Dd, in the H-2D region. High levels of B27 expression were observed in the dml animals. These mice also have only one functional H-2D gene, but it is a hybrid gene formed by the fusion of the 5' part of the Dd gene and the 3' part of the Ld gene. Thus, low expression of B27 is controlled by gene(s) mapping between H-2D and H-2L.

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Human HLA-DQ beta chain presents minor lymphocyte stimulating locus gene products and clonally deletes TCR V beta 6+, V beta 8.1+ T cells in single transgenic mice.

Minor lymphocyte stimulating locus (Mls) gene products in association with mouse major histocompatibility complex (MHC) class II molecules are known to determine the repertoire of T-cell receptor (TCR) in mature T cells. In order to test whether human class II molecules can present mouse Mls, HLA-DQ beta transgenic mice were generated. The expression and function of the DQ beta transgene were studied in the progeny of one selected founder which was H-2f and H-2E negative. In these mice, DQ beta molecules pairing with mouse A alpha chain and invariant chain are expressed on the cell surface in a tissue-specific manner. When the DQ beta gene was bred into the Mls-1a strain DBA/1 (H-2q), T cells bearing V beta 6 and V beta 8.1 TCR were clonally deleted in the thymus of DQ beta+ transgenics but not in DQ beta-negative full sibs. Thus, the data presented here clearly demonstrate that the human MHC DQ beta chain can present Mls in the clonal deletion of T cells. Our results also suggest the requirement for an interaction between CD4 and class II molecules (alpha chain) for clonal deletion of T cells to occur.

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Genetic control of the immune response to Trichinella spiralis: recognition of muscle larval antigens.

Host antibody recognition of muscle larval (ML) antigens of Trichinella spiralis was examined. Monoclonal antibodies (MoAbs) to known host protective ML antigens have been produced in order to aid this examination. Eleven strains of mice with independent MHC haplotypes and seventeen T. spiralis infected human patients were all found to recognize the same three major antigens as the monoclonal antibodies; i.e., of mw 41, 46 and 55 kD. However all serum samples tested also recognized further ML antigens and this recognition varied with the individual or strain. This variation in antigen recognition also applied to the MoAb. Mutual inhibition studies demonstrated that even where the MoAb apparently recognized the same antigens, specific epitope recognition was disparate. Hence some of the major antigens recognized by hosts of T. spiralis, regardless of whether vaccinated or infected, correspond with antigens which have considerable host protective properties. There also appear to be a number of epitopes upon these antigens and the biological implications of this are discussed.

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Expression of HLA-B27 in transgenic mice is dependent on the mouse H-2D genes.

HLA-B27 transgenic mice in the context of various H-2 haplotypes were produced. A high expression of the HLA-B27 antigen was observed in mice homozygous for H-2b, H-2f, H-2s, H-2p, H-2r, and H-2k haplotypes. Mice of the H-2v haplotype expressed HLA-B27 at an intermediate level. Expression of HLA-B27 was minimal in mice of the H-2q and H-2d haplotypes. This was observed both on the B10 background and in DBA/2 or BALB/c mice. Only minimal expression of HLA-B27 could be detected in B10.PL (KuDd) or B10.RKDB (KkSkDdLb) mice, indicating that the low level of HLA-B27 expression maps to the H-2D gene or a very closely linked gene. Integration and transcription of the HLA-B27 gene does not appear to be different between high-expressing haplotypes and low-expressing haplotypes as determined by Southern and Northern blot analysis. However, expression of HLA-B27 on the cell surface correlated with the amount of HLA-B27 and beta 2M that could be immunoprecipitated with an anti-B27 antibody. Therefore, the association of the B27 heavy chain with endogenous beta 2M and subsequent expression on the cell surface are disrupted in mice with some class I H-2D genes. Possible mechanisms that might contribute to this defect in assembly, transport, and expression of class I molecules are discussed.

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The use of transfected fibroblasts and transgenic mice establishes that stimulation of T cells by the Mycoplasma arthritidis mitogen is mediated by E alpha.

Mycoplasma arthritidis produces a soluble protein which is active for murine and human lymphocytes when presented by Ia-bearing accessory cells. By using fibroblasts transfected in vitro with various class II Ag, we demonstrated that presentation of the M. arthritidis mitogen (MAM) to T cells was mediated by E alpha-containing molecules. We also showed that splenocytes from transgenic mice expressing E alpha heterozygously (B10.TRG E alpha+) or homozygously (B10.E alpha TG +/+) underwent a similar proliferation in response to MAM as compared with the failure of control B10.TRG E alpha- splenocytes to respond to MAM. Although splenocytes from inbred C3H and CBA mice exhibited much higher proliferative responses to MAM than did those from B10.TRG.E alpha+ or B10.E alpha TG +/+ mice, flow cytometry showed similar levels of E alpha expression. Furthermore, gamma-irradiated splenocytes from B10.TRG E alpha + mice presented MAM to T hybridoma cells with a similar efficacy as did splenocytes from C3H mice. The lesser response to MAM of lymphocytes from the E alpha transgenic mice as compared with those from C3H and B10.K mice was likewise not due to differential expression of their V beta TCR. We conclude that presentation of MAM to T cells is accomplished by E alpha-containing molecules. The studies also suggest that the conserved, nonpolymorphic regions of class II molecules may play an important role in host immune response to microbial products.

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Ek alpha transgene in B10 mice suppresses the development of myasthenia gravis.

Mice bearing the H-2b haplotype are susceptible to the development of experimental autoimmune myasthenia gravis (EAMG), induced by acetylcholine receptor (AChR) autoimmunity. One of the genes influencing EAMG susceptibility has been mapped to the Ab locus of the major histocompatibility complex, and the A beta chain has been implicated in the pathogenesis. Mice of the H-2b haplotype, including C57BL/10 (B10), have a genomic deletion of the E alpha gene and therefore fail to express the E molecule on their cell surface. To test the hypothesis that failure to express the cell surface E molecule in B10 mice contributes to EAMG pathogenesis, Ek alpha transgenic B10 mice expressing the E molecule were examined. Expression of the E molecule in Ek alpha transgenic B10 mice partially prevented the development of EAMG.

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In situ analysis of T cell subset composition in experimental autoimmune thyroiditis after adoptive transfer of activated spleen cells.

T cells from genetically susceptible mice developing experimental autoimmune thyroiditis (EAT) proliferate in response to restimulation with mouse thyroglobulin (MTg) in vitro. The in vitro-activated cells adoptively transfer EAT as well as differentiate into cells cytotoxic for syngeneic thyroid monolayers. To examine the kinetics of T cell subset infiltration and distribution in situ after adoptive transfer, we applied the avidin-biotin-peroxidase labeling technique to thyroid sections, utilizing rat monoclonal antibodies followed by a biotinylated rabbit anti-rat antibody. Female CBA donor mice were immunized with MTg and lipopolysaccharide. Their spleen cells were obtained 7 days later, cultured with MTg, and transferred into recipient mice. The thyroids were removed on Days 7, 10, and 14 after transfer and serially sectioned. The early phase of transferred EAT showed a higher percentage of L3T4+ cells compared to Lyt-2+ cells, yielding a ratio of 2.3 and total T cells of about 35%. By Day 10, both T cell subsets had increased to a total of about 56%. However, the relative increase was greater in the Lyt-2+ subset; the nearly doubled percentage was statistically significant, resulting in a downward shift in the subset ratio to 1.7. Little change in the in situ distribution was seen on Day 14. The percentages of F4/80+ (macrophage) population in lesions examined on Days 10 and 14 were fairly constant and B cell involvement was minimal. These findings illustrate the pathogenic role of both T cell subsets in adoptively transferred EAT and the time-dependent changes in their relative proportions leading to thyroid gland destruction.

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