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Biomedical subjects

D Kabelitz

Publications and source records attributed to D Kabelitz.

At least 55 records · Page 3Linked to original sources

SLP-76 binding to p56lck: a role for SLP-76 in CD4-induced desensitization of the TCR/CD3 signaling complex.

Nonreceptor protein tyrosine kinases and associated substrates play a pivotal role in Ag receptor stimulation of resting cells and in the initiation of activation-induced cell death (AICD) of preactivated T cells. CD4-associated p56lck has been implicated not only in the activation of primary T cells, but also in the inhibition of T cell responses. We have previously shown that CD4+ T cell clones can be rescued from AICD when surface CD4 is engaged before the TCR stimulus. In this study, we show that prevention of AICD is associated with a CD4-dependent inhibition of TCR-triggered tyrosine phosphorylation of the Src homology 2 domain-containing leukocyte protein of 76 kDa (SLP-76) and Vav. We provide evidence for a SLP-76 interaction with Src homology 3 domains of p56lck and identify amino acids 185-194 of SLP-76 as relevant docking site. In view of the multiple functions of p56lck and SLP-76/Vav in the initiation of TCR/CD3/CD4 signaling, we propose a model for the CD4-dependent inhibition of TCR signaling and AICD of preactivated T cells. Our data suggest that preformed activation complexes of adapter proteins and enzymes in the vicinity of the CD4/p56lck complex are no longer available for the TCR signal when CD4 receptors are engaged before TCR stimulation.

Adaptor Proteins, Signal Transducing↗

Potency testing of anti-lymphocyte globulins: in vitro alternatives for the monkey skin graft assay.

Anti-lymphocyte globulins (ALG) are immunosuppressive agents of animal origin currently used in clinical organ transplantation and for the treatment of severe aplastic anaemia. The potency of each batch is tested in vivo using primates as recipients for allogeneic skin grafts. The two in vitro methods commonly used are (i) a cytotoxic assay and (ii) the rosette inhibition assay, both of which are evaluated by microscopy. In addition to animal welfare aspects, these methods require considerable experience, are difficult to validate, and the information as to the biological potency of the sera is questionable. The aim of our study is a better characterization of the biological properties of ALG in order to subsequently define an in vitro alternative for the potency test in monkeys. Several antibody specificities directed against functional molecules on T-cells, B-cells, NK-cells, macrophages as well as non-lineage specificities can be identified in competition assays with monoclonal antibodies. The cytotoxic capacity of ALG in the presence or absence of complement as well as DNA-fragmentation characteristic for apoptosis can be analysed by flow cytometry using propidiumiodide- (PI) incorporation. Immunoprecipitation of cell lysate with ALG and subsequent incubation with radioactive ATP (kinase-assay) shows specific bands which seem to be identical between different batches of one product.

Animal Testing Alternatives↗

Monocyte-dependent death of freshly isolated T lymphocytes: induction by phorbolester and mitogens and differential effects of catalase.

Resting T cells are resistant to anti-Fas (CD95) mAb-mediated apoptosis but undergo apoptosis when triggered by anti-CD3 mAb or phorbolester PMA in the presence of PMA-activated monocytes. In this study, PMA, as well as the mitogens PHA and Con A, was found to induce death of resting T cells in the presence of autologous or allogeneic monocytes, while PWM was ineffective. Although several established monocytic and myelocytic cell lines were potent accessory cells for the mitogen-induced expansion of T lymphocytes, they all failed to replace plastic-adherent monocytes in the induction of monocyte-dependent cell death (MDCD) by PMA or PHA. CD45RA-positive cord blood T cells were as susceptible as peripheral blood T cells from adult donors to PMA-stimulated induction of MDCD. Using optimal concentrations of phorbolester, MDCD was inhibited neither by Fas-Fc fusion protein or neutralizing anti-Fas mAb, nor by inhibitors of IL-1beta-converting enzyme (ICE)-like proteases. In striking contrast, the H2O2 scavenger catalase completely prevented the PMA-stimulated T cell death, thereby revealing a potent mitogenic activity of PMA for human T cells in the presence of monocytes. Taken together, our results demonstrate that the accessory cell activity of monocytes/macrophages can be separated into "T cell death" and "T cell expansion" costimulatory functions, of which only the latter is mediated by established cell lines. Moreover, our results point to a pivotal role of reactive oxygen intermediates in the execution of MDCD triggered by PMA.

Adult↗

Apoptosis, graft rejection, and transplantation tolerance.

Transplantation tolerance can be achieved through several mechanisms, including the action of suppressor cells, the induction of anergy, or the deletion of graft-reactive donor T cells. In this article, the possible involvement of programmed cell death (apoptosis) in allograft rejection and transplantation tolerance is discussed. The recent characterization of members of the tumor necrosis factor-alpha gene family has identified ligands (Fas ligand and TRAIL) and corresponding death receptors (DR). In rejected organ transplants, apoptotic cells are frequently encountered. Conversely, high-level expression of Fas ligand on the allograft correlates with graft acceptance in some models of organ transplantation. Furthermore, some of the immunosuppressive drugs currently in clinical use might exert their activity at least in part through effects on apoptotic pathways. From the available data, it can be inferred that apoptosis contributes to the outcome after organ transplantation, being involved both in graft rejection and in transplantation tolerance.

Animals↗

Mechanism of gamma sigma T-cell-mediated inhibition of stem cell differentiation in vitro: possible relevance for myelosuppression in HIV-infected individuals.

We investigated whether gamma delta T cells contribute to the suppression of myelopoiesis in HIV infection. Freshly isolated gamma delta T cells from HIV seropositive patients suppressed CFU-GM growth in vitro. Preactivation of gamma delta T cells with IL-2 and/or IL-15 further reduced the number of CFU-GM. Natural killer cells and to a lower extent CD4+ and CD8+ cells also inhibited CFU-GM growth. In contrast to gamma delta T cells, this effect was not dependent on IL-15 or IL-2 preactivation. Moreover, no enhanced inhibitory effect of CD56+ and CD4+ cells was observed in HIV+ subjects compared to HIV- donors. The myelosuppressive effect of supernatants of gamma delta T cells could be inhibited by antibodies against IFN-gamma or TNF-alpha. Accordingly, we found increased numbers of TNF-alpha or IFN-gamma-secreting CD8+ gamma delta T cells in HIV+ patients. We conclude that the increased fraction of activated gamma delta T cells producing myelosuppressive cytokines might contribute to the dyshematopoiesis frequently observed in HIV-infected individuals.

Cell Differentiation↗

Differential expression of bcl-2 and susceptibility to programmed cell death in lymphocytes of HIV-1-infected individuals.

The bcl-2 protooncogene encodes an inner mitochondrial membrane protein that blocks programmed cell death. There is now increasing evidence that regulation of bcl-2 expression is a determinant of life or death in normal lymphocytes. In this study, we examined bcl-2 expression in lymphocytes from human immunodeficiency virus type 1 (HIV-1)-infected and healthy subjects by flow cytometry. bcl-2 expression was detected in more than 97% of peripheral blood lymphocytes in both healthy and HIV-infected individuals. It was consistently observed that CD4+ lymphocytes from HIV-1-infected individuals with less than 200 CD4+ cells/microliter expressed significantly less bcl-2 than healthy controls. In contrast, bcl-2 expression in CD8+ lymphocytes of these patients was significantly enhanced. No significant alteration of bcl-2 expression was found when lymphocytes of healthy individuals were polyclonally activated in the presence of various regulatory cytokines. Cells undergoing apoptosis showed significantly lower bcl-2 expression than viable cells. Staining of apoptotic cells revealed that lymphocytes from HIV-1-infected subjects were characterized by an increased susceptibility to programmed cell death which was not restricted to a particular lymphocyte subset. Despite significantly different bcl-2 expression in CD4+ and CD8+ lymphocytes of HIV-1-infected individuals with less than 200 CD4+ cells/microliter, no difference could be observed concerning their susceptibility to undergo apoptosis. Therefore, we conclude that sensitivity or resistance to in vitro induction of apoptosis does not directly correlate with bcl-2 expression.

Adult↗

Increase in Vdelta1+ gammadelta T cells in the peripheral blood and bone marrow as a selective feature of HIV-1 but not other virus infections.

Dysregulation of T-cell receptor (TCR) alphabeta bearing lymphocytes and an increase in Vdelta1+ gammadelta T cells are typical features of HIV-1 infection. However, the role of gammadelta T cells remains unclear. Therefore, peripheral blood mononuclear cells (PBMC) of 103 HIV-1-infected patients were investigated with respect to expression of Vdelta1. These results were compared to the Vdelta1 expression of bone marrow mononuclear cells (BMMC). In contrast to healthy controls, Vdelta1+ cells dominated among both PBMC and BMMC in HIV-1-infected patients. Analysis of the coexpression of CD25, CD8, HLA-DR and CD45RO revealed a high prevalence of Vdelta1/CD45RO and Vdelta1/HLA-DR double-positive PBMC only in HIV-1-infected patients but not in healthy donors. Furthermore, analysis of the gammadelta TCR repertoire in patients infected with hepatitis B virus, hepatitis C virus, herpes simplex virus (HSV)-1 and HSV-2 showed that the selective enhancement of Vdelta1+ cells was restricted to HIV infection and not observed in other virus diseases. Our data provide further support for the involvement of gammadelta T cells in immunosuppression and progression of HIV infection.

Adult↗

Synovial fibroblasts as target cells for staphylococcal enterotoxin-induced T-cell cytotoxicity.

Rheumatoid arthritis (RA) is a chronic autoimmune disease of unknown aetiology. Recently, superantigens have been implied in the pathogenesis of RA. Superantigens activate a large fraction of T cells leading to the production of cytokines and proliferation. In addition, superantigens direct cellular cytotoxicity towards major histocompatibility complex (MHC) class II-expressing cells. There is now increasing evidence that cytotoxic T cells may be involved in the pathogenesis of RA. In the inflamed synovia class II-positive synovial fibroblasts (SFC) are found. In the present study it was tested whether MHC class II-positive SFC serve as target cells for superantigen-induced cellular cytotoxicity. SFC were stimulated with interferon-gamma to express class II antigens, then they were cultivated in the presence of CD4-positive T cells with or without staphylococcal enterotoxins (SE). Cytotoxicity of T cells was measured as release of lactate dehydrogenase from SFC. Specific cytotoxicity was only found in the presence of class II-positive SFC depending on the dose of SE. Maximum lysis was seen after 20 hr. T-cell cytotoxicity was inhibited by antibodies to MHC class II antigens. The data suggest that class II-positive SFC not only function as accessory cells for SE-mediated T-cell proliferation and interleukin-2 production but may also be the targets of superantigen-mediated cellular cytotoxicity.

Antibodies, Monoclonal↗

Analysis of the TCR Vgamma repertoire in healthy donors and HIV-1-infected individuals.

During the course of infection with HIV-1, striking alterations in the subset distribution of peripheral blood gammadelta T cells are observed. While TCR Vdelta2 expression dominates among peripheral blood gammadelta T cells in healthy adults, there is a clear preponderance of Vdelta1 cells in HIV-1-infected persons. In this study, we present the first flow cytometry (FCM) analysis of the complete TCR Vgamma gene repertoire in HIV-1-infected individuals using a panel of mAb against all expressed Vgamma genes. The quantitative analysis of TCR Vgamma transcripts after amplification of cDNA by inverse PCR suggested that Vgamma5 usage is increased in HIV-1+ donors. This was confirmed by FCM with a new anti-Vgamma5 mAb. In addition, all members of the TCR VgammaI gene family (i.e. Vgamma2, 3, 4, 5 and 8) were expressed on significantly higher percentages of gammadelta T cells in HIV+ as compared to HIV- donors, whereas VgammaII (Vgamma9) expression was drastically reduced. No preferential association of the expanded Vdelta1+ cells with a particular Vgamma gene was observed in HIV-1 + donors. These results indicate that the increase in Vgamma1+ cells during HIV-1 infection occurs independently of the Vgamma gene usage and support the hypothesis that a Vdelta1-selective ligand might be involved.

Adult↗

Ligation of cell surface CD4 inhibits activation-induced death of human T lymphocytes at the level of Fas ligand expression.

Cross-linking of cell surface CD4 molecules by anti-CD4 mAb or HIV-1 gp120/anti-gp120 Ab primes resting T lymphocytes for activation-induced cell death (AICD) triggered via the CD3/TCR complex. In striking contrast, we demonstrate here that preincubation of activated human CD4+ T cells with anti-CD4 mAb consistently inhibited AICD triggered via anti-CD3 mAb or Staphylococcus aureus enterotoxin A superantigen. Inhibition of AICD of CD4+ T cell clones was also observed with F(ab')2, but not with Fab, of anti-CD4 mAb. Moreover, soluble HIV-1 gp120, but not rIL-16, inhibited AICD stimulated by S. aureus enterotoxin A. In susceptible clones, CD4 ligation prevented the up-regulation of Fas ligand mRNA and cell surface expression in response to anti-CD3 mAb or superantigen stimulation. CD3/TCR-dependent protein tyrosine phosphorylation and cytokine production were also prevented by preceding CD4 ligation. The inhibition of AICD due to the prevention of Fas ligand upregulation reveals a novel immunoregulatory consequence of CD4 ligation that might play a role in HIV infection and in the therapeutic application of anti-CD4 mAb.

Antibodies↗

Activation-induced T cell death: resistance or susceptibility correlate with cell surface fas ligand expression and T helper phenotype.

Activated T cells undergo apoptosis when the Fas-antigen (Apo-1, CD95) is ligated by Fas ligand molecules (FasL) or agonistic anti-Fas antibodies. Restimulation of T lymphocytes via the TCR/CD3 complex induces activation-induced cell death (AICD). AICD and Fas-induced cell death are causally related since TCR-induced AICD at least in part depends on Fas/FasL interactions. Thus, restimulation of T cells leads to FasL gene transcription and surface expression. Membrane-bound or secreted FasL molecules then bind to Fas receptors on the same cell or on a neighbor cell to trigger the death signaling cascade. We have compared Fas-mediated apoptosis and AICD in a panel of human T cell clones. While all clones were killed by anti-Fas mAb, several clones were resistant to AICD triggered by anti-TCR/CD3 mAb or superantigen. The pattern of TCR-induced protein tyrosine phosphorylation was comparable in AICD-resistant and -susceptible clones, as was the induction of FasL mRNA. However, significant differences were observed at the level of FasL surface expression which was induced in AICD-susceptible but not in AICD-resistant clones. Cytokine profiles of CD3-stimulated clone cells support the recent observations that AICD sensitivity is restricted to the Th1 subset. However, AICD-resistance is not only associated with the classical Th2 phenotype.

Apoptosis↗

TCR-delta gene rearrangement and selection during fetal thymocyte development.

TCR delta-chain gene rearrangements were analyzed at different stages of thymic ontogeny. The VDJ delta junctional sequences of the dominantly expressed TCR delta-chain V7 subfamily are highly conserved in fetal and neonatal thymocytes. They are equally conserved in C delta-targeted mice lacking cell surface expression of gamma delta receptors, indicating evolutionary selection acting at the level of DNA rearrangement. Yet, in C delta-mutant mice, the frequency of in-frame transcripts is reduced to 61%, from 88% in wild-type mice, suggesting cellular selection of this DV7-overexpressing gamma delta thymocyte subset. In contrast, in genomic DNA rearrangements, no difference was found in the frequency of productive rearrangements between mutant (26%) and wild-type mice (31%). This in-frame rate, characteristic of random rearrangements, indicates that positive selection is not required for thymic maturation of gamma delta T cells. The results are discussed with regard to models of alpha beta/gamma delta lineage commitment.

Animals↗

Activation of human gamma delta T cells by Mycobacterium tuberculosis and Daudi lymphoma cells: differential regulatory effect of IL-10 and IL-12.

Peripheral blood V gamma 9/V delta 2 T cells proliferate vigorously in response to heat-killed Mycobacterium tuberculosis (Mtb) and Daudi Burkitt's lymphoma cells. We have analyzed the respective roles of IL-10 and IL-12 in gamma delta T cell activation, using the selective expansion of V gamma 9 cells in Mtb- or Daudi-stimulated PBMC as a readout. IL-10 inhibited in a dose-dependent fashion the V gamma 9 responsiveness to Mtb. In contrast, IL-10 did not impair reactivity toward Daudi cells, even when added at 10 ng/ml. The inhibitory action of IL-10 could be overcome by the exogenous supply of IL-2 or IL-12. Blockade of endogenous IL-10 by neutralizing mAb increased responsiveness to Mtb but not to Daudi cells. Low concentrations of exogenous IL-12 increased the V gamma 9 responsiveness to Mtb in 6 of 11 healthy donors. In contrast, IL-12 inhibited V gamma 9 cell expansion in response to Daudi stimulation in all of the tested individuals. Neutralizing anti-IL-12 Ab significantly suppressed V gamma 9 responsiveness to Mtb in IL-12 nonresponders but only slightly inhibited the latter responsiveness in IL-12 responders. The effect of anti-IL-12 Ab correlated with the level of Mtb-stimulated endogenous IL-12 production. In purified gamma delta T cells, IL-12 synergized with IL-2 to stimulate cellular expansion in response to Daudi cells. This effect was reduced when T cell-depleted APC were added back. Finally, neutralization of endogenous IFN-gamma by Ab abrogated V gamma 9 cell responsiveness to Mtb but exerted only a minor inhibition of the reactivity toward Daudi cells. Taken together, these results reveal significant differences in the cytokine requirement of gamma delta T cell activation by Mtb or Daudi lymphoma cells, respectively.

Burkitt Lymphoma↗

Antigen-induced death of T-lymphocytes.

Resting mature T-lymphocytes are activated when they are triggered via their antigen-specific T-cell receptor (TCR) molecule or the associated CD3 antigen. In contrast, preactivated T-cells can undergo activation-induced cell death (AICD) in response to the same signals. Stimulation of activated T-cells upregulates the expression of the Fas-ligand, and the interaction of Fas-ligand with the corresponding Fas receptor triggers an apoptosis program that culminates in cellular suicide usually associated with the fragmentation of DNA into oligonucleosomal bands. Molecular evidence indicates that proteases related to interleukin-1-beta converting enzyme play an essential role in the execution of cell death. AICD of mature T-lymphocytes can be efficiently triggered by monoclonal antibodies against the CD3/TCR complex, or by superantigens such as bacterial enterotoxins. Although it is more difficult to induce AICD by conventional peptide antigens, it is now clear that antigen-induced AICD is a powerful means of eliminating antigen-reactive T-cells. Therefore, AICD contributes to the regulation (i.e., termination) of cellular immune responses. In addition, AICD might play a role in the establishment of peripheral immune tolerance. Increased knowledge of the molecular mechanisms of AICD opens new immunotherapeutical perspectives for the treatment of certain autoimmune diseases, and will have implications in other areas such as transplantation medicine.

Animals↗