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Induction of human complement activation without cytolysis by mouse monoclonal antibodies to human leukocyte antigens.

Ten monoclonal antibodies to human leukocyte subsets that had previously been shown to lyse their respective target cells in the presence of rabbit serum as complement source were evaluated for their cytolytic capacity with human complement. Four of the ten were lytic with human complement. All were of IgM type. Antibodies were also evaluated for their capacity to induce C3 binding to target cells. With this method we could demonstrate that, indeed, 3 of the 6 noncytolytic antibodies had the capacity to initiate the human complement activation process and to induce C3 binding. Two of these 3 antibodies were of IgM class (VIT3 and VIM13), one of IgG3 (562). From the practical point of view the most interesting of these 3 antibodies is the nonmitogenic anti-CD3 pan-T cell antibody VIT3. Therefore, this antibody was analyzed in more detail. VIT3 antibody concentrations needed to induce detectable C3 binding to human T cells are very low (down to 1 ng VIT3/ml). Human serum as complement source can also be considerably (100X) diluted before C3 binding becomes undetectable. Activation of C3 is a prerequesite for VIT3-induced C3 binding, and bound C3 seems to lack the C3a fragment. Bound C3, in contrast to the quickly occuring antigenic modulation of the CD3 complex and the simultaneous disappearance of the antibody coat, remains expressed also after prolonged incubation at 37 degrees C. C3 fragments bound to T cells after activation with VIT3 are also recognized by cells bearing C3 receptors of types CR1 and CR2.

Antibodies, Monoclonal↗

New immunosuppressive strategies.

Discovery of novel biological and pharmaceutical agents directed against discrete molecular targets in the lympnocyte activation sequence has enabled the effective control of graft rejection by the use of combinatorial immunosuppressive therapy. Chimeric and humanized monoclonal antibodies against T-cell receptor CD3 complex chains or the IL-2 receptor block T-cell function without inducing activation, and do not cause the cytokine release syndrome of first generation products. Biological blockade of co-stimulatory molecules including CD40L and CD28 produces immunological allograft unresponsiveness in primates, though this effect is not yet proven in humans. Heterogeneity in clinical response to pharmaceutical agents is often explained by pharmacokinetic factors of absorption, metabolism and elimination. The use of microemulsion technology has increased the absorption and efficacy of cyclosporine in all organ transplants, so that there is little difference in efficacy between this agent and tacrolimus. Mycophenolate mofetil is not maximally effective alone, but significantly reduces the relative risk of acute rejection in combination with an immunophilin binding agent. It is also effective when introduced at the time of rejection. Whether it can replace other agents for maintenance immunosuppression is now under investigation. Sirolimus, the latest pharmaceutical agent to complete phase III trials, acts to inhibit IL-2 driven lymphocyte proliferation and reduces the risk of acute rejection to below 20%. Multiple pharmacokinetic interactions occur within and between these agents, so that pharmacokinetic monitoring is increasingly important. At present there are few tools to detect pharmacodynamic interactions, although reporter gene constructs and intracellular cytokine labeling offer exciting possibilities for biological monitoring. Despite these advances, none of these interventions confers demonstrable long-term benefit in graft survival or function. Acute rejection can not therefore be assumed to be a simple surrogate for chronic injury, and research must be re-focused to determine the relevant targets for long-term immunosuppression.

Adjuvants, Immunologic↗

Cell growth and gene rearrangement signals during the development of T lymphocytes within the thymus.

The thymus provides signals that control the proliferation and differentiation of T lymphocytes and select the repertoire of T-cell specificities. Antibodies to CD3 molecules inhibit full rearrangement of T-cell receptor beta chain genes in organ cultures of early embryo mouse thymus. Whether this effect is mediated through gamma delta CD3 expressing cells, which are present in small numbers at this stage, or through low amounts of CD3 on alpha beta precursor cells is unclear. A requirement for special gene rearrangement signals within the thymus is supported also by the observations that growth factors such as IL-2 and IL-4, although stimulating proliferation of precursor cells removed from the thymus, do not induce full T-cell receptor gene rearrangements. Recent studies show that newly formed thymic lymphocytes expressing alpha beta CD3 receptors are targets for negative selection (deletion) as a means of removing autoreactive cells. Signalling to immature thymocytes via the alpha beta CD3 complex induces the activation of endogenous endonucleases that cleave DNA into oligonucleosomal fragments. We suggest that the activation of this mechanism is the means by which autoreactive cells are removed.

Animals↗

Association of simian immunodeficiency virus Nef with the T-cell receptor (TCR) zeta chain leads to TCR down-modulation.

The Nef protein of simian immunodeficiency virus (SIV) is dispensable for replication in established T-cell lines but essential for high level virus replication in the adult host, though the mechanism by which Nef contributes to this has remained unclear. We demonstrate here that SIV Nef binds to the zeta chain of the T-cell receptor (TCR). SIV Nef proteins that interact with TCR zeta in a yeast two-hybrid system also reduce T-cell surface expression levels of TCR alphabeta, CD3 and CD4. These findings are the first demonstration that Nef can bind directly to a component of the TCR-CD3 complex and modulate its surface expression.

Animals↗

Phenotype and natural killer cell sensitivity of a radiation-induced acute T-cell leukaemia (Roser leukaemia) in PVG rats.

A radiation-induced T-cell leukaemia [Roser leukaemia (RL)] in the rat was conditioned for growth in vitro by repeated in vivo-in vitro passages. This in vitro cell line, termed RL-T, maintained its leukaemia-inducing property when transferred to syngeneic PVG rats. It expresses several T-cell markers and the T-cell alpha/beta receptor-CD3 complex. RL-T, furthermore, expresses major histocompatibility complex (MHC) I antigens, both classical (RT1.A) and nonclassical (RT1.C), which makes it susceptible to killing by alloreactive natural killer cells in vitro.

Animals↗

Specific depletion of mature T lymphocytes from human bone marrow.

An effective method for specific depletion of mature T lymphocytes from human bone marrow mononuclear cells (BMMC) with preservation of prethymic T cells and natural killer (NK) cells is presented. The BMMC were incubated with F101.01, a monoclonal antibody recognizing an epitope of the T-cell receptor-CD3 complex, and subsequently with immunomagnetic beads. Flow cytometric analysis demonstrated that mature T cells were efficiently depleted and that NK cells and prethymic T cells were preserved in the BMMC. Furthermore, T cell-mediated immune reaction as measured by thymidine incorporation after stimulation with phytohaemagglutinin was abolished, whereas NK activity as measured by 51Cr release using K562 as target cells was preserved. Recovery of colony-forming units of granulocyte-macrophages was 60-70%.

Bone Marrow↗

Heterogeneity in the mitogenic response of peripheral blood mononuclear cells to a pan T monoclonal antibody.

Peripheral blood mononuclear cells (PBMC) from 80 normal donors were studied for their capacity to proliferate in response to Pan T2, an IgG1 monoclonal antibody (MoAb), that recognizes the CD3 complex. Forty percent of this population, regardless of sex or age, were found to be non-responders. However, the binding of MoAb Pan T2 to T cells as studied by indirect immunofluorescence was positive in all the donors. The addition of IL 1 or IL 2 to Pan T2-stimulated non-responder lymphocytes did not activate T cell proliferation, while the addition of responder monocytes restored the proliferation capacity in non-responder PBMC. The data indicate the existence of a heterogeneous responsiveness among normal individuals to a mitogenic IgG1 MoAb, and are in agreement with reports obtained using other anti-T3 MoAbs of IgG1 isotype, i.e. UCHT1, Leu4 and WT31. This defect is reported to be a function of monocytes, related to a polymorphism of Fc receptors for mouse IgG1 on human monocytic cells.

Antibodies, Monoclonal↗

Immunological unresponsiveness and apoptotic cell death of T cells in measles virus infection.

The phenotypic alterations associated with T cells during measles virus infection have been demonstrated and an attempt has been made to show programmed cell death (PCD) of T cells activated in vivo. During the acute phase of illness, activated T cells increased rapidly. Memory T cells (CD45RO+), especially CD8+ memory T cells also tend to increase. During the recovery phase, CD8+ T cells declined rapidly, and naive (CD45RA+) T cells increased in numbers. The anti-CD3 monoclonal antibody-induced expression of interleukin-2 receptor (CD25) was suppressed. However, the addition of phorbol 12-myristate 13-acetate (PMA) caused the significant recovery of CD25 expression. In addition, PCD of activated T cells from measles patients was induced in culture. After triggering of the T cell receptor-CD3 complex, cells became more susceptible to PCD. Interestingly, the addition of PMA could inhibit PCD of activated T cells. Taken together, these data suggest unresponsiveness and activation-induced cell death of T cells during the primary response to measles virus antigens, depending on the activation status of protein kinase C.

Apoptosis↗

Down-regulation of cytokine expression in murine lymphocytes by PACAP and VIP.

Neuropeptides, such as VIP and PACAP, released or produced in the microenvironment of the primary and secondary lymphoid organs, could affect a variety of immune responses through the regulation of cytokine expression. VIP has been previously shown to inhibit IL-2, IL-4, and IL-10 production in murine lymphocytes stimulated through the TCR-associated CD3 complex. This study shows that, similar to VIP, PACAP-38 inhibits IL-2 production in T lymphocytes. Comparisons with forskolin, a known cAMP inducer, suggest that the increase in intracellular cAMP represents at least one of the transduction pathways involved in IL-2 inhibition, especially in the higher range of neuropeptide concentration. Studies of the detailed molecular mechanisms involved in the regulation of IL-2 expression indicate that reduction of de novo transcription and destabilization of the message contribute to the reduction of steady-state IL-2 mRNA levels following VIP treatment. Examination of several IL-2 transcriptional factors indicates that only NFAT is down-regulated by VIP. Neuropeptides, such as VIP and PACAP, which specifically modulate the expression of various cytokines, could play an important role in the intricate cytokine network controlling local immune responses.

Animals↗

Extensive junctional diversity of rearranged human T cell receptor delta genes.

The human T cell receptor delta (TCR delta) gene encodes one component of the TCR gamma delta-CD3 complex found on subsets of peripheral blood and thymic T cells. Human TCR delta diversity was estimated by characterizing rearrangements in TCR gamma delta cell lines and determining the structures of complementary DNA clones representing functional and nonfunctional transcripts in these cell lines. One V delta segment and one J delta segment were identified in all functional transcripts, although a distinct J delta segment was identified in a truncated transcript. Further, one D delta element was identified, and evidence for the use of an additional D delta element was obtained. Thus human TCR delta genes appear to use a limited number of germline elements. However, the apparent use of two D delta elements in tandem coupled with imprecise joining and extensive incorporation of N nucleotides generates unprecedented variability in the junctional region.

Amino Acid Sequence↗

Reactivity of mouse T-cell hybridomas expressing human Vbeta gene segments with staphylococcal and streptococcal superantigens.

A panel of 15 mouse T-cell hybridomas, each expressing a different human Vbeta gene segment (hVbeta) in an otherwise mouse T-cell receptor (i.e., mouse alpha chain and CD3 complex), was constructed by transfection of hVbeta/mouse Cbeta chimeric T-cell receptor (TCR)-beta genes into a mouse T-cell hybridoma recipient lacking the endogenous TCR-beta chain. Several qualities that are conferred by the hVbeta chain of the TCR are retained in the chimeric human-mouse TCR complex: a large panel of hVbeta-specific antibodies specifically stained the hVbeta expressed by the mouse T-cell hybridomas. Moreover, hVbeta-transfected mouse cells could readily produce interleukin 2 when stimulated by superantigens presented by antigen-presenting cells. These characteristics made it possible to refine the reactivity of 17 superantigen preparations with the available transfected Vbetas. Each superantigen gave a characteristic pattern of reactivity on the transfectants. Positive reactivities with some of these transfectants, which differ only by the expressed hVbeta, demonstrate unambiguously the superantigenic character of a protein or fraction and its potential to react with the corresponding Vbetas. Therefore, these hVbeta-transfected cells constituted a valuable tool for determining "specificity fingerprints" of known or putative superantigens. First, commonly used, commercially available superantigens such as staphylococcal enterotoxin B and toxic shock syndrome toxin-1 (TSST-1) showed additional Vbeta reactivities, compared with those of their recombinant counterparts. This stresses the importance of using defined preparations of superantigens for the definition of Vbeta specificities. Second, the stimulatory pattern of a strain of Streptococcus pyogenes demonstrated that this strain, unlike others, produces a potent Vbeta 8-specific superantigen that is an yet undefined at the molecular level.

Animals↗

GABP factors bind to a distal interleukin 2 (IL-2) enhancer and contribute to c-Raf-mediated increase in IL-2 induction.

Triggering of the T-cell receptor-CD3 complex activates two major signal cascades in T lymphocytes, (i) Ca2+-dependent signal cascades and (ii) protein kinase cascades. Both signal cascades contribute to the induction of the interleukin 2 (IL-2) gene during T-cell activation. Prominent protein kinase cascades are those that activate mitogen-activated protein (MAP) kinases. We show here that c-Raf, which is at the helm of the classic MAP-Erk cascade, contributes to IL-2 induction through a distal enhancer element spanning the nucleotides from positions -502 to -413 in front of the transcriptional start site of the IL-2 gene. Induction of this distal IL-2 enhancer differs from induction of the proximal IL-2 promoter-enhancer, since it is induced by phorbol esters alone and independent from Ca2+ signals. In DNA-protein binding studies, we detected the binding of transcription factors GABP alpha and -beta to a dyad symmetry element (DSE) of the distal enhancer, which is formed by palindromic binding sites of Ets-like factors. Introduction of point mutations suppressing GABP binding to the DSE interfered with the induction of the distal enhancer and the entire IL-2 promoter-enhancer, while overexpression of both GABP factors enhanced the IL-2 promoter-enhancer induction. Overexpression of BXB, a constitutive active version of c-Raf, and of further members of the Ras-Raf-Erk signal cascade exerted an increase of GABP-mediated promoter-enhancer induction. In conjunction with previously published data on c-Raf-induced phosphorylation of GABP factors (E. Flory, A. Hoffmeyer, U. Smola, U. R. Rapp, and J. T. Bruder, J. Virol. 70:2260-2268, 1996), these results indicate a contribution of GABP factors to the Raf-mediated enhancement of IL-2 induction during T-cell activation.

Cloning, Molecular↗

In vitro IgE synthesis induced by human T cell clones in normal B cells and its suppression by heterogenous T cell populations.

Thirty-four out of 119 human T cell clones established from tonsillar or peripheral blood T cell suspensions of 3 nonallergic individuals were able to induce normal B cells to synthesize remarkable amounts of IgE in vitro. The activity of these clones was apparently mediated by triggering of the monomorphic molecular complex CD3 immediately before or during their incubation with the target B cells. The addition to the cultures of mitogen-stimulated autologous unfractionated T cells inhibited in a dose-dependent fashion, the T cell clone induced IgE, but not IgG, synthesis.

Adult↗

Differential desensitization of homozygous haplotypes of the beta2-adrenergic receptor in lymphocytes.

Single-nucleotide polymorphisms of the beta(2)-adrenergic receptor gene and its 5' promoter have been associated with differences in receptor function and desensitization. Linkage disequilibrium may account for inconsistencies in reported effects of isolated polymorphisms. Therefore, we have investigated the three most common homozygous haplotypes of the beta(2)-adrenergic receptor (position 19 [Cys/Arg] of the 5' leader cistron and positions 16 [Arg/Gly] and 27 [Gln/Glu] of the receptor) for putative differences in agonist-induced desensitization. Lymphocytes of well defined nonasthmatic, nonallergic subjects homozygous for the haplotype CysGlyGln, ArgGlyGlu, or CysArgGln were isolated. Desensitization of (-)-isoproterenol-induced cyclic adenosine monophosphate (cAMP) accumulation and beta(2)-adrenergic receptor sequestration and downregulation were measured in relation to beta(2)-adrenergic receptor-mediated inhibition of IFN-gamma and interleukin-5 production. We observed that lymphocytes of individuals bearing the CysGlyGln haplotype were more susceptible to desensitization of the beta-agonist-induced cAMP response than those of individuals with the ArgGlyGlu or CysArgGln haplotype. The haplotype-dependent desensitization of beta-agonist-induced cAMP response was not associated with haplotype-dependent beta(2)-adrenergic receptor sequestration or downregulation. In addition, our data suggest reduced inhibition, in lymphocytes of subjects with the CysGlyGln haplotype, of interleukin-5 production induced by treatment with antibodies to the T-cell receptor-CD3 complex and to costimulatory molecule CD28 (alphaCD3/alphaCD28). This is the first study demonstrating haplotype-related differences in agonist-induced beta(2)-adrenergic receptor desensitization in primary human cells. This haplotype-related desensitization of the beta(2)-adrenergic receptor in lymphocytes might have consequences regarding the regulation of helper T-cell type 2 inflammatory responses.

Adult↗

Bacterial toxins affect early events of T lymphocyte activation.

The effects of pertussis toxin and cholera toxin on early events of T lymphocyte activation were examined in the T lymphocyte cell line, Jurkat. Pertussis toxin treatment of these T cells increased inositol phosphates production and led to increases in intracellular free calcium concentration. These effects were produced by the isolated B (binding) subunit of pertussis toxin, alone. Inositol phosphates production resulting from perturbation of the T cell antigen receptor-CD3 complex by MAb was not affected by pertussis toxin treatment but was markedly inhibited by cholera toxin. This effect of cholera toxin paralleled elevations in cAMP content. However, forskolin, in concentrations equipotent for cAMP production, was a weaker inhibitor of inositol phosphates production. Cholera toxin inhibition of inositol phosphates production did not result from inhibition of baseline incorporation of inositol into phosphoinositide substrates of phospholipase C. These studies underline the complexity of toxin effects on cellular systems and suggest that other approaches will be required to implicate guanine nucleotide-binding regulatory proteins in control of the early events of T lymphocyte activation. However, the data presented here provide a molecular basis for the clinical observations of lymphocytosis and the in vitro observations of lymphocyte mitogenesis after pertussis toxin stimulation.

Adenosine Diphosphate Ribose↗

Ageing, autoimmunity and arthritis: Perturbations of TCR signal transduction pathways with ageing - a biochemical paradigm for the ageing immune system.

It is widely accepted that cell-mediated immune functions decline with age, rendering an individual more susceptible to infection and possibly cancer, as well as to age-associated autoimmune diseases. The exact causes of T-cell functional decline are not known. One possible cause could be the development of defects in the transduction of mitogenic signals following TCR stimulation. This T-cell hyporesponsiveness due to defects of signalling through the TCR either from healthy elderly subjects or from individuals with autoimmune diseases such as rheumatoid arthritis or systemic lupus erythematosus results in an impaired ability to mount efficient immune responses and to maintain responsiveness to foreign antigens. This implies that a high proportion of autoreactive T cells might accumulate either intrathymically or in the periphery. T-cell anergy and differential TCR signalling could thus also be key players in the disruption of tolerance and the onset of autoimmune diseases. The increasing number of the elderly may lead to an increase of clinically important autoimmune diseases. We will review the signal transduction changes through the TCR-CD3 complex in T lymphocytes from healthy elderly subjects, which result in a modification of the activation of transcription factors involved in IL-2 gene expression leading to decreased IL-2 production. The putative contribution of altered T-cell signalling with ageing in the development of autoimmune diseases will be also discussed.

Aged↗

[The enhancement of cytolytic activity in lymphokine activated killer cells using bispecific F(ab')2].

In this study, we show that bispecific hetero-F(ab')2 enhances cytolytic activity in human lymphokine activated killer (LAK) cells derived from peripheral blood mononuclear cells against human small cell lung cancer (SCLC) cell lines. We used two types of bispecific F(ab')2 (anti-CD3-LU246mAb, anti-CD16-LU246mAb) which play different roles in the enhancement of cytolytic activity in LAK cells against the human SCLC cell lines N231, H69 and Lu135. Anti-CD3 Fab' or anti-CD16 Fab' were coupled with LU246 Fab' that recognized the antigen on human SCLC cells for reproducing bispecific F(ab')2. Anti-CD16 (3G8) Fab' conjugated with LU246 Fab' targeted NK-LAK cells to SCLC cells to mediate cytolysis, but NK-LAK cells induced by LGL-enriched fraction did not display enhanced cytotoxicity even when bispecific antibody was used in 51Cr release assay. Anti-CD3 (OKT3) Fab' conjugated with LU246 Fab' cross-linked T-LAK cells to SCLC cells activated T-LAK cells through the CD3 complex, and enhanced the cytolytic activity of T-LAK cells against SCLC lines. Although OKT3-LU246 F(ab')2 was not so potent in enhancing cytolytic activity in 51Cr release assay, it played a greater role in enhancing the inhibitory effect on tumor growth than 3G8-LU246 F(ab')2 in human tumor clonogenic assay and in vivo tumor neutralization assay. In addition, the enhancement of target cell lysis by bispecific antibodies was generally more potent than antibody dependent cellular cytotoxicity (ADCC) using LU246 monoclonal antibody.

Animals↗

Is the thymus a target organ in infectious diseases?

The thymus is a central lymphoid organ, in which T cell precursors differentiate and generate most of the so-called T cell repertoire. Along with a variety of acute infectious diseases, we and others determined important changes in both microenvironmental and lymphoid compartments of the organ. For example, one major and common feature observed in acute viral, bacterial and parasitic diseases, is a depletion of cortical thymocytes, mostly those bearing the CD4-CD8 double positive phenotype. This occurs simultaneously to the relative enrichment in medullary CD4 or CD8 single positive cells, expressing high densities of the CD3 complex. Additionally we noticed a variety of changes in the thymic microenvironment (and particularly its epithelial component), comprising abnormal location of thymic epithelial cell subsets as well has a denser Ia-bearing cellular network. Moreover, the extracellular matrix network was altered with an intralobular increase of basement membrane proteins that positively correlated with the degree of thymocyte death. Lastly, anti-thymic cell antibodies were detected in both human and animal models of infectious diseases, and in some of them a phenomenon of molecular mimicry could be evidenced. Taken together, the data reviewed herein clearly show that the thymus should be regarded as a target in infectious diseases.

Acquired Immunodeficiency Syndrome↗