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Adenovirus infection induces loss of HLA class I and CD3 antigens, but does not induce cell surface presentation of the La (SS-B) autoantigen.

Antibodies to the RNA polymerase III transcription termination factor La are frequently found in the serum of patients with various autoimmune diseases. The mechanisms by which autoimmune responses are evoked remain largely obscure, but the presentation of autoantigens on the cell surface during stress conditions has been reported as a possible factor. In this study we analysed the effects of adenovirus infection on the binding of anti-La antibodies to the surface of several human cell lines and on the levels of the membrane-expressed glycoproteins HLA class I, CD44 and the CD3 complex. In addition, we studied the relative amount and the intracellular distribution of the La protein as well as its association with the major species of non-coding virus-associated (VAI) RNA. While immunofluorescence patterns revealed a redistribution and possibly cell surface expression of the La protein during infection, this could not be confirmed by other techniques. In contrast, surface levels of HLA class I proteins and CD3 complex were severely affected. The data suggest that the subcellular distribution of the La protein is not detectably influenced by adenovirus infection.

Adenovirus Infections, Human

Enhancement of T cell receptor signaling of tumor-infiltrating lymphocytes by retrovirally mediated fyn gene transduction.

We conducted retrovirally mediated transduction of fyn gene into tumor-infiltrating lymphocytes (TILs) in an attempt to augment T cell receptor-CD3 complex signal transduction, using TILs obtained from six patients with epithelial ovarian cancer. The expression of the transduced gene was more than five times that of endogenous fyn gene. In all preparations, the cytolytic activity of the TILs against autologous tumor cells, but not allogeneic tumor cells, was significantly enhanced (P < 0.01) by transduction of fyn gene. In addition, when TILs were treated with anti-CD3 antibody to stimulate T cell receptor-CD3 complex, fyn-gene-transduced TILs showed about two times higher proliferation (P < 0.05) and secreted 2.2 to 11.7 times more tumor necrosis factor-beta (P < 0.05) than nontransduced TILs. These results could have important implications for TILs-mediated gene therapy for cancer.

Female

Interleukin-7 specifically induces the B7/BB1 antigen on human cord blood and peripheral blood T cells and T cell clones.

B7/BB1 is a cell surface molecule and member of the Ig super family that is constitutively expressed on dendritic cells. In addition, B7 is expressed on B cells, macrophages, T cells, and T cell clones following activation. Interaction of B7 with its natural ligand CD28 is required for optimal stimulation of T cells, activated via the TCR-CD3 complex, which is thought to be due to stabilization of cytokine mRNA. Here we demonstrate that the expression of B7 on T cells can specifically be induced by IL-7. Induction of B7 expression on T cells and T cell clones requires at least 5-7 days of culture and represents a late activation event. Results of studies using T cell clones, as well as resting purified B7- T cells, demonstrate that B7 is induced on a substantial proportion of T cells after IL-7 activation and is not due to an outgrowth of pre-existing B7+ T cells. In addition, CD4+ as well as CD8+ T cells could be induced to express B7. Stimulation of purified cord blood T cells with cross-linked anti-CD3 mAb resulted in a relatively fast (48 h) induction of B7, which could not be inhibited by a neutralizing anti-IL-7 mAb, whereas no endogenous IL-7 production by activated T cells and T cell clones could be detected. Together, these results indicate that the B7 molecule can be induced on T cells by IL-7, but also by an IL-7 independent pathway involving triggering of the TCR-CD3 complex.

Antigens, Surface

Inhibition of phosphatidylserine synthesis induced by triggering CD2 or the CD3-TCR complex in a human T cell line. Relationships with G proteins and receptors modulation.

Activation of Jurkat T cells with phytohemagglutinin, CD3 or CD2 mAbs results in a marked inhibition of phosphatidylserine (PS) synthesis. Monitoring PS synthesis in T cells shows that: (i) after modulation of CD3 molecules the cells become refractory to further treatment with CD3 mAbs as well as to a further challenge with CD2 mAbs; and (ii) treatment of T cells with fluoride ions and cholera toxin, two known effectors of guanosine triphosphate-binding proteins, also resulted in a strong inhibition of the synthesis of this phospholipid. The inhibition of PS synthesis thus appears to be regulated similarly to the other activation events, suggesting that transmembrane signalling mechanisms leading to PS inhibition are the same as those previously proposed for increasing phosphatidylinositides turnover and subsequent rise in the intracellular calcium concn in lymphocytes.

Antibodies, Monoclonal

Structural and functional characteristics of the CD3 (T3) molecular complex on human thymocytes.

The CD3 (T3) molecular complex is noncovalently associated with the antigen receptor molecule on T cells. The mitogenic properties of anti-CD3 antibodies have suggested that this complex may be the transducer of the antigenic signal to the intracellular environment. In the present investigation, we studied some of the structural and functional characteristics of the CD3 complex on human thymocytes. In 11 specimens tested, we found that anti-CD3 antibodies react with 50 to 76% of the thymocytes. Two-color immunofluorescence analysis revealed that the majority (greater than 50%) of thymocytes express both CD3 and CD1 on their surfaces. The latter is a marker of immature thymocytes. However, a distinct subpopulation comprising 13 to 19% of the total cells displays only CD3, while an approximately equal percentage of cells expresses only CD1. The mitogenic potential of anti-CD3 antibodies on peripheral T cells is dependent on the presence of monocytes. Anti-CD3 antibodies by themselves cannot activate thymocytes, indicating that functionally active monocytes are absent from the thymocyte population. Even the addition of peripheral monocytes does not allow a response of thymocytes to anti-CD3 antibodies. However, when the anti-CD3 antibody 64.1 is added in the presence of exogenous rIL 2, a strong antibody and lymphokine dose-dependent response ensues. Only CD1- CD3+ thymocytes are stimulated by the addition of antibody and IL 2. The mere expression of CD3 on the CD1+ CD3+ subpopulation of thymocytes apparently is not sufficient to render the cells responsive to the signals of anti-CD3 and IL 2.

Antibodies, Monoclonal

Efficient immunoselection of cytolytic effectors with a magnetic cell sorter.

This paper describes a rapid and efficient method for the sorting of in vitro activated cytolytic effectors cells. For cytotoxic assays, a large number of cells with conserved function must be rapidly obtained. Immunomagnetic sorting was chosen because it is faster than flow cytometry sorting. The MACS system requires the use of paramagnetic beads of small diameter (100-150 nm), reputed to interfere minimally with cell function. In order to generate the cytolytic effectors, peripheral blood lymphocytes were cultivated in the presence of interleukin-2 (50 U/ml) and anti-CD3 monoclonal antibody (BMA030, 100 ng/ml) for 4 days. Cell separation was based on the membrane expression of the CD3 complex. The purity obtained for positive (CD3+) cell sorting with the MACS was higher than 95%. The purity of negative (CD3-) cell fraction was more variable, but further purification by flow cytometry rapidly yielded purity higher than 95%. Cytotoxic assays were performed against four target cell lines (K562, Daudi, HL60 and U937) and proliferation assays showed that both negatively and positively selected populations had conserved their function acquired during culture in the presence of anti-CD3 mAb and IL2.

Antibodies, Monoclonal

Analysis of T cell repertoire and function in mice transgenic for the human V beta 3 TCR.

We have constructed mice containing the human V beta 3 TCR gene from the influenza virus haemagglutinin specific human CD4+ T cell clone HA1.7. Similar cell yields were obtained from transgenic and non-transgenic lymphoid tissue, with normal levels of T cells and with no unusual bias of the CD4 or CD8 subpopulations. Immunostaining and FACS analysis of transgenic thymocytes, spleen, and mesenteric lymph nodes revealed that the majority of T cells expressed the human V beta 3 TCR on the cell surface. Small numbers of cells expressing murine TCR beta chain were also detected. Polymerase chain reaction analysis revealed that an extensive V alpha TCR repertoire was used in the human V beta 3 transgenic mice. Lymphocytes from the spleen and mesenteric lymph nodes of transgenic mice were assessed for functional activity in vitro. Isolated cells were stimulated with mitogen or superantigen, as well as directly through the TCR-CD3 complex, and their ability to proliferate and secrete lymphokines analysed. Cells from transgenic mice responded well after stimulation with phytohaemagglutinin, concanavalin A, anti-CD3 antibody, anti-CD3 antibody with phorbol ester, and Staphylococcus aureus enterotoxin B, and also showed alloreactivity in a mixed lymphocyte reaction. Minimal levels of response were detected after stimulation with murine TCR beta antibody. Together, these data suggest that a human TCR beta chain is able to associate with a murine TCR alpha chain, to form a fully functional surface TCR-CD3 complex.

Animals

Independent association of T cell receptor beta and gamma chains with CD3 in the same cell.

We have demonstrated that the PEER cell line, which expresses a CD3-associated TCR gamma chain on the cell surface, synthesizes TCR beta chain intracellularly. A percentage of this TCR beta chain associates with the CD3 complex intracellularly. These results indicate that TCR beta and gamma chains can be synthesized by one cell line, and that these chains can independently associate with the CD3 complex. However, the results argue against the formation of TCR beta gamma chain complexes in this cell line.

Antigens, Differentiation, T-Lymphocyte

The effect of human T cell leukaemia virus type I infection on a herpes simplex virus-specific CD8+ cytotoxic T cell clone.

In an effort to clarify the effect of human T cell leukaemia virus type I (HTLV-I) infection on virus-specific CD8+ cytotoxic T cells, a herpes simplex virus-specific CD8+ cytotoxic T cell clone was infected with HTLV-I in vitro. The cytotoxic activity of the clone was found to have declined early after HTLV-I infection when the expression of T cell receptor-CD3 complex on the cell surface still showed no difference in comparison with that of uninfected parent cells. After 16 weeks of HTLV-I infection, expression of T cell receptor-CD3 complex on HTLV-I-infected clone cells became decreased. This phenomenon is similar to the effect of HTLV-I infection on CD4+ cytotoxic T cells as we previously reported, and suggests that there are common mechanisms of declined cytotoxic activity mediated by both CD4+ and CD8+ cytotoxic T cells following infection with HTLV-I. Such functional alterations of cytotoxic effector cells might be one of the mechanisms underlying immunodeficiency caused by HTLV-I infection.

Antigens, CD

The single positive T cells found in CD3-zeta/eta-/- mice overtly react with self-major histocompatibility complex molecules upon restoration of normal surface density of T cell receptor-CD3 complex.

CD3-zeta/eta-deficient mice have small thymuses containing cells that show a profound reduction in the surface levels of T cell receptors and terminate their differentiation at the CD4+CD8+ stage. Rather unexpectedly, CD3- or very low single positive T cells accumulate over time in the spleen and lymph nodes of CD3-zeta/eta-deficient mice after a process dependent on MHC expression. Fusion of these peripheral T cells with a CD3-zeta-positive derivative of the BW5147 TCR-alpha-/beta- thymoma resulted in hybridomas that do express an heterogeneous set of T cell receptor alpha/beta dimers at their surface and at density comparable to those found in hybridomas derived from wild-type peripheral T cells. We have investigated the specificities of these T cell receptors using spleen cells from congenic and mutant mouse strains, and showed that the majority of them readily recognized self-MHC class I or class II molecules. These results demonstrate that by increasing the density and/or output of the T cell receptors expressed in peripheral T cells, one can confer them with the capacity to respond to normal density of self-MHC molecules.

Animals

Developmental arrest of NK1.1+ T cell antigen receptor (TCR)-alpha/beta+ T cells and expansion of NK1.1+ TCR-gamma/delta+ T cell development in CD3 zeta-deficient mice.

The relationship between the structure of the T cell antigen receptor (TCR)-CD3 complex and development of NK1.1+ T cells was investigated. The TCR complex of freshly isolated NK1.1+ TCR-alpha/beta+ thymocytes contained CD3 zeta homodimers and CD zeta-FcR gamma heterodimers, whereas that of the majority of NK1.1- T cells did not contain FcR gamma. The function of CD3 zeta and FcR gamma in the development of NK1.1+ T cells was determined by analyzing CD3 zeta- and FcR gamma-deficient mice. The NK1.1+ T cells from wild-type and CD3 zeta-deficient mice had equal levels of CD3 expression. However, the development of NK1.1+ TCR-alpha/beta+ T cells was almost completely disrupted in thymus and spleen in CD3 zeta-deficient mice, whereas no alteration was observed in FcR gamma-deficient mice. In contrast, the number of novel NK1.1+ TCR-gamma/delta+ thymocytes expressing a surface phenotype similar to NK1.1+ TCR-alpha/beta+ thymocytes increased approximately six times in CD3 zeta-deficient mice. These findings establish the distinct roles of the CD3 zeta chain in the development of the following different thymic T cell compartments: NK1.1- TCR+, NK1.1+ TCR-alpha/beta+, and NK1.1+ TCR-gamma/delta+ thymocytes, which cannot be replaced by CD3 eta or FcR gamma chains.

Animals

[Towards immuno-modulation through the molecular mechanism of lymphocyte activation].

Recognition of the antigen/MHC complex by the T cell receptor (TCR)-CD3 complex in T cells triggers early activation events such as tyrosine phosphorylation, phosphatidylinositol turnover, intracellular Ca2+ mobilization or activation of protein kinases, and finally exhibits effector functions such as lymphokine secretion by helper T cells or cytotoxicity by killer T cells as late activation events. Several key molecules have been shown to engage in these signaling cascades. In addition to the TCR-CD3 molecules, other surface molecules such as CD28 or LFA-1 contribute to the regulation of T cell activation as a co-stimulator. Growing knowledge about the downstream of antigen recognition is promoting the attempt to modulate the signal transduction by specific drugs, mAbs, altered peptides or cytokines. Further investigations on the molecular mechanism of T cell activation will provide clinical successes to control immune responses.

Animals

Modification of membrane phospholipid fatty acyl composition in a leukemic T cell line: effects on receptor mediated intracellular Ca2+ increase.

The effect of modifying fatty acyl composition of cellular membrane phospholipids on receptor-mediated intracellular free Ca2+ concentration ([Ca2+]i) increase was investigated in a leukemic T cell line (JURKAT). After growing for 72 h in medium supplemented with unsaturated fatty acids (UFAs) and alpha-tocopherol, the fatty acyl composition of membrane phospholipids in JURKAT cells was extensively modified. Each respective fatty acid supplemented in the culture medium was readily incorporated into phosphatidylinositol, phosphatidylserine, phosphatidylethanolamine and phosphatidylcholine in the JURKAT cells. The total n-6 fatty acyl content was markedly reduced in phosphatidylinositol and phosphatidylcholine of cells grown in the presence of n-3 fatty acids (alpha-linolenic acid, eicosapentaenoic acid and docosahexaenoic acid). Conversely, in the presence of n-6 fatty acids (linoleic acid and arachidonic acid), the total n-3 fatty acyl content was reduced in all the phospholipids examined. In n-3 and n-6 polyunsaturated fatty acid (PUFA) modified JURKAT cells, the total n-9 monounsaturated fatty acyl content in the phospholipids were markedly reduced. Changing the fatty acyl composition of membrane phospholipids in the JURKAT cells appears to have no affect on the presentation of the T cell receptor/CD3 complex or the binding of anti-CD3 antibodies (OKT3) to the CD3 complex. However, the peak increase in [Ca2+]i and the prolonged sustained phase elicited by OKT3 activation were suppressed in n-3 and n-6 PUFA but not in n-9 monounsaturated fatty acid modified cells. In Ca2+ free medium, OKT3-induced transient increase in [Ca2+]i representing Ca2+ release from the inositol 1,4,5-trisphosphate-sensitive Ca2+ stores, were similar in control and UFA modified cells. Using Mn2+ entry as an index of plasma membrane Ca2+ permeability, the rate of fura-2 fluorescence quenching as a result of Mn2+ influx stimulated by OKT3 in n-9 monounsaturated fatty acid modified cells was similar to control cells, but the rates in n-3 and n-6 PUFA modified cells were significantly lower. These results suggest that receptor-mediated Ca2+ influx in JURKAT cells is sensitive to changes in the fatty acyl composition of membrane phospholipids and monounsaturated fatty acids appears to be important for the maintenance of a functional Ca2+ influx mechanism.

Antigens, Differentiation, T-Lymphocyte

T lymphocyte receptor deficiencies.

Signalling through the TCR is mediated by the cytoplasmic tails of the CD3 complex. Deficiencies in the expression of different CD3 components have lead to dramatic, yet dissimilar, effects on T-cell development and to selective deficits in peripheral T-cell subsets. Recent studies of human patients and animal models with CD3 deficiencies are providing insights into the redundant and unique roles of these molecules.

Amino Acid Sequence

Monoclonal antibody against murine T cell receptor V alpha 14 cross-reacts with human CD3 epsilon and detects disulfide-linked dimeric form.

A monoclonal antibody against V14+ alpha-chain of murine T cell receptor (TCR) was established by fusing spleen cells from a rat immunized with a soluble chimeric TCR/IgG3 protein containing murine TCR V alpha 14J alpha 281 in place of the VHDHJH of an IgG3. lambda 1, and subjected to screening on a human transfectant (Jurkat variant) expressing the murine V14J281 alpha-chain. The anti-mouse V alpha 14 antibody precipitated TCR alpha beta molecules from Triton X-100-solubilized extracts of 125I-labeled murine thymocytes and spleen cells. Unexpectedly, the antibody showed cross-reactivity to the human CD3 epsilon molecule and detected a disulfide-linked 20 kDa dimeric form of human CD3 epsilon, which is a novel family component of the CD3 complex and is associated closely with the CD3 zeta-zeta homodimer as well as TCR alpha beta or TCR gamma delta.

Animals

A phosphatidic acid-sensitive intracellular pool of calcium is released by anti-CD3 in Jurkat T cells.

Jurkat T cells, loaded with the fluorescent calcium probe Indo 1, responded to exogenous phosphatidic acid (PA) by transiently increasing their cytosolic Ca2+ concentration. This effect was dose-dependent, remained unmodified when external Ca2+ was chelated with EGTA, and was totally inhibited when cells were first exposed to CD3 monoclonal antibodies, indicating that it was solely due to the release of an intracellular pool, which is also mobilized during a stimulation via the CD3 T-cell receptor (TcR) molecular complex. CD3- and phytohaemagglutinin (PHA)-stimulated Jurkat cells also produced PA, the dose-responses and kinetics of which were consistent with those of calcium release. Moreover, diacylglycerol (DAG) kinase inhibitors abrogated PA production and lowered calcium release by CD3-stimulated cells. PA did not induce any apparent increase in inositol triphosphates (IP3), nor did it modify the increase entailed by activation of the CD3 pathway, pointing out that IP3 can be supplemented in mobilizing calcium from intracellular stores. Conversely, a first exposure to PA only partially inhibited the CD3- or ionomycin-induced internal release of calcium, suggesting either a rapid restoration of the PA-sensitive stores, or a contribution of other mediators, such as IP3, in the CD3 activation pathway.

Antibodies, Monoclonal

Patterns of costimulation of T cell clones by cross-linking CD3, CD4/CD8, and class I MHC molecules.

The ability of mAb to class I MHC molecules, CD3, or CD4/CD8 to stimulate human T cell clones alone or in combination was examined. Cross-linking each of these surface Ag with appropriate mAb and goat anti-mouse Ig (GaMIg) resulted in a unique pattern of increase in intracellular free calcium ([Ca2+]i) and different degrees of functional activation. Cross-linking class I MHC molecules provided the most effective stimulus of IL-2 production and proliferation. Cross-linking more than one surface Ag induced a compound calcium signal with characteristics of each individual response. Cross-linking CD3 + HLA-A,B,C caused a rapid and prolonged increase in [Ca2+]i and synergistically increased IL-2 production and proliferation of all clones. Cross-linking CD3 + CD4/CD8 also generated a compound calcium signal and increased IL-2 production and DNA synthesis. Purposeful inclusion of CD3 was not required for costimulation as cross-linking HLA-A,B,C + CD4/CD8 also increased [Ca2+]i, IL-2 production, and proliferation. Cross-linking three surface Ag, CD3 + HLA-A,B,C + CD4/CD8, resulted in the greatest initial and sustained [Ca2+]i, IL-2 production, and DNA synthesis. Although there was a tendency for the various stimuli to increase both [Ca2+]i and functional responsiveness, neither the magnitude nor duration of the increased [Ca2+]i correlated with the amount of IL-2 produced or the ultimate proliferative response. To determine whether costimulation required that the various surface molecules were cross-linked together, experiments were carried out using isotype specific secondary antibodies. Augmentation of [Ca2+]i and costimulation of functional responses were noted when class I MHC molecules were cross-linked and CD3 was bound, but not cross-linked. Similarly, costimulation through CD3 and CD4/CD8 was observed when CD4/CD8 was cross-linked and the CD3 complex was engaged by an anti-CD3 mAb which was not further cross-linked. In contrast, costimulation by class I MHC molecules and CD4/CD8 was only observed when these molecules were cross-linked together. These data demonstrate that cross-linking class I MHC determinants or CD4/CD8 provides a direct signal to T cell clones that can be enhanced when CD3 is independently engaged. The results also indicate that T cell clones can be stimulated without engaging CD3 by the combination of signals delivered via class I MHC molecules and CD4/CD8, but only when these determinants were cross-linked together. These studies have demonstrated that these cell surface molecules differ in their capacity to deliver activation signals to T cell clones and also exhibit unique patterns of positive cooperativity in signaling potential.

Adjuvants, Immunologic

Functional analysis of peripheral blood lymphocytes isolated from patients with chronic hepatitis type B.

Cell-mediated immunity, evaluated by lymphocyte proliferation and expression of the activation antigen interleukin-2 receptor in response to mitogens such as phytohemagglutinin and concanavalin-A, has been reported to be defective in chronic hepatitis B virus carriers. However, no definite conclusion on the functional state of T cells from these patients can be drawn. In the present study, we have investigated the expression of a wide set of lymphoid activation molecules as well as the proliferative response of peripheral blood lymphocytes isolated from patients with chronic hepatitis type B after in vitro stimulation with monoclonal antibodies to both the T-cell receptor-CD3 complex and the CD2 molecule, which are the two main T-cell activation pathways. Our findings show that peripheral T lymphocytes from patients with chronic hepatitis type B express the activation antigens 4F2 molecule, interleukin-2 receptor, and activation inducer molecule (AIM) antigen, and proliferate normally after specific stimulation through either the T-cell receptor-CD3 complex or the CD2 molecule. These results suggest that the peripheral blood T cells of patients with chronic hepatitis B are fully operative and functionally competent in vitro.

Adult