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TNF-alpha released by comigrating monocytes promotes transendothelial migration of activated lymphocytes.

We investigated mechanisms that increase motility and transendothelial trafficking of activated lymphocytes. Freshly isolated lymphocytes stimulated with immobilized anti-CD3 for 2 h migrate into polymerized collagen in 1.99+/-0.25-fold greater numbers and across confluent endothelial monolayers in 4.8+/-0.5-fold greater numbers compared with leukocytes incubated with non-specific IgG. Activated lymphocytes form clusters with monocytes, and their increased motility was dependent on the presence of comigrating monocytes. Five lines of evidence support the idea that monocytes modulate lymphocyte motility through the release of TNF-alpha: 1) flow-cytometric analyses, using highly specific and avid mAbs to probe permeabilized whole blood leukocytes, showed that >80% of circulating monocytes contain intracellular TNF-alpha, whereas <5% contain IL-1 and none contain IL-6; 2) stimulation with immobilized anti-CD3 that was intended to activate lymphocytes also induced monocytes to release increased quantities of TNF-alpha; 3) rTNF-alpha, added in doses of 1 to 20 pg/ml to purified anti-CD3-stimulated lymphocytes, reproduced, in a dose-dependent manner, the motility-enhancing effect of adding monocytes; 4) the transient increase in the expression of TNF R-I on CD3-activated T lymphocytes parallels their transiently increased motility; and 5) addition of anti-TNF-alpha, anti-TNF R-I, anti-TNF R-II, or soluble TNF R-I decreased the motility of stimulated lymphocytes. These results suggest that T lymphocyte stimulation via the CD3-TCR complex signals nearby monocytes to release TNF-alpha, which feeds back on the lymphocytes to increase their locomotor activity.

Antigens, CD↗

Compared TCR and CD3 epsilon expression on alpha beta and gamma delta T cells. Evidence for the association of two TCR heterodimers with three CD3 epsilon chains in the TCR/CD3 complex.

Current models for TCR/CD3 complex stoichiometry involve one or alternatively two TCR heterodimer(s) associated with two CD3 epsilon per complex. They mainly constructed on the basis of biochemical studies involving disruption of membrane complexes. The present study was undertaken to quantify the relative proportions of CD3 epsilon and TCR chains on alpha beta and gamma delta lymphocytes in nondenaturing conditions. Quantitative flow cytometry revealed that alpha beta and gamma delta PBL express on an average 1.56 and 1.52 more CD3 epsilon-chain than beta- and delta-chains, respectively. Accordingly, CD3 epsilon to TCR-alpha, TCR-beta, TCR-gamma, and TCR-delta ratios found on three polyclonal cell lines and on Jurkat cells were all very close to 1.50. These results clearly demonstrate that alpha beta as well as gamma delta T cells express approximately 1.50 more CD3 epsilon-chain than each of the TCR chains. They strongly suggest that alpha beta and gamma delta TCR/CD3 complexes involve two TCR heterodimers associated with three CD3 epsilon-chains (or a multiple of this combination). In addition, our results showed that gamma delta PBL expressed about 1.90 more TCR (-delta vs -beta) and CD3 epsilon-chains than alpha beta PBL. Furthermore, TCR-beta expression and CD3 epsilon expression were higher on CD4+ alpha beta PBL than on CD8+ alpha beta PBL, whereas TCR-delta expression and CD3 epsilon expression were both identical on CD8+ gamma delta PBL and on CD8- gamma delta PBL. These results demonstrate that CD8+ or CD8- gamma delta PBL, CD4+ alpha beta PBL and CD8+ alpha beta PBL express decreasing levels of the TCR/CD3 complex.

CD3 Complex↗

Frequency analysis of human peripheral blood B cells producing autoantibodies: differential activation requirements of precursors for B cells producing IgM-RF and anti-DNA antibody.

To investigate the mechanism of autoantibody production, the extent and nature of anti-DNA precursors within normal human B cells were examined by utilizing two different polyclonal B cell stimulators, Staphylococcus aureus Cowan I (SA) and immobilized mAb to the CD3 molecular complex (64.1). In cultures stimulated with SA and IL2, B cells produced IgM-RF, but not anti-DNA, whereas B cells produced great amounts of anti-DNA in cultures stimulated with SA and intact T4 cells. In cultures stimulated with immobilized anti-CD3, T4 cells that had been treated with mitomycin C (T4 mito) induced the production of anti-DNA as effectively as that of IgM-RF. Limiting dilution analyses revealed that the precursor frequency of anti-DNA-producing cells in SA-stimulated cultures was markedly increased in the presence of intact T4 cells (0.399 to 2.549 per 10(4) B cell) compared with that in the presence of factors generated from mitogen-activated T cells (TF) (0.022 to 0.151 per 10(4) B cells). Thus, the proportion of IgM-secreting cells that produced anti-DNA in cultures with SA + T4 cells (12 to 31%) was much greater than that noted in cultures with SA + TF (3.4 to 4.0%), whereas the proportion of IgM-secreting cells that produced IgM-RF was not significantly different in these cultures (17 to 50%). The precursor frequency of anti-DNA-producing cells (0.019-0.097 per 10(2) B cells) was almost the same as that of IgM-RF producing cells (0.025-0.104 per 10(2) B cells) in cultures stimulated with immobilized anti-CD3. Of note, addition of SA increased the precursor frequency of IgM-RF-producing cells, but not that of anti-DNA-producing cells, in anti-CD3-stimulated cultures. These results indicate that T cells, but not T cell-derived cytokines, play a central role for the production of anti-DNA antibodies. Moreover, the data support the conclusion that the precursors of anti-DNA-producing cells have activation requirement different from those of IgM-RF producing cells.

Adult↗

Synergy between LPS and immobilized anti-human CD3epsilon mAb for activation of cord blood CD3+ T cells.

Despite an attenuated proliferative response in human cord blood mononuclear cells (CBMCs) to activation of its TCR in vitro, the neonate is capable of mounting a mature T(h)1-type response to BCG vaccination. We hypothesized that in the context of other innate triggers, activation of the TCR can be restored. In order to test this hypothesis, we analyzed CBMC response to LPS, with LPS serving as a surrogate activator of the innate system. We performed proliferative assays on 34 maternal-neonatal pairs of PBMCs and CBMCs, respectively. In all, 30/34 (88%) of CBMCs proliferated in response to LPS (10 microg ml(-1), P < 2.7 x 10(-7)), in contrast to only 10/32 (31%) of their respective maternally derived PBMCs, despite having a comparatively greater response to PHA than did their CBMC counterparts (P < 0.0002). LPS synergized with immobilized anti-human CD3epsilon mAb (1.25-10 microg ml(-1)) to augment the proliferative response in CBMCs but failed to do so in maternally derived PBMCs. LPS responsiveness and its synergy with activation of the TCR in CBMCs were independent of accessory cells. These results are the first evidence that LPS and anti-CD3 mAb are synergistic, demonstrating a critical link between the innate and adaptive immune systems.

Antibodies, Monoclonal↗

HIV-1 Nef increases T cell activation in a stimulus-dependent manner.

Lentiviral Nef increases viral replication in vivo, plays a direct role in pathogenesis, and increases viral particle infectivity. We now find that HIV Nef also increases the activation of T cells, a cellular state required for optimal viral replication. This enhancement is stimulant-dependent. As defined by IL-2 generation, activation of T cells stimulated with classical mitogens [phorbol 12-myristate 13-acetate (PMA) + anti-CD3, PMA + phytohemagglutinin, and PMA + ionomycin] is unaffected by the expression of Nef. However, Nef increases IL-2 secretion when cells are stimulated through the T cell receptor and the costimulus receptor (CD28). This increase in activation, which depends on Nef myristylation, is caused by an increase in the number of cells reaching full activation and not by an increase in the amount of IL-2 secreted per cell. These findings demonstrate that Nef lowers the threshold of the dual-receptor T cell activation pathway. The capacity of Nef to increase T cell activity may be very important in vivo when Nef is the predominant or the only viral gene product expressed.

Antibodies, Monoclonal↗

The CD3 gamma leucine-based receptor-sorting motif is required for efficient ligand-mediated TCR down-regulation.

TCR down-regulation plays an important role in modulating T cell responses both during T cell development and in mature T cells. At least two distinct pathways exist for down-regulation of the TCR. One pathway is activated following TCR ligation and is dependent on tyrosine phosphorylation. The other pathway is dependent on protein kinase C (PKC)-mediated activation of the CD3 gamma di-leucine-based receptor-sorting motif. Previous studies have failed to demonstrate a connection between ligand- and PKC-induced TCR down-regulation. Thus, although an apparent paradox, the dogma has been that ligand- and PKC-induced TCR down-regulations are not interrelated. By analyses of a newly developed CD3 gamma-negative T cell variant, freshly isolated and PHA-activated PBMC, and a mouse T cell line, we challenged this dogma and demonstrate in this work that PKC activation and the CD3 gamma di-leucine-based motif are indeed required for efficient ligand-induced TCR down-regulation.

Amino Acid Motifs↗

Differential effects of manipulating signaling in early T cell development in intestinal intraepithelial lymphocytes and thymocytes.

A pre-TCR-CD3 signal is required for the efficient maturation of CD4- CD8- thymocytes to the CD4+ CD8+ stage. This study addressed whether a similar signal is required for maturation of intestinal intraepithelial lymphocytes (IEL) that may develop extrathymically. We have shown previously that IEL from mice deficient for CD3- associated zeta chains include an immature population of CD3- CD8alphaalpha+ cells expressing cytoplasmic TCR beta chains but lacking detectable surface TCRalphabeta, CD16 and B220. Here we stimulated the appearance of such IEL in epsilon+/- zeta-/- mice by expression of an activated Lck transgene or in vivo treatment with anti-CD3epsilon. Anti-CD3epsilon treatment of RAG-deficient animals also yielded CD16- B220- IEL. In contrast, expression of a TCRbeta transgene in rag-1(-/-) mice did not stimulate the appearance of CD3- CD8alphaalpha+ CD16- B220- cells. Taken together these data indicate that although anti-CD3epsilon treatment and LckF505 assist in catalyzing a CD16+ B220+ --> CD16- B220- transition, these manipulations are not equivalent to a pre-TCR signal in IEL lymphocytes.

Animals↗

Cytokine networks are pre-activated in T cells from HIV-infected patients on HAART and are under the control of cAMP.

OBJECTIVE: Cytokines seem to play a critical role in HIV infection. The cAMP/protein kinase A (PKA) type I pathway is shown to be hyper-activated and contributes to T-cell immune dysfunction in HIV infection. Here, we analysed firstly the levels of cytokine gene expression in unstimulated CD3+T cells from HIV-infected patients on HAART, and secondly the regulation of cytokine and cytokine-related genes by cAMP agonist and antagonist in anti-CD3 activated T cells in order to understand their effects on cytokine networks. METHODS: Cytokine Macro Array and real-time RT-PCR techniques were used to study cytokine gene expression in T cells of HIV-positive patients. RESULTS: Of the cytokine-related genes analysed 45% were expressed at twofold or higher levels in unstimulated T cells from HIV-infected patients as compared with healthy controls, and one-third of these genes were hypo-responsive upon activation as compared with controls. Furthermore, cAMP modulated levels of expression of a number of cytokine-related genes differently in patient and control T cells. CXCR4, CCR5 and amphiregulin were up-regulated by cAMP agonist, whereas other cytokine-related genes including macrophage inflammatory protein 1 beta, tumour necrosis factor-alpha and lymphotoxin-beta were markedly down-regulated by cAMP agonist in T cells from both HIV-infected patients and controls. Moreover, members of the chemokine/chemokine receptor family were over-represented among genes regulated by cAMP agonist/antagonist in patient T cells. CONCLUSIONS: Our data indicate that T cells from HIV-infected patients are in a pre-activated state and that a set of cytokine genes is hypo-responsive to activation and under tonic regulation by cAMP in these T cells.

Adult↗

T-cell response to anti-CD2 monoclonal antibodies in Down's syndrome.

Peripheral blood mononuclear cells from 10 subjects with cytogenetically documented Down's syndrome (DS) and from 10 age- and sex-matched healthy controls were assayed for their ability to proliferate in response to phytohaemagglutinin, anti-CD3 (OKT3), or anti-CD2 (T11(2) plus T11(3] monoclonal antibodies. Interleukin 2 (IL-2) receptor expression and IL-2 production in mitogen-pulsed lymphocyte cultures was also investigated in parallel. DS cells responded poorly to all the blastogenic stimuli used in this study. Under certain experimental conditions (anti-CD3 or anti-CD2 antibody stimulation), the patients' lymphocytes expressed low levels of IL-2 surface receptors and failed to produce normal amounts of this lymphokine. Studies are currently in progress in our laboratories to determine whether these defects are due to an impairment of the early signalling events surrounding the complexing of CD3, CD2, or lectin receptors to their respective ligands.

Adolescent↗

Human T cell leukemia virus-I (HTLV-I) Tax-mediated apoptosis in activated T cells requires an enhanced intracellular prooxidant state.

We have shown that an estradiol-dependent activation of human T cell leukemia virus-I Tax leads to the inhibition of cell proliferation and to the induction of apoptosis. The present study demonstrates that a hormone-dependent activation of Tax promotes an enhanced prooxidant state in stably transfected Jurkat cells as measured by changes in the intracellular levels of glutathione and H2O2; these changes are followed by apoptotic cell death. Additional stimulation of the CD3/TCR pathway enhances the oxidative and apoptotic effects. Both Tax-mediated apoptosis and oxidative stress can be potently suppressed by antioxidants, as is seen with the administration of recombinant thioredoxin (adult T cell leukemia-derived factor) or pyrrolidine dithiocarbamate. Hormone-induced Tax activation induces a long-lasting activation of NF-kappaB, which is a major target of reactive oxygen intermediates. The long-term exposure of Jurkat cells to hormone eventually results in a selection of cell clones that have lost Tax activity. A subsequent transfection of these apparently "nonresponsive" clones allows the recovery of Tax responses in these cells. Our observations indicate that changes in the intracellular redox status may be a determining factor in Tax-mediated DNA damage, apoptosis, and selection against the long-term expression of Tax function.

Antibodies, Monoclonal↗

Accelerated proliferation and interleukin-2 production of thymocytes by stimulation of soluble anti-CD3 monoclonal antibody in transgenic mice carrying a rabbit protein kinase C alpha.

Protein kinase C (PKC) has been believed to play an important role in the differentiation/proliferation of various kinds of mammalian cells. To analyze its function in living animals, we have established a transgenic mouse line carrying rabbit protein kinase C alpha cDNA under the control of the regulatory element of human CD2. Thymocytes of these transgenic mice overexpressed PKC alpha. Interestingly, the increase of PKC alpha was detected mainly in membrane fractions of transgenic thymocytes. Although the transgenic thymocytes did not show any distinct proliferative features in vivo, they displayed a unique property to extensively proliferate and produce interleukin-2 (IL-2) in response to the stimulation by a soluble form of anti-CD3 monoclonal antibody (mAb), an incomplete agonist for proliferation of normal thymocytes. Furthermore, co-stimulation of the phorbol 12-myristate 13-acetate and anti-CD3 mAb intensely provoked the transgenic thymocytes to release IL-2. For the first time this result provided the direct evidence that PKC alpha translocated to the cell membrane of thymocytes works as an active second messenger of the T cell receptor-CD3 complex-delivered signal for proliferation and IL-2 production.

Animals↗

In vivo and in vitro repertoire of CD3+CD4-CD8- thymocytes.

CD4-CD8- thymocytes contain a cell subset which expresses the complete CD3-TCR complex (alpha/beta or gamma/delta) of which the ontogeny and filiation are unknown. One of the questions is whether this population can be intrathymically selected, an obligatory step for the mature CD4+ and CD8+ cell differentiation pathway, or if the absence of CD4 an CD8 allows them to escape thymic selection. The repertoire of CD3+CD4-CD8- (CD3+ DN) thymocytes was analyzed in different strains of mice with different combinations of H-2 and Mls expression. The expression of V beta 8.1 in freshly isolated CD3+ DN cells is the highest in Mls-1b mice and the lowest in Mls-1a and F1 mice, suggesting that selection against this specificity can be achieved in vivo. By contrast, a low percentage of V beta 6+ cells is found in all the strains, with no correlation according to Mls expression. In vitro culture of DN thymocytes with IL-1 and IL-2 leads to the proliferation of CD3+ DN cells. In vitro culture amplifies the in vivo pattern of V beta 8.1 expression, while V beta 6+ cells only expand in DN cells of B6 and B10D2 Mls-1b mice with the same genetic background.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Characterization of the T cells in aged rat bone marrow.

In this study, we determined the characteristics of CD3-positive (CD3+) T cells existing in rat bone marrow (BM). In contrast to splenic T cells, BM CD3+ T cells are composed of a higher proportion of CD8+ T cells, and the number of both cell types increased with age. Such CD3+ T cells in aged rats showed a similar usage of TCR V beta as splenic T cells, suggesting that BM CD3+ T cells are thymus-dependent and composed of an ordinary population in view of the expression of the TCR beta-chain. Purified T cells obtained from aged rat BM showed a markedly proliferative response by stimulation with immobilized anti-CD3 mAb, as did splenic T cells. However, the addition of BM non-T cells completely inhibited the response of both BM and splenic T cells in vitro. These results suggest that T cells in rat BM are negatively regulated by BM non-T cells in their response to the TCR-mediated signal not to disrupt the microenvironment of the BM.

Aging↗

Severe combined immunodeficiency caused by deficiency in either the delta or the epsilon subunit of CD3.

We investigated the molecular mechanism underlying a severe combined immunodeficiency characterized by the selective and complete absence of T cells. The condition was found in 5 patients and 2 fetuses from 3 consanguineous families. Linkage analysis performed on the 3 families revealed that the patients were carrying homozygous haplotypes within the 11q23 region, in which the genes encoding the gamma, delta, and epsilon subunits of CD3 are located. Patients and affected fetuses from 2 families were homozygous for a mutation in the CD3D gene, and patients from the third family were homozygous for a mutation in the CD3E gene. The thymus from a CD3delta-deficient fetus was analyzed and revealed that T cell differentiation was blocked at entry into the double positive (CD4+CD8+) stage with the accumulation of intermediate CD4-single positive cells. This indicates that CD3delta plays an essential role in promoting progression of early thymocytes toward double-positive stage. Altogether, these findings extend the known molecular mechanisms underlying severe combined immunodeficiency to a new deficiency, i.e., CD3epsilon deficiency, and emphasize the essential roles played by the CD3epsilon and CD3delta subunits in human thymocyte development, since these subunits associate with both the pre-TCR and the TCR.

CD3 Complex↗

HIV-1 NL4-3, but not IIIB, inhibits JAK3/STAT5 activation in CD4(+) T cells.

HIV-1 infection leads to T cell dysfunction and apoptosis in vivo and in vitro. The shared common gamma chain of IL-2R and its associated Janus kinase, JAK3, are indispensable for normal T cell function and survival. We have reported that CD4 ligation with HIV gp120 inhibits T cell receptor-induced activation and expression of JAK3. We have also shown that while some strains of HIV-1, such as NL4-3, induce apoptosis of infected CD4(+) T cells, other strains, such as HIV-1 IIIB, do not. Interestingly, we show here that infection of CD4(+) T cells with HIV-1 NL4-3, but not IIIB, inhibited activation and expression of JAK3. NL4-3-infected T cells were unable to upregulate JAK3 expression following stimulation through TCR/CD3. In addition, NL4-3, but not IIIB, inhibited tyrosine phosphorylation and expression of STAT5, a downstream target of JAK3. These data suggest a correlation between apoptosis of HIV-1-infected T cells and inhibition of the JAK3/STAT5 activation pathway.

Apoptosis↗

Interactions of human alpha/beta and gamma/delta T lymphocyte subsets in shear flow with E-selectin and P-selectin.

We have compared the ability of human alpha/beta and gamma/delta T lymphocytes to adhere to selectin-bearing substrates, an interaction thought to be essential for homing and localization at sites of inflammation. Both T cell populations form rolling adhesions on E- and P-selectin substrates under physiologic flow conditions. Although equivalent to alpha/beta T cells in binding to E-selectin, gamma/delta T cells demonstrated greater ability to adhere to P-selectin that was purified or expressed on the surface of activated, adherent platelets. Under static conditions, 80% of gamma/delta T cells and 53% of alpha/beta T cells formed shear-resistant adhesions to P-selectin, whereas only 30% of gamma/delta and alpha/beta T cells adhered to E-selectin. The enhance ability of gamma/delta T cells to adhere to P-selectin cannot be attributed to differences in expression of the P-selectin glycoprotein ligand (PSGL-1), as all alpha/beta T cells versus approximately 75% of gamma/delta T cells expressed PSGL-1. Both cell populations expressed a similar percentage of the carbohydrate antigens sialyl LewisX and cutaneous lymphocyte-associated antigen. Depletion of lymphocyte populations or T cell clones bearing these oligosaccharides with the monoclonal antibody CSLEX-1 and HECA-452, respectively, resulted in a substantial reduction in adhesion to E-selectin and slight reduction in adhesion to P-selectin under flow conditions. Treatment of cells with an endopeptidase that selectively degrades O-sialomucins such as PSGL-1, abolished P-selectin but not E-selectin adhesion. Removal of terminal sialic acids with neuraminidase or protease treatment of cells abrogated cell adhesion to both selectin substrates. These results provide direct evidence for the presence of distinct E- and P-selectin ligands on T lymphocytes and suggest that gamma/delta T cells may be preferentially recruited to inflammatory sites during the early stages of an immune response when P-selectin is upregulated.

Antigens, CD↗

Expression of T cell antigen receptor heterodimers in a lipid-linked form.

The interaction of the T cell receptor for antigen (TCR) with its antigen-major histocompatibility complex ligand is difficult to study because both are cell surface multimers. The TCR consists of two chains (alpha and beta) that are complexed to the five or more nonpolymorphic CD3 polypeptides. A soluble form of the TCR was engineered by replacing the carboxyl termini of alpha and beta with signal sequences from lipid-linked proteins, making them susceptible to enzymatic cleavage. In this manner, TCR heterodimers can be expressed independently of the CD3 polypeptides and in significant quantities (0.5 milligram per week). This technique seems generalizable to biochemical and structural studies of many other cell surface molecules as well.

Alkaline Phosphatase↗

BCR-ABL and v-abl oncogenes induce distinct patterns of thymic lymphoma involving different lymphocyte subsets.

The human BCR-ABL oncogenes encoded by the Philadelphia chromosome (Ph) affect the pathogenesis of diverse types of leukemia and yet are rarely associated with T-lymphoid leukemia. To determine whether BCR-ABL kinases are inefficient in transforming T lymphocytes, BCR-ABL-expressing retroviruses were injected intrathymically into mice. Thymomas that expressed BCR-ABL kinase developed after a relatively long latent period. In most thymomas, deletion of 3' proviral sequences resulted in loss of tk-neo and occasionally caused expression of kinase-active carboxy-terminally truncated BCR-ABL oncoprotein. In contrast, deletion of 3' proviral sequences was not observed in thymomas induced with Abelson murine leukemia virus (A-MuLV). BCR-ABL viruses induced distinct patterns of disease and involved different thymocyte subsets than A-MuLV and Moloney murine leukemia virus (Mo-MuLV). While Mo-MuLV only induced Thy-1+ thymomas, v-abl- and BCR-ABL-induced thymomas often contained mixed populations of B220+ and Thy-1+ lymphocytes in the same tumor. In most v-abl and BCR-ABL tumors, Thy-1+ lymphoid cells expressed CD8 and a continuum of CD4 ranging from negative to positive. Conversely, Mo-MuLV thymomas contained distinct populations of CD4+ cells that were either CD8+ or CD8-. A-MuLV-transformed T-lymphoid cells did not express the CD3/T-cell receptor complex, while BCR-ABL tumors were CD3+. Thus, BCR-ABL viruses preferentially induce somewhat more differentiated T lymphocytes than are transformed by A-MuLV. Furthermore, rare B220+ lymphocytes may represent preferred v-abl and BCR-ABL transformation targets in the thymus.

Animals↗