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Heterogeneous expression of recombination activating genes and surface CD5 in CD3low CD4+ CD8+ thymocytes.

Clonal selection in the thymus occurs mostly in the CD4+ CD8+ (double positive; DP) stage. Within DP thymocytes, cells in the CD3low subset are believed to be involved in clonal selection, and this subset is generally considered as a homogeneous population. T-cell antigen-receptor (TCR) signals on DP thymocytes are known to (i) down-regulate recombination activating gene (RAG) expression; and (ii) up-regulate the expression of T-cell function-associated molecules, including the cell surface glycoprotein CD5. The present study examined the expression of RAG and CD5 molecules among the subpopulations of normal adult DP thymocytes. DP thymocytes were fractionated according to their cell surface expression levels of TCR-CD3 complex into CD3dim, CD3lo, CD3med, and CD3hi cells, since TCR expression is known to increase during thymocyte maturation. Down-regulation of RAG mRNA was located between the CD3low and CD3med DP populations. However, within the DP CD3low subpopulation, we found that CD5 varies from low to high expression levels. Upon fractionation of DP CD3low thymocytes into CD5low and CD5high subsets, we were able to detect down-regulation of RAG transcripts within the CD3low subpopulation. Thus, by the criteria of CD5 surface expression and RAG mRNA expression levels, DP CD3low thymocytes can be considered a heterogeneous thymocyte subpopulation.

Animals↗

Cytotoxic T lymphocyte clones from peripheral blood and from tumor site detect intratumor heterogeneity of melanoma cells. Analysis of specificity and mechanisms of interaction.

CTL clones isolated from PBL or from tumor-infiltrating lymphocytes (TIL) of a melanoma patient (pt665) were screened for specificity on a panel including autologous tumor cells from two distinct metastases (Me665/1, Me665/2), autologous EBV-transformed B cells and 15 allogeneic cell lines of different histology. Each clone displayed a peculiar cytolytic activity ranging from lysis of most targets (PBL clone 4C4) to preferential reactivity on the two autologous metastases (TIL clone 8B3). Blocking and modulation experiments, revealed that the lysis of autologous-Tu cells by TIL clone 8B3, but not by PBL clone 4C4, could be inhibited by mAb to HLA-class I and to CD3 Ag or by CD3 complex modulation. Clone 8B3 was tested also on a panel of 25 tumor clones from Me665/2, revealing that only 4 neoplastic clones were lysed (2/4, 2/14, 2/17, and 2/51). Cold target competition experiments indicated that the uncloned autologous melanomas and one tumor clone (2/17), but no two other tumor clones (2/10, 2/15), could compete with one another for lysis by 8B3. Determination of melanin content of tumor clones from Me665/2 revealed that the four neoplastic clones recognized by 8B3 possessed much lower melanin levels than all the other 20 clones not lysed by this effector.

Antigens, Differentiation, T-Lymphocyte↗

Threonine phosphorylation sites in the beta 2 and beta 7 leukocyte integrin polypeptides.

The cytoplasmic domains of integrins play a key role in a variety of integrin-mediated events including adhesion, migration, and signaling. The molecular mechanisms that enhance integrin function are still incompletely understood. Because protein kinases are known to be involved in the signaling and the activation of integrins, the role of phosphorylation has been studied by several groups. The beta(2) leukocyte integrin subunit has previously been shown to become phosphorylated in leukocytes on cytoplasmic serine and functionally important threonine residues. We have now mapped the phosphorylated threonine residues in activated T cells. After phorbol ester stimulation, all three threonine residues (758-760) of the threonine triplet became phosphorylated but only two at a time. CD3 stimulation leads to a strong threonine phosphorylation of the beta(2) integrin, but differed from phorbol ester activation in that phosphorylation occurred only on threonine 758. The other leukocyte-specific integrin, beta(7), has also been shown to need the cytoplasmic domain and leukocyte-specific signal transduction elements for integrin activation. Cell activation with phorbol ester, and interestingly, through the TCR-CD3 complex, caused beta(7) integrin binding to VCAM-1. Additionally, cell activation led to increased phosphorylation of the beta(7) subunit, and phosphoamino acid analysis revealed that threonine residues became phosphorylated after cell activation. Sequence analysis by manual radiosequencing by Edman degradation established that threonine phosphorylation occurred in the same threonine triplet as in beta(2) phosphorylation.

Alanine↗

Stimulation of MAP-2 kinase activity in T lymphocytes by anti-CD3 or anti-Ti monoclonal antibody is partially dependent on protein kinase C.

Signaling via the alpha-beta T cell Ag receptor (Ti)-CD3 complex is a complicated event that implicates several protein kinases, most notably protein kinase C (PKC). We have recently identified a serine kinase in T lymphocytes with the following characteristics: molecular mass 43 kDa, in vitro substrate affinity for microtubule associated protein 2 (MAP-2) with a preference for Mn2+ during the catalytic reaction, and elution from DEAE resin over a salt range 100 to 200 mM NaCl. This kinase is activated in a rapidly reversible fashion during ligation of CD3/Ti by a process which involves prior phosphorylation; in vitro exposure of activated 43-kDa MAP-2 kinase (MAP-K) to an immobilized phosphatase abrogated its kinase activity. We now show that a MAP-2K response could also be obtained during treatment with mAb to Ti and the specific PKC agonist, PMA. Although the kinetics of the former response was rapidly reversible, PMA elicited a more prolonged response. The dose responsiveness for PMA was similar to the requirements for PKC activation in intact lymphocytes. Moreover, as with PKC, we found that the CD3-induced MAP-2K response could be further enhanced by using a second layer cross-linking antibody. The specificity of CD3/Ti in the Jurkat cell response is demonstrated by the fact that OKT-11(CD2) and anti-CD4 mAb did not stimulate a MAP-2K response. It was also not possible to elicit a response in a Jurkat cell mutant that lacks surface expression of CD3 and Ti. The specificity of PKC in these events was further explored with the cell permeant diacylglycerol, 1-oleoyl-2-acetylglycerol, and the nonagonist phorbol ester, 4 alpha-phorbol 12,13-didecanoate: whereas the former was an effective inducer of the MAP-2K response, the latter failed to yield any stimulation. Prior exposure of Jurkat cells to 100 mM PMA for 24 h eliminated greater than 60% of the MAP-2K response during anti-CD3 treatment. This response could also be inhibited in dose-dependent fashion by prior treatment of Jurkat cells with the potent PKC inhibitor 1-(5-isoquinolinesulfonyl) 2-methylpiperazine dihydrochloride. Although a Ca2(+)-ionophore failed to synergize with PMA at inducing a MAP-2K response, depletion of extracellular Ca2+ by EGTA abrogated anti-CD3 responsiveness. The events culminating in MAP-2K activation were slightly inhibited in the presence of cholera toxin but not pertussis toxin.(ABSTRACT TRUNCATED AT 400 WORDS)

Antibodies, Monoclonal↗

Regulation of interleukin-4 production in human mononuclear cells.

Interleukin (IL)-4 is a cytokine with a broad range of effects on immune cells, however, little is known regarding the regulation of its production in freshly isolated human peripheral blood mononuclear cells (PBMC). Here we report the production of IL-4 in such cells following stimulation with monoclonal antibodies (mAb) directed against different cell surface antigens. We show that triggering via CD2 is more efficient for IL-4 production than triggering via the CD3 complex. The addition of a CD28 mAb enhances IL-4 production approximately threefold. Cell depletion experiments show that among CD2 plus CD28-stimulated PBMC the production of IL-4 is restricted to the CD8-CD45RA-T cell subpopulation. mAb interfering with the binding of IL-2 to its receptor can inhibit the production of IL-4 in CD2 plus CD28-stimulated PBMC. As IL-2 induces cell proliferation and production of interferon-gamma, but not production of IL-4, it follows that IL-2 is necessary but not sufficient for IL-4 production.

Antigens, CD↗

TCR signal initiation machinery is pre-assembled and activated in a subset of membrane rafts.

Recent studies suggest that rafts are involved in numerous cell functions, including membrane traffic and signaling. Here we demonstrate, using a polyoxyethylene ether Brij 98, that detergent-insoluble microdomains possessing the expected biochemical characteristics of rafts are present in the cell membrane at 37 degrees C. After extraction, these microdomains are visualized as membrane vesicles with a mean diameter of approximately 70 nm. These findings provide further evidence for the existence of rafts under physiological conditions and are the basis of a new isolation method allowing more accurate analyses of raft structure. We found that main components of T cell receptor (TCR) signal initiation machinery, i.e. TCR-CD3 complex, Lck and ZAP-70 kinases, and CD4 co-receptor are constitutively partitioned into a subset of rafts. Functional studies in both intact cells and isolated rafts showed that upon ligation, TCR initiates the signaling in this specialized raft subset. Our data thus strongly indicate an important role of rafts in organizing TCR early signaling pathways within small membrane microdomains, both prior to and following receptor engagement, for efficient TCR signal initiation upon stimulation.

CD4 Antigens↗

Engagement of CD43 enhances human immunodeficiency virus type 1 transcriptional activity and virus production that is induced upon TCR/CD3 stimulation.

Human immunodeficiency virus type 1 (HIV-1) transcriptional activity is regulated by several cytokines and T cell activators. CD43 (sialophorin) is a sialoglycoprotein expressed on the surface of a wide variety of blood cells including T lymphocytes. Several studies have shown that CD43 ligation induces proliferation and activation of human T lymphocytes. We were thus interested in defining whether CD43-mediated signaling events can modulate the life cycle of HIV-1. We demonstrate here that CD43 cross-linking potentiates HIV-1 promoter-driven activity and virus production that is seen following the engagement of the T-cell receptor (TCR).CD3 complex. This effect is independent of the CD28 co-stimulatory molecule and is mediated by both NF-kappaB and NFAT transcription factors. A number of signal transducers known to be involved in the TCR/CD3-dependent signal transduction pathway, including p56(lck), p36(lat), and SLP-76, as well as capacitative entry of calcium, are crucial for the noticed CD43 co-stimulatory effect. Calcium mobilization studies indicate that a synergy is occurring between CD43- and TCR/CD3-mediated signaling events leading to an augmented calcium release. These data suggest that CD43 can be seen as a co-stimulatory cell surface constituent that can modulate HIV-1 expression in T lymphocytes.

Antigens, CD↗

Intermediate steps in thymic positive selection. Generation of CD4-8+ T cells in culture from CD4+8+, CD4int8+, and CD4+8int thymocytes with up-regulated levels of TCR-CD3.

Minor thymus subpopulations representing possible intermediates in thymic positive selection were isolated by cell sorting from bcl-2 transgenic mice, and cultured 1 to 4 days in simple medium to assess their ability to spontaneously develop the surface phenotype of mature T cells. Recovery of cells was in the 60 to 80% range, and no cell proliferation occurred. Only cells originally expressing high, near mature T cell levels of CD3 developed further in culture by down-regulation of CD4 or CD8. The main mature cell product was CD4-8+, regardless of whether the starting phenotype of the CD3high intermediates was CD4+8+, CD4int8+, or CD4+8int; only an intermediate subpopulation expressing the highest levels of CD4 (CD4high8int) produced a dominance of CD4+8- mature progeny. Partial down-regulation of CD8 was therefore not a good indicator of CD4+ T lineage commitment. These and previous results indicate that maturation to the CD8+ T lineage involves a rapid up-regulation of the TCR-CD3 complex, but a relatively slow down-regulation of CD4; it may also involve a partial, transient reduction in surface CD8. In contrast, maturation to the CD4+ T lineage involves a relatively rapid down-regulation of CD8, with maintenance of high levels of CD4. There appears to be a marked asymmetry in the developmental steps leading from CD4+8+ thymocytes to the CD8+ or to the CD4+ T cell lineage.

Animals↗

Morphine-induced thymic hypoplasia is glucocorticoid-dependent.

Mice administered morphine as a s.c. pellet implant exhibit a marked and sustained thymic hypoplasia as well as suppression of T lymphocyte functions. In the present study, the effects of morphine on thymocyte differentiation were characterized. Morphine produced a significant decrease in both the number and proportion of CD4+/CD8+ double positive (DP) cells. The percentage of the CD4+/CD8-, CD4-/CD8+, and CD4-/CD8- double negative subsets in these mice was proportionally increased. Morphine also increased the proportion of cells expressing either the epsilon-chain of the CD3 complex or the IL-2R. The initial reduction in the proportion of DP thymocytes appeared fully recovered by 10 days post-implantation, although the number of DP thymocytes gradually returned to normal over a 3-wk period. Morphine administration resulted in a marked increase in serum corticosterone levels, and a single injection of dexamethasone mimicked the effects of morphine on thymus differentiation. Furthermore, adrenalectomy abolished the morphine-induced decrease in CD4+/CD8+ thymocytes relative to a sham-operated group. The present findings are consistent with the hypothesis that morphine-induced thymic hypoplasia may be mediated by an increase in the circulating levels of corticosterone.

Adrenalectomy↗

Freshly isolated tumour-infiltrating T-lymphocytes have a high cytotoxic potential, as measured by their ability to induce apoptosis in the target cell.

To test if freshly isolated tumour-infiltrating lymphocytes (TIL) can induce apoptosis in a target cell, we have combined two previously described methods. Because TIL predominantly are T-lymphocytes, we have applied a redirected approach. When the target cells that express anti-human-CD3 monoclonal antibodies in their membranes bind to the T cell receptor-associated CD3-complex, signals are generated, which activate T cell effector mechanisms. This approach circumvents problems with MHC-restriction and allows for functional testing of all T cells, irrespective of their clonal specificity. In order to assay for induction of DNA fragmentation, we have labelled the target cell nuclei with [3H]thymidine. Upon harvesting fragmented DNA are washed away. Electrophoretic analysis of the fragmented DNA demonstrated the characteristic 'ladder' pattern, consistent with apoptosis. This rapid and simple assay monitors the capacity of different T cells to induce apoptosis in the target cell. It depends on intercellular interactions and clearly discriminates between different T cell subsets. With this assay we demonstrate the functional integrity of the cytotoxic effector arm of freshly isolated TIL.

Adenocarcinoma↗

Selective in vivo deletion of alloactivated TH1 cells by OKT3 monoclonal antibody in acute rejection.

The OKT3 monoclonal antibody (mAb) recognizing the CD3 complex on human T-cells has been shown to be an effective immunosuppressive agent for the treatment and the prevention of acute rejection episodes in allograft recipients [1]. Following the initial doses of OKT3 mAb, activation of T lymphocytes and monocytes is observed. This is accompanied by a massive cytokine release, particularly following the first injection. The mAb opsonizes the circulating T-cells and the coated cells disappear quickly from circulation. OKT3 mAb is commonly administered for 5-10 days. The manifestation of side effects weeks (cytomegalovirus infection/disease, bacterial and fungal infections) or even months (Epstein-Barr-Virus related lymphoproliferative disease) after therapy as well as the good long-term effects on graft function suggest long-lasting immunosuppressive effects. Since peripheral T-cells reappear in the circulation already during therapy (with modulated CD3/T-cell receptor complex) and T-cell counts reach commonly pretreatment levels within 2-3 days after cessation of OKT3 mAb, the long-lasting immunosuppressive effects are not simply explainable by T-cell depletion. We wondered whether T-cells reappearing in the circulation after cessation of therapy, were functionally different from those before OKT3 mAb therapy. Our data suggest a selective depletion of activated T-cells particularly of type 1-like T-cells by OKT3 mAb resulting in long-lasting immune deviation that may explain the long-term effects of OKT3 mAb treatment.

Clonal Deletion↗

Co-expression of human T cell receptor chains with mouse CD3 on the cell surface of a mouse T cell hybridoma.

In this study we demonstrate that human T cell receptor (TcR) chains can be co-expressed with murine CD3 on the cell surface of a murine T cell hybridoma. Human TcR alpha and beta genes from the Jurkat leukaemic cell line were transfected into a TcR-negative mouse T cell hybridoma, TG40. The Jurkat TcR was successfully co-expressed at the cell surface with mouse CD3 components. Brightly staining transfectants were selected by fluorescence-activated cell sorting, and levels of expression comparable to a normal T cell line were achieved suggesting that the human TcR dimer assembled efficiently with the mouse CD3 complex. Northern blot analysis demonstrated similar levels of TcR messenger RNA to those found in the parental Jurkat line. Although we have not formally demonstrated surface expression of the Jurkat TcR alpha chain, the residual alpha gene transcript which is present in murine TG40 line is non-expressible. In order to test the signalling capacity of this human/mouse complex, the transfectants were stimulated with an anti-V beta 8 monoclonal antibody. This stimulus led to interleukin-2 production by the transfectants, demonstrating the delivery of a transmembrane signal. In addition, B10.A mice were immunised with the transfectants, and the antisera from these mice stained the transfectant and the Jurkat cell line, but not the parental T cell hybridoma. This interspecies transfection approach should now permit us to explore the requirements for T cell activation, the constraints on TcR alpha beta chain pairing, and creates ideal reagents for inducing a mouse anti-human TcR-specific response with a view to producing panels of anti-human TcR monoclonal antibodies.

Animals↗

The MEK kinase activity of the catalytic domain of RAF-1 is regulated independently of Ras binding in T cells.

Deletion of the amino-terminal domain of Raf-1, which contains the Ras-binding region, results in the constitutive activation of the liberated Raf-1 catalytic domain in fibroblast cell lines. We demonstrate that the MEK kinase activity of the isolated Raf-1 catalytic domain, Raf-BXB, is not constitutively active, but is regulated in Jurkat T cells. Raf-BXB is activated by engaging the antigen receptor-CD3 complex, or treating cells with phorbol myristate acetate or okadaic acid. Increasing intracellular cAMP inhibits Raf-1 activation stimulated by phorbol myristate acetate, but not the activation of Raf-BXB. Serine 621, but not serine 499, is essential for Raf-BXB MEK kinase activity. Because Raf-BXB does not bind Ras, the data establishes a Ras-independent signal in directly regulating the activity of the Raf-1 catalytic domain.

Amino Acid Sequence↗

Activation of human thymocytes by antibodies to the CD3/T-cell receptor complex: triggering of different epitopes results in different signals.

Monoclonal antibodies (mAb) against the CD3/T cell receptor (TcR) complex were analyzed for their ability to activate human thymocytes. In addition to mAb detecting epitopes on the CD3 complex (OKT3, BMA 030) the activation potential of recently developed mAb against common epitopes on the alpha/beta T-cell receptor (anti-TcR mAb: BMA 031, BMA 032) was evaluated. Several differences were observed between the two types of mAb: (a) Binding of the tested anti-CD3 mAb to thymocytes resulted in a rapid increase in the level of cytoplasmic free calcium ions [Ca2+]i, whereas no significant changes in [Ca2+]i were detected in thymocytes stimulated with BMA 031 or BMA 032. (b) Induction of effective proliferation induced by mAb OKT3 depended on exogenous IL-2 and in addition on the presence of accessory cells or phorbol-ester. Proliferation induced by BMA 031 only required exogenous IL-2. (c) OKT3 but not BMA 031 inhibited proliferation of thymocytes induced via the CD2 molecule. These studies indicate that anti-CD3 and anti-TcR mAb transduce different signals in thymocytes. Since the two types of mAb are directed to the same molecular complex the observed differences also support the idea that there are functionally different compartments in the CD3/TcR complex which may activate different signaling pathways.

Antibodies, Monoclonal↗

Specificity of gamma delta receptor-bearing cytotoxic T lymphocytes isolated from human peripheral blood.

T-cell receptor (TcR)-gamma delta-bearing lymphocytes were isolated from the peripheral blood of two healthy donors by immunomagnetic separation and subsequently cultured. The cell lines generated showed two distinct patterns of cytotoxicity. One TcR-gamma delta + cell line (HG.D) lysed K562 and U937 target cells, three TcR-gamma delta + cell lines lysed Daudi cells, and one TcR-gamma delta + cell line showed a shift from the former to the latter specificity during culture. Cold target inhibition experiments showed that the HG.D effector cells which were cytotoxic against U937 cells also lysed K562 cells. The cytotoxicity against Daudi cells was strongly inhibited by monoclonal antibodies (MoAb) against the CD3 complex, whereas the cytotoxicity of the HG.D cell line against K562 and U937 was unaffected by such antibodies. The cytotoxicity against Daudi cells was also strongly inhibited in the presence of anti-TcR-gamma delta MoAb. However, in two of the Daudi-specific cell lines, strong cytotoxicity against K562 cells was induced by anti-TcR-gamma delta MoAb. Anti-LFA-1 MoAb caused only a partial inhibition of cytotoxicity, while anti-CD2 and anti-TcR-alpha beta MoAb were found to have no effect. The results indicate that human gamma delta receptor-bearing T cells demonstrate a certain degree of target cell specificity, and that recognition of some target cells may be mediated through the TcR-gamma delta.

Adult↗

Intracellular calcium oscillations in a T-cell line after exposure to extremely-low-frequency magnetic fields with variable frequencies and flux densities.

Low-frequency magnetic fields (MF) can increase the cytosolic calcium concentration ([Ca2+]i) in lymphocytes in the same manner as a physiological stimulus such as antibodies directed towards the CD3 complex. In this study, MF with various frequencies and flux densities were used, while [Ca2+]i changes were recorded using microfluorometry with fura-2 as a probe. The applied sinusoidal MF induced oscillatory changes of [Ca2+]i in the leukemic cell line Jurkat in a manner similar to that seen with stimulation by antibodies. The response at 0.15 mT was over a frequency range from 5 to 100 Hz, with a fairly broad peak having its maximum at 50 Hz. The result of testing increasing flux densities at 50 Hz was a threshold response with no effect below 0.04 mT and a plateau at 0.15 mT. On the basis of the characteristic calcium pattern resulting from an applied MF, we suggest that MF influence molecular events in regular signal transduction pathways of T cells.

Antibodies↗

Exogenous superantigens acutely trigger distinct levels of peripheral T cell tolerance/immunosuppression: dose-response relationship.

Ligand-specific immunosuppression requires an understanding of the parameters that control peripheral T cell tolerance. T cell receptor (TcR) transgenic mice offer a clear advantage for studying post-thymic tolerance mechanisms in vivo that are operational in a monoclonal T cell population with preselected antigen specificity. Yet it is unclear whether the rules defined in monoclonal T cells of genetically manipulated mice reflect those operative in clonally diverse peripheral T cells of normal mice. To analyze acute tolerance mechanisms in unselected peripheral T cells, we challenged normal mice with the superantigen staphylococcal enterotoxin B (SEB) and analyzed ligand-reactive V beta 8+ T cells for TcR-triggered tolerance mechanisms such as anergy, TcR down-regulation, or apoptosis. Upon challenge with graded doses of SEB (0.001-10 micrograms) V beta 8+ T cells become anergic within 6-16 h. Importantly, a dosage effect of SEB in regard to the level of anergy induced was observed. Anergy induced by low concentrations of SEB (0.001-0.1 microgram) is transient and is overcome by clonal growth, while higher concentrations of SEB (0.1-10 micrograms) cause long-lasting anergy resistant to cell cycle progression. At high SEB concentrations (1-10 mg) about 50% of the anergic V beta 8+ T cells additionally down-regulate their TcR-CD3 complex, followed by a loss of CD2, CD4, CD8 accessory molecules. In parallel, T cell phenotype-negative but genotypically V beta 8+ T cells are generated. The T cell phenotype-negative cells reacquire their V beta 8+ T cell phenotype upon culture in vitro. In vivo, a subset of V beta 8+ cells, defined by an intermediate stage of TcR down-regulation, i.e. V beta 8lowCD3+ cells, but not T cell phenotype-negative cells are selectively programmed for apoptosis, which occurs within 1 h. These data suggest that SEB triggers distinct tolerance pathways which operate in a hierarchical fashion in clonally diverse ligand-reactive T cells. Specifically, the results illustrate the power of exogenous superantigens to exploit these distinct tolerance pathways, thereby achieving distinct levels of immunosuppression.

Animals↗

Expression of a Ca2+/calmodulin-dependent protein kinase, CaM kinase-Gr, in human T lymphocytes. Regulation of kinase activity by T cell receptor signaling.

Ca2+/calmodulin-dependent protein kinase type Gr (CaM kinase-Gr) is a Ca2+/calmodulin-dependent protein kinase which is enriched in the brain and thymus. In this study, we examined the expression of CaM kinase-Gr in human lymphocytes and the regulation of its catalytic activity by antigen receptor signaling. CaM kinase-Gr was found selectively expressed in T lymphocytes in a developmentally regulated manner. It was present at severalfold higher levels in immature thymocytes (CD3low, CD4+CD8+) relative to mature thymocytes (CD3high, CD4+CD8-/CD8+CD4-) or to circulating T lymphocytes. The kinase was preferentially expressed in CD4+ T lymphocytes, but was not detected in B lymphocytes or in monocytes. The impact of T cell antigen receptor-CD3 complex (TCR.CD3) signaling on kinase activity was examined using Jurkat human leukemic T lymphocytes as a model. Treatment of Jurkat cells with anti TCR.CD3 monoclonal antibody induced rapid autophosphorylation of the kinase on serine residues and a dramatic, autophosphorylation-dependent enhancement of both Ca2+/calmodulin-dependent and autonomous kinase activity. Enzyme autophosphorylation and activation were dependent on the influx of extracellular Ca2+ following receptor signaling but could not be induced by an influx of extra-cellular Ca2+ triggered by ionophores, indicating that additional signals delivered via TCR.CD3 contribute to the activation of CaM kinase-Gr. These findings suggest a role for CaM kinase-Gr in T lymphocyte development and activation and indicate the presence of stringent regulatory mechanisms governing the activity of this kinase in situ.

Adult↗