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J Van Snick

Publications and source records attributed to J Van Snick.

At least 37 records · Page 2Linked to original sources

Interleukin-9 enhances resistance to the intestinal nematode Trichuris muris.

Upon infection with the cecum-dwelling nematode Trichuris muris, the majority of inbred strains of mice launch a Th2-type immune response and in doing so expel the parasite before patency. In contrast, there are a few mouse strains which develop a nonprotective Th1-type response resulting in a chronic infection and the presence of adult worms. Of the Th2 cytokines known to be associated with the resistant phenotype (interleukin-4 [IL-4], IL-5, IL-9, and IL-13), comparatively little is known about the contribution that IL-9 makes towards the protective immune response. In this study we demonstrate that IL-9 is expressed early during the Th2-type response and that its elevation in vivo results in the enhancement of intestinal mastocytosis and the production of both the immunoglobulin E (IgE) and IgG1 isotypes. In addition, elevated IL-9 levels in vivo facilitated the loss of T. muris from the intestine. That IL-9 is important in promoting worm expulsion was also seen following infection of IL-9-transgenic mice, which constitutively overexpress the cytokine. These animals displayed an extremely rapid, but immune mediated, expulsion of the parasite. Also evident in these animals was a pronounced intestinal mastocytosis, which was previously shown by us to be responsible for the expulsion of the related nematode Trichinella spiralis from these animals. Taken together with observations of IL-9 production following infection with other helminths, the results imply that IL-9 contributes to the general mast cell and IgE response characteristic of these infections and, more specifically, enhances resistance to T. muris.

Animals↗

Interleukin-9 is involved in host protective immunity to intestinal nematode infection.

Murine studies have demonstrated that, as with other nematodes, infection with the intestinal nematode Trichinella spiralis is associated with a pronounced intestinal mastocytosis, eosinophilia and an elevation in serum levels of total IgE. Both interleukin (IL)-4 and IL-5 are clearly important in the generation of IgE responses and eosinophilia, respectively, but the control of mucosal mastocytosis in vivo is not as well defined. Mucosal mast cells appear to be particularly important with regard to T. spiralis infections as there is good evidence to suggest their involvement in expulsion of the parasite from the host. In this study we examined the effect of the overproduction of the Th2 cytokine IL-9 on infection with this nematode. We demonstrate that naive IL-9-transgenic mice have an intense intestinal mastocytosis and high serum levels of mouse mast cell protease-1. Moreover, upon infection high titers of parasite-specific IgG1 were observed with a heightened mast cell response, which was associated with the rapid expulsion of T. spiralis from the gut. Furthermore, as depression of this mast cell response, using anti-c-kit antibodies, resulted in the inability of these mice to expel the parasite, this study clearly demonstrates an activity of IL-9 on mucosal mastocytosis and the host protective immune response in vivo.

Animals↗

I-309/T cell activation gene-3 chemokine protects murine T cell lymphomas against dexamethasone-induced apoptosis.

We have previously reported that cytokines such as IL-9, IL-4, and IL-6 protect murine thymic lymphoma cell lines against dexamethasone-induced apoptosis. A similar activity, which could not be ascribed to any of these factors, was found in a number of human T cell supernatants that enabled mouse BW5147 thymic lymphoma not only to escape apoptosis but also to maintain proliferation. The protein responsible for this activity was purified to homogeneity from the culture medium of activated leukemic T cells and was found to be identical with the I-309 chemokine. Half-maximal anti-apoptotic activity was obtained with approximately 1 ng/ml, a concentration considerably lower than that required for the monocyte chemotactic activity of this molecule, as measured on THP-1 cells. The purified I-309 also improved the survival of two other mouse thymic lymphoma cell lines. This activity was as potent as that of IL-9, which was the strongest anti-apoptotic factor found to date for these cells. Similar results were obtained for BW5147 cells with recombinant I-309 and with T cell activation gene-3, the murine homologue of I-309, but not with other members of the chemokine family, including IL-8, neutrophil-activating peptide-2, granulocyte chemotactic protein-2, macrophage inflammatory protein-1a, RANTES (regulated upon activation, normal T cell expressed and secreted), monocyte chemotactic protein-1 (MCP-1), and MCP-2. MCP-3, however, showed a minor, but significant effect in this model. Unlike that of IL-9, the activity of I-309 was completely inhibited in the presence of pertussis toxin, indicating the involvement of a G protein in this process.

Animals↗

Differential activity of dexamethasone on IL-2-, IL-4-, or IL-9-induced proliferation of murine factor-dependent T cell lines.

Mouse helper T cell lines were developed that proliferate permanently without Ag and APCs in response to either IL-2, IL-4, or IL-9, three cytokines whose receptors interact with the IL-2R gamma-chain for signal transduction. Depending on the growth factor, a marked difference was observed regarding the ability of dexamethasone (DEX) to inhibit cell proliferation. In three different cell lines, proliferation induced by IL-2 was completely arrested, while that supported by IL-9 was hardly affected. With IL-4, proliferation was also maintained but less markedly than with IL-9. Although DEX was able to induce apoptosis in these cells, the inhibition of IL-2-induced proliferation was not the result of apoptosis, as this process was equally antagonized by all three factors. Moreover, addition of IL-4 or IL-9 to cultures previously incubated with IL-2 and DEX for several days restored cell proliferation. Finally, autonomous cell variants derived from the factor-dependent cell lines were still protected by IL-4 and IL-9 against growth inhibition by DEX. Together, these results indicate that growth stimulation in the presence of glucocorticoids and inhibition of apoptosis involve distinct aspects of cytokine activities.

Animals↗

Dispensability of Jak1 tyrosine kinase for interleukin-2-induced cell growth signaling in a human T cell line.

The tyrosine kinases Jak1 and Jak3 are known to be associated with the beta and gamma chains of interleukin-2 receptor (IL-2R). They are activated by stimulation with IL-2, IL-4, IL-7, IL-9, or IL-15, receptors of which share the gamma chain of the IL-2R. We have obtained direct evidence of Jak1 association with the alpha chains of receptors for IL-4, IL-7 and IL-9 and with the beta chain of IL-2R, which is also common to the IL-15R. Furthermore, we have prepared mutant IL-2R beta chains with a mutation in the box 1 region, which is conserved among the IL-2R beta chain and the alpha chains of the other cytokine receptors sharing the IL-2R gamma chain. Using MOLT-4 transfectants with the mutant beta chains, we found that two conserved proline residues within the box 1 region are essentially involved in association with Jak1. The MOLT-4 transfectants with the mutant beta chains lacking Jak1 association showed IL-2 responsiveness, in terms of activation of Jak3 and Stat5 and induction of cell growth, indicating that Jak1 is dispensable for IL-2-mediated cell growth signaling and that Jak1 activation is not required for activation of Jak3 and Stat5 in the MOLT-4 transfectants.

Antigens, CD↗

A single tyrosine of the interleukin-9 (IL-9) receptor is required for STAT activation, antiapoptotic activity, and growth regulation by IL-9.

Interleukin-9 (IL-9), a T-cell-derived cytokine, interacts with a specific receptor associated with the IL-2 receptor gamma chain. In this report, we analyze the functional domains of the human IL-9 receptor transfected into mouse lymphoid cell lines. Three different functions were examined: growth stimulation in factor-dependent pro-B Ba/F3 cells, protection against dexamethasone-induced apoptosis, and Ly-6A2 induction in BW5147 lymphoma cells. The results indicated that a single tyrosine, at position 116 in the cytoplasmic domain, was required for all three activities. In addition, we observed that human IL-9 reduced the proliferation rate of transfected BW5147 cells, an effect also dependent on the same tyrosine. This amino acid was necessary for IL-9-mediated tyrosine phosphorylation of the receptor and for STAT activation but not for IRS-2/4PS activation or for JAK1 phosphorylation, which depended on a domain closer to the plasma membrane. We also showed that JAK1 was constitutively associated with the IL-9 receptor. Activated STAT complexes induced by IL-9 were found to contain STAT1, STAT3, and STAT5 transcription factors. Moreover, sequence homologies between human IL-9 receptor tyrosine 116 and tyrosines (of other receptors activating STAT3 and STAT5 were observed. Taken together, these data indicate that a single tyrosine of the IL-9 receptor, required for activation of three different STAT proteins, is necessary for distinct activities of this cytokine, including proliferative responses.

Amino Acid Sequence↗

IL-9 induces expression of granzymes and high-affinity IgE receptor in murine T helper clones.

Interleukin 9 (IL-9) is a TH2 cytokine that has been shown to promote the antigen-independent growth of some mouse T helper clones. To characterize the specificity of IL-9-mediated T cell activation, we used a murine T cell clone that could grow with either IL-9 or IL-2. After differential hybridization of a cDNA library, we isolated three genes that were expressed preferentially in the presence of IL-9. Two of them correspond respectively to granzyme A and granzyme B, two proteases expressed by activated T cells. By Northern blot hybridization and functional assays, we found that IL-9 induced the expression of granzyme B in several T cell clones as well as in mast cell lines. In addition, other proteases such as the mouse mast cell proteases were also found to be expressed by IL-9-activated T cell clones. The third IL-9-induced cDNA corresponds to the alpha-chain of the high-affinity receptor for IgE. Several T cell clones expressed this IgE receptor mRNA and were able to bind IgE with high affinity. Taken together, our results indicate that IL-9 induces a mast cell-like phenotype in T cell clones.

Animals↗

Interleukin-9 is a major anti-apoptotic factor for thymic lymphomas.

We have recently shown that interleukin-9 (IL-9) strongly stimulates the proliferation of mouse thymic lymphomas in vitro. Here we report that this factor is also one of the most potent inhibitors of apoptosis induced by dexamethasone (DEX) in such cell lines, even if they do not depend on exogenous factors for growth. For the murine thymic lymphoma BW5147, protection against apoptosis was also obtained with IL-4 and less strongly with IL-6, whereas IL-2, IL-7, and IL-10 were inactive. Moreover, IL-4 and IL-9 maintained proliferation of these cells in the presence of DEX. Analysis of eight other factor-independent thymic lymphoma lines showed significant protection in seven and six cell lines with IL-9 and IL-4, respectively, whereas only three were protected by IL-7 and only two by IL-2. Comparison of the responses to IL-2 and IL-9 in a factor-dependent cell line that responds to both cytokines showed that IL-2 is a stronger inducer of proliferation, while IL-9 is more efficient in protecting the cells against apoptosis. Taken together, our observations suggest that, for thymic lymphomas, proliferation and apoptosis involve distinct regulatory mechanisms and can be differentially regulated by cytokines.

Alkaloids↗

Interleukin-9 and its receptor: involvement in mast cell differentiation and T cell oncogenesis.

Interleukin-9 (IL-9) is a multifunctional cytokine produced by activated TH2 clones in vitro and during TH2-like T cell responses in vivo. The IL-9 receptor is a member of the hemopoietin receptor superfamily and interacts with the gamma chain of the IL-2 receptor for signal transduction. Various observations indicate that IL-9 is actively involved in mast cell responses by inducing the proliferation and differentiation of these cells. The role of IL-9 in T cell responses is less clear. Although freshly isolated normal T cells do not respond to IL-9, this cytokine induces the proliferation of murine T cell lymphomas in vitro and in vivo overexpression of IL-9 results in the development of thymic lymphomas. In the human, the existence of an IL-9-mediated autocrine loop has been suggested for some malignancies such as Hodgkin's disease. Other potential biological targets for IL-9 include B lymphocytes, hematopoietic progenitors, and immature neuronal cell lines.

Amino Acid Sequence↗

Sharing of the IL-2 receptor gamma chain with the functional IL-9 receptor complex.

The third subunit, the so-called common gamma (gamma c) chain, of the IL-2 receptor is shared among the receptors for IL-2, IL-4, IL-7 and IL-15, and dysfunction of the gamma c chain is thought to cause X-linked severe combined immunodeficiency (XSCID) ascribed to impairment of early T cell development. However, cytokines linked to XSCID are as yet unidentified. A mAb specific for the gamma c chain, TUGm2, profoundly inhibited cell proliferation in response to IL-9. Another mAb, TUGm3, immunoprecipitated [125I]IL-9 cross-linked with either the IL-9 receptor or the gamma c chain. These results demonstrate that the gamma c chain is included in the functional receptor complex for IL-9, which was initially characterized as a T cell growth factor and is essential for IL-9-dependent growth signal transduction.

Animals↗

Thymic lymphomas in interleukin 9 transgenic mice.

Transgenic mice overexpressing the interleukin 9 gene were generated to study the biological activity of this cytokine in vivo. Although no major histological or morphological modifications of the lymphoid system were observed in most animals, approximately 7% of transgenic mice developed thymic lymphomas at the age of 3-9 months. The tumor cells, which were clonal, with unique T cell rearrangements, were double positive for the expression of CD4 and CD8. The need for additional transforming events, suggested by the low incidence of spontaneous tumors, was further indicated by the high susceptibility of the transgenic animals to injections of low doses of N-methyl-N-nitrosourea, a chemical carcinogen with a thymic tropism. Expression of interleukin 9 was required for optimal tumor growth in vivo, as one of the tumors studied, which had lost the transgene, was much more efficiently transplanted into transgenic than in normal mice. Moreover, the in vitro proliferative activity of interleukin 9 on cell lines derived from such transgene-negative tumors suggests that an autocrine loop mediates the proliferation of these cells in vivo. Taken together, these results indicate that dysregulated IL-9 expression could be involved in the development of some T cell malignancies.

Animals↗

Human T cell lines and clones respond to IL-9.

The activity of IL-9 on human T cells was investigated. Human T cell lines and clones, derived from PBMC by stimulation with PHA, IL-2, and irradiated allogeneic PBMC, were found to express a strong IL-9R message at the RNA level and to proliferate in the presence of IL-9, irrespectively of their CD4+ or CD8+ phenotype. Moreover, tumor-specific CTL clones also responded to IL-9. Contrasting with other T cell growth factors, such as IL-2, IL-4, or IL-7, IL-9 did not induce the proliferation of freshly isolated T cells. However, a significant proliferative response to IL-9 could be observed after a 10-day activation of PBMC with PHA, IL-2, and feeders. Taken together, our results indicate 1) that the activity of IL-9 on human T cells is wider than initially anticipated on the basis of the data obtained so far with murine cells; and 2) that proliferative responses to IL-9 require previous activation.

Cell Line↗

Interleukin-9 stimulates in vitro growth of mouse thymic lymphomas.

The ability of interleukin (IL)-9 to stimulate the in vitro proliferation of freshly collected mouse thymic lymphoma cells was tested on a panel of 45 tumors, induced by N-methyl-N-nitrosourea (MNU) or by X-ray irradiation. IL-9 significantly stimulated the proliferation of 26 of these tumors. Out of 11 other factors tested, only IL-2, IL-4 and IL-7 showed similar activities. In addition to the responses to IL-9 alone, a potent synergy was often observed between IL-9 and IL-2 for MNU-induced tumors. Synergies between IL-9 and IL-7 or IL-9 and IL-4 were also observed but less frequently. The growth-promoting activity of IL-9 and the synergistic activities of IL-2 and IL-9 for thymic lymphoma cells were confirmed with cell lines established from the fresh tumors.

Animals↗

Interleukin-9 potentiates the interleukin-4-induced immunoglobulin (IgG, IgM and IgE) production by normal human B lymphocytes.

IgE production by normal peripheral blood lymphocytes (PBL) is known to be triggered upon stimulation by interleukin (IL)-4. In the present study we showed that IL-9, another T cell-derived cytokine, markedly potentiated IgE production induced by suboptimal doses of IL-4, whereas no effect of IL-9 was observed in the absence of IL-4. The potentiating effect of IL-9 appeared to be associated with the increased frequency of IgE-producing cells, as revealed by a specific ELISA-spot assay. Under the same experimental conditions, IL-9 also enhanced the IL-4-induced IgG production but did not elicit IgM production. However, IL-9 did not amplify the IL-4-dependent expression of membrane-bound and soluble low affinity receptor for IgE (CD23). IL-4-induced IgE production was also potentiated by IL-6 but not by tumor necrosis factor-alpha and IL-1 beta. The possibility that the activity of IL-9 was mediated by IL-6 released from accessory cells was excluded by the observations that monocyte depletion did not abolish the effect of IL-9 and that IL-9 was still active on fluorescence-assisted cell sorted CD20+ B lymphocytes co-cultured with irradiated murine EL4 cells. In addition, IL-9 was shown to potentiate the IL-4-induced IgG and IgM production by normal human B lymphocytes preactivated with Staphylococcus aureus Cowan strain. Taken together, these data suggest that IL-9 plays a regulatory role in the IL-4-dependent immunoglobulin production.

Antibody Formation↗

Interleukin-9 stimulates the proliferation of enriched human erythroid progenitor cells: additive effect with GM-CSF.

In the study we report here we investigated the colony-stimulating activities of interleukin-9 (IL-9). In the presence of erythropoietin, IL-9 was found to stimulate the proliferation of relatively early erythroid progenitor cells (BFU-E) from normal human bone marrow cells depleted of mononuclear phagocytes and T lymphocytes. Neutralization experiments demonstrated that the observed BFU-E-stimulating effect was not the result of intermediate production of IL-3 or GM-CSF by residual accessory cells in response to IL-9. Accordingly, the effects of IL-9 were preserved when cell suspensions were further depleted of accessory cells using CD34 enrichment of progenitor cells. Furthermore, IL-9 did not stimulate bone marrow mononuclear cells to express mRNA for IL-3, GM-CSF, EPA (erythroid-promoting activity), or IL-4, as determined by a cDNA-PCR method. IL-9 is likely to act on a subpopulation of IL-3-responsive erythroid progenitor cells that are not stimulated by GM-CSF, since plateau concentration of IL-9 and GM-CSF had additive effects on BFU-E formation, whereas a combination of IL-9 and IL-3 did not. In addition to its burst-promoting activity, IL-9 was found to have a modest stimulatory activity on myeloid progenitor cells (CFU-GM) in some experiments, suggesting that this effect may be donor related.

Animals↗

High-affinity and intermediate-affinity forms of the human interleukin 2 receptor, expressed in an interleukin 9-dependent murine T cell line, deliver proliferative signals via differences in their transduction pathways.

Although several reports have claimed that the p70 IL-2R per se transduces a growth signal in lymphoid and non-lymphoid systems, there is no convincing evidence for this in lymphoid T cell lines. In order to investigate the mechanism of IL-2R-dependent signal transduction pathways via the p70 IL-2R in lymphoid T cells, we have established two IL-9-dependent murine (TS1) cell lines stably expressing the human p70 IL-2R subunit or the human p55-p70 IL-2R complex. Whereas the parental T cell line, TS1, proliferated in response to IL-9 or IL-4 but not IL-2, cell lines stably expressing human p70 IL-2R or p55-p70 IL-2R complex proliferated in response to IL-2. This implies that the murine T cell, TS1, contains all the intracellular components necessary for directing IL-2 signalling. In human p55-p70 IL-2R-transfected cells, the expression of a functional murine p55 IL-2R seemed to be induced and regulated by IL-2. In human p70 IL-2R-transfected cells, in the presence of IL-2 an interaction requiring only intermediate-affinity was sufficient for transduction of a proliferative signal. In addition human p70 IL-2R per se, is biologically functional via a transduction pathway not requiring induction of murine p55 IL-2R and consecutive high-affinity complex reconstitution. Thus, although both transfected cell lines can transduce a proliferative signal in the presence of IL-2, a difference in their transduction pathway is probably involved for the induction of p55 IL-2R.

Animals↗

Inhibition by lactate dehydrogenase-elevating virus of in vivo interleukin 4 production during immunization with keyhole limpet haemocyanin.

Interleukin 4 (IL-4) and gamma interferon (IFN-gamma) gene expression in lymph node cells from mice immunized with keyhole limpet haemocyanin in the presence of complete Freund's adjuvant was analysed by polymerase chain reaction. This immunization clearly induced the expression of IL-4 message, whereas IFN-gamma message was only slightly increased. A concomitant infection with lactate dehydrogenase-elevating virus drastically decreased IL-4 expression whereas IFN-gamma message was not modified. Analysis of the kinetics of cytokine production indicated that the virus did not induce a mere change in the timing of lymphokine production, but a persistent inhibition of IL-4.

Actins↗

Interleukin-9.

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Amino Acid Sequence↗