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Query: UNIPROT:P14784 (IL-2 receptor)
3,849 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Interleukin-2 (IL-2), a crucial growth factor for mature T lymphocytes, is produced in fetal thymus under developmental control, although its biological significance remains unclear. We found that the two distinct subunits of the IL-2 receptor, i.e. the alpha-chain (IL-2R alpha) and the beta-chain (IL-2R beta), were expressed in an almost mutually exclusive fashion throughout fetal thymus ontogeny, and that the blockade of IL-2R beta, a signal transducing component of IL-2R, by administering a neutralizing mAb to IL-2R beta resulted in the complete and selective disappearance of Thy-1+ skin dendritic epidermal cells. Development of any other T cell subsets was uncompromised. This indicates that IL-2 plays a crucial role in the development of fetal V gamma 5+ cells and their descendants.
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PMID:In utero treatment with monoclonal antibody to IL-2 receptor beta-chain completely abrogates development of Thy-1+ dendritic epidermal cells. 135 Apr 62

The aim of this study was to examine the cytokine production and cytokine responsiveness of the first T-cell receptor (TcR) positive cells that appear in the murine fetal thymus, namely TcR V gamma 3 cells. It is shown that IL-2-cultured fetal TcR V gamma 3 thymocytes were capable of producing IL-3, GM-CSF, TNF-alpha and IFN-gamma upon TcR triggering. IL-2, IL-4, IL-5 and IL-6 could not be detected. With regard to cytokine responsiveness, TcR V gamma 3 cells proliferated to a high extent when high concentrations of rIL-2 were added. rIL-4 or rIL-7 alone, but not rIL-1 alone, were capable of inducing a modest proliferation of TcR V gamma 3 thymocytes. When combined with low concentrations of IL-2, a synergistic effect could be observed with IL-1, IL-4 or IL-7. It is shown that the synergistic effect of IL-2 with IL-4 was mainly due to induction of IL-2 receptor expression. The synergistic effect of IL-2 and IL-7 on the proliferation of TcR V gamma 3 cells could only be partially inhibited by anti-IL-2 receptor MoAb, and this antibody had no effect on the IL-2 + IL-1 cultures. These observations can explain the extensive proliferation of TcR V gamma 3 thymocytes during fetal life and they indicate that TcR V gamma 3 thymocytes have the potential to play a functional role during fetal thymus development.
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PMID:Cytokine production and responsiveness of fetal T-cell receptor V gamma 3 thymocytes. 146 22

Thymic epithelial cells (TEC) are known to secrete thymic hormones that influence maturation of T lymphocytes. One of these peptides, thymulin, requires zinc in an equimolar ratio for biological activity. A previous study [Cousins, R. J. & Leinart, A. S. (1988) FASEB J. 2, 2884-2890] showed that interleukin 1 (IL-1) in vivo stimulates zinc uptake by the thymus. Both the alpha and beta forms of IL-1, which stimulate proliferation of human TEC, also stimulate their uptake of zinc in vitro, and this latter stimulation is both dependent and independent of proliferation. Zinc induces zinc accumulation without proliferation. Two other stimulants of proliferation, bovine pituitary extract and epidermal growth factor, stimulate zinc uptake by TEC, but only in a manner dependent on proliferation. Utilizing in situ hybridization, we show that the IL-1 alpha and beta forms and zinc induce metallothionein mRNA expression TEC. Metallothionein is thought to be involved in the transfer of zinc to thymulin. IL-1 was shown to stimulate the secretion of thymulin as measured both by its ability to stimulate induction of IL-2 receptor-positive lymphocytes from human peripheral blood lymphocytes and by the azathioprine-sensitive rosette assay. In addition, the zinc-thymulin complex in the presence, but not absence, of IL-1 stimulates nuclear protein kinase C in isolated lymphocyte nuclei. IL-1 apparently regulates the synthesis or secretion and delivery of zinc-thymulin complex to the T-lymphocyte system.
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PMID:Interleukin 1 regulates secretion of zinc-thymulin by human thymic epithelial cells and its action on T-lymphocyte proliferation and nuclear protein kinase C. 150 95

The immunosuppressive effects of prodigiosin 25-C were studied in comparison with FK506. Both prodigiosin 25-C and FK506 suppressed T cell proliferation in response to concanavalin A (con A) or phytohemagglutinin (PHA) more significantly than that to lipopolysaccharide. However, prodigiosin 25-C inhibited con A-mediated mitogenic response more strongly than PHA-mediated one. FK506 showed no selectivity among those responses. In addition, when higher concentration of con A was used an inhibitory effect of prodigiosin 25-C became more evident whereas that of FK506 became less evident. Furthermore, prodigiosin 25-C affected neither interleukin-2 (IL-2) production nor IL-2 receptor (IL-2R) and transferrin receptor (TF-R) expression in vitro, though FK506 extensively inhibited IL-2 production and significantly suppressed IL-2R and TF-R expression. When comparing the effects of prodigiosin 25-C and FK506 in vivo by injecting antigens of different nature to a mouse, prodigiosin 25-C selectively inhibited cytotoxic T lymphocyte (CTL) activity induced by an allogenic mastocytoma, P815, without affecting production of antibody against a thymus dependent (TD) antigen, sheep red blood cell (SRBC). On the contrary, FK506 significantly inhibited both CTL induction and the antibody production. When Brucella abortus, a thymus independent (TI) antigen, and SRBC were simultaneously challenged to a mouse, neither prodigiosin 25-C nor FK506 affected antibody production against the TI antigen while the effect on the TD antigen were the same as described above. The present results revealed the unique immunosuppressive property of prodigiosin 25-C which was different from that of FK506.
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PMID:Selective immunosuppression of prodigiosin 25-C and FK506 in the murine immune system. 170 65

We have recently described a bone marrow culture system which is able to maintain, for at least 2 weeks, cells which have the capacity to repopulate the thymus of irradiated recipient mice (pre-T cells). Because this culture system depends upon the addition of an exogenous growth factor (IL-3) which may potentially influence the differentiation of the cultured pre-T cells, it is important to determine whether or not the progeny of cultured marrow cells are able to develop within the thymus in a kinetically normal fashion. Here we report the results of an analysis of the progeny of those cultured progenitor cells at 2, 3, and 4 weeks following intrathymic transfer. The passage of cultured donor-derived cells through critical early (expression of the IL-2 receptor) and late (expression of high levels of CD3) intrathymic events was assessed in these studies and compared with the pattern observed in the progeny of fresh bone marrow cells. The results of these studies showed that the progeny of cultured pre-T cells were able to develop expression of the IL-2 receptor and CD3 surface antigen during their residency within the thymus. In addition, both the timing and levels of expression of these surface markers were virtually identical on the progeny of fresh and cultured pre-T cells. These data suggest that cultured pre-T cells are not dramatically altered by their passage in vitro and are able to give rise to normally developing thymocytes upon in vivo transfer.
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PMID:Characterization of the progeny of pre-T cells maintained in vitro by IL-3: expression of the IL-2 receptor and CD3 during thymic development. 182 46

Interleukin-2 (IL-2) belongs to a series of mediators that are produced by T cells and exert multiple, pleiotropic effects in an autocrine or paracrine fashion. IL-2 plays a fundamental role in the ontogeny of developing T cells in the thymus and supports the growth or effector function of a wide array of immunologically relevant cells, including macrophages and B and NK lymphocytes, as well as a variety of different T-cell subpopulations. Nonetheless, the function of this lymphokine must be highly controlled in vivo to avoid systemic effects that might endanger the specificity of an immune response and result in autoimmune reactions. Accordingly, various mechanisms guarantee compartmentalization of IL-2, that is, chronological and spatial restriction of IL-2 production, bioavailability, and state of responsiveness. The secretion of IL-2, as well as the expression of the two components of the high-affinity IL-2 receptor (IL-2R), are developmentally controlled during ontogeny and, within the cellular immune system, are restricted to defined pre- and intrathymic stages of immature T cells or T-cell precursors. In the peripheral lymphoid organs, IL-2 is produced by a defined population of mature CD4+ T lymphocytes in which the IL-2 gene is transcribed or silenced, depending on the combination of antigenic and nonspecific activation signals to which the cell is exposed. Thus, the absence of certain costimulatory signals leads to a long-lasting inactivation of the IL-2 gene, a phenomenon that accompanies nondeletional T-cell tolerance. IL-2 has a short half-life and is secreted in apposition to the cell with which the T cell interacts. Expression of the high-affinity IL-2R is activation-dependent in most cell types. Thus, different mechanisms, intervening in all compartments relevant for the action of IL-2, together contribute to a restriction of IL-2 effects, conferring a relative specificity to this pleiotropic mediator.
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PMID:Interleukin-2: counteracting pleiotropy by compartmentalization. 187 49

We have used the technique of in situ hybridization to investigate the transcription of genes encoding the CD3 complex and the lymphokine interleukin 4 (IL-4) by human pro-T cells--i.e., cells that phenotypically resemble those T-cell precursors that colonize the thymus during early intrathymic development. CD1-2-3-4-7+8-45+ pro-T cells isolated from postnatal thymi via immunoselection with a panel of specific monoclonal antibodies are already committed to the T-cell lineage because most of them transcribe the genes encoding the delta and epsilon chains of the CD3 complex. About half of such pro-T cells synthesize IL-4 mRNA in the absence of any exogenous stimulation. Upon culture with IL-4, pro-T cells extensively proliferate and differentiate into functionally competent, mature gamma delta T cells expressing a T-cell receptor repertoire similar to that of gamma delta T cells that can be found in postnatal thymus. The IL-4 response of pro-T cells is not mediated by induction of the interleukin 2 (IL-2)-IL-2 receptor pathway and, unlike IL-2-driven T-cell differentiation, does not require the presence of stromal cells. Taken altogether, these findings suggest that an autocrine IL-4-mediated pathway might be implicated in early thymocyte differentiation--namely, in the generation of T cells bearing the gamma delta T-cell receptor.
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PMID:Involvement of the interleukin 4 pathway in the generation of functional gamma delta T cells from human pro-T cells. 188 11

The development of T-cell lymphomas in rodents infected with type C retroviruses has been linked to the generation of a class of envelope (env) recombinant viruses called mink cell focus-forming viruses (MCF viruses) in the preleukemic thymus. To determine whether infection by MCF viruses altered the growth phenotype of retrovirus-induced T-cell lymphomas, a Moloney murine leukemia virus-induced interleukin-2 (IL-2)-dependent rat T-cell lymphoma line (4437A) was infected with MCF-247, modified MCF-V33 (mMCF-V33), or NZB-xenotropic (NZB-X) virus. The effects of virus infection on the IL-2 dependence of these cells was examined by cultivating them in the absence of IL-2. After IL-2 withdrawal, the uninfected and NZB-X-infected cells went through a crisis period characterized by massive death. All the independently maintained cultures of MCF- and mMCF-V33-infected cells, on the other hand, became IL-2 independent without a crisis. All the polytropic virus-infected IL-2-independent cultures contained a population of cells that was polyclonal with regard to polytropic provirus integration. Over this polyclonal background each culture produced multiple clones of cells that were selected rapidly after IL-2 withdrawal. Furthermore, the resulting MCF- or mMCF-V33-infected IL-2-independent cells retained the expression of IL-2 receptor. These data show that MCF and mMCF-V33 viruses may alter the growth phenotype of a T-cell lymphoma line and suggest that their effect on cell growth may be due to the direct interaction of the MCF envelope glycoprotein with cellular components, perhaps the IL-2 receptor.
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PMID:Infection by mink cell focus-forming viruses confers interleukin 2 (IL-2) independence to an IL-2-dependent rat T-cell lymphoma line. 205 45

Thymocyte cell suspensions, prepared from mice at different ages, were cultured in vitro with human rIL-2. This stimulation resulted in a cell population that contained almost 50% TCR-gamma delta-positive cells if thymocytes were taken from fetal day 17 until just after birth. Analysis of the variable (V gamma) region used by the TCR-gamma delta cells revealed that 90% of them expressed TCR-V gamma 3, and less than 5% expressed TCR-V gamma 2. Cells positive for TCR-alpha beta were barely detectable. If fetal day 18 organ cultured thymus lobes, instead of a cell suspension, were stimulated with IL-2, no rise in the number of TCR-V gamma 3+ or TCR-delta+ cells was observed, whereas a partial outgrowth of TCR-alpha beta+ cells occurred. From day 1 after birth, the number of TCR-gamma delta cells recovered from an IL-2-stimulated thymocyte cell suspension dropped to reach a plateau of 15% of the total cell number, whereas TCR-V gamma 3+ cells became undetectable in older animals. TCR-alpha beta+ cells, on the other hand, quickly rose in cell number after birth. Kinetic analysis showed that the preferential outgrowth of TCR-V gamma 3+ cells in IL-2-stimulated fetal day 18 thymocyte cell suspensions was present from the onset of the culture; a significant proliferation of CD4 or CD8 single positive TCR-alpha beta cells was never observed. This lack of proliferation of TCR-alpha beta cells was not due to inhibition by the activated TCR-V gamma 3+ cells. Throughout the IL-2 culture, one-fourth of the TCR-V gamma 3+ thymocytes was positive for CD8. Analysis of the DNA content and the IL-2 receptor (IL-2R) p55 expression showed that during the first days of culture the TCR-V gamma 3+ cells had a much higher proliferation rate than the TCR-V gamma 3- cells, although TCR-V gamma 3+ IL2R p55+ cells could not be detected. From day 3 to 4 of culture, the proliferation rate of TCR-V gamma 3+ cells equaled that of the rest of the cells and less than 20% of the TCR-V gamma 3+ cells expressed the IL-2R p55. The biologic significance of our findings is discussed.
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PMID:Preferential proliferation of T cell receptor V gamma 3-positive cells in IL-2-stimulated fetal thymocytes. 214 32

High plasma titers of thyroid and adrenocorticoid hormones are present during the metamorphosis of Xenopus laevis. Here we examine the influence of thyroid hormones on several features of immune reactivity during this period, e.g., the capacity of thymus-derived immunocytes to reduce (immune suppression) or amplify (helper function) antibody production. Further, we test whether thyroid hormone is able to modulate the expression of putative interleukin 2 (IL-2) receptors on lectin-activated adult Xenopus splenocytes, an aspect of helper function. Finally, we have tested the ability of thyroid hormones to affect larval antibody-producing cells directly. Our data suggest that all three functions (suppressor, helper, and antibody producing) are independent of thyroid function during metamorphosis. However, the anatomical distribution of two features of immune suppression, as well as the numbers of lectin-activated splenocytes able to bind anti-IL-2 receptor antibody, were changed by thyroid function. In vivo thyroid blockade by thiourea prevented the transition from the premetamorphic to the adult pattern of distribution of the two suppressor functions; triiodothyronine in vitro stimulated an increase in the numbers of cells able to bind an IL-2 receptor antibody.
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PMID:Thyroid function and immune reactivity during metamorphosis in Xenopus laevis, the South African clawed toad. 253 64


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