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H Renz

Publications and source records attributed to H Renz.

At least 145 records · Page 8Linked to original sources

T cells expressing specific V beta elements regulate immunoglobulin E production and airways responsiveness in vivo.

The role of T cells expressing specific V beta elements was examined in the regulation of allergen-specific immunoglobulin (Ig)E production and airways responsiveness (AR). In BALB/c mice, inhalation of the allergen ovalbumin (OVA) induced an IgE anti-OVA response, immediate cutaneous reactivity, and increased AR. These results were associated with an expansion of V beta 8.1/8.2 T cells in local draining lymph nodes of the airways and the lung. Transfer of V beta 8.1/8.2 T cells from sensitized mice stimulated an IgE anti-OVA response, immediate cutaneous hypersensitivity, and increased AR in naive syngeneic recipients. In contrast, OVA-reactive V beta 2 T cells inhibited these effects. These data demonstrate for the first time that T cells with different V beta specificities play a critical role in the in vivo regulation of allergen-specific IgE production and AR.

Allergens↗

Characterization of the progression signal for human T-cell proliferation provided by monoclonal antibodies to the CD3-TCR complex.

Following T-cell activation, two distinct stages in the proliferative response can be identified. The first stage or state of competence (G0 to G1 transition) is defined by the acquisition of the ability of activated T cells to proliferate in response to growth factors. The second or progression phase relates to the progression of cells to DNA synthesis in response to exogenous growth factors (e.g., IL-2) or inducers of growth factor synthesis (e.g., phorbol esters). In the present manuscript we provide evidence that soluble monoclonal antibodies (mAbs) to CD3 or the T-cell receptor (TCR), similar to the phorbol esters, can induce IL-2 production and cell proliferation in competent but not resting T cells. The data indicate the role of CD3-TCR complex triggering not only as an "activating or competence signal" but demonstrate its capacity to signal in the progression phase as well. However, there were distinct differences when competent T cells were stimulated by phorbol ester compared to soluble antibodies to CD3 or TCR. Antibodies to the CD3-TCR complex, when compared to phorbol ester, induced less proliferation in competent, memory T cells (CD45RO) than in competent, naive T cells (CD45RA). In contrast to phorbol ester, the induction of IL-2 transcription and cell proliferation in competent cells by soluble mAbs BMA 031 (anti-alpha/beta T-cell receptor) or OKT3 (anti-CD3) was inhibited by cyclosporin A (CsA). This implies that in activated T cells there is a step between activation of the CD3-TCR complex and the point(s) of action of phorbol ester that is susceptible to CsA in activated cells. Alternatively, the data may indicate involvement of different regulatory elements with different sensitivities to CsA for the induction of IL-2 transcription by phorbol ester or antibodies to the CD3-TCR complex.

Antibodies, Monoclonal↗

Tumor necrosis factor-alpha, interleukin 1, eicosanoid, and hydrogen peroxide release from macrophages exposed to glove starch particles.

The inflammatory mechanisms leading to glove starch powder peritonitis are still unclear. This study was designed to examine the secretory potential of macrophages exposed to starch powder particles. Rat peritoneal macrophages and human monocytes were incubated in vitro with starch particles obtained from three commonly used surgical gloves. It was found that macrophages and monocytes released large amounts of tumor necrosis factor-alpha, interleukin 1, prostaglandin E2, thromboxane B2, and hydrogen peroxide. Release of these inflammatory mediators was associated with progressive cell death of macrophages. These data indicate that postoperative peritonitis and subsequent granuloma formation initiated by glove powder particles may be mediated and maintained, at least in part, by macrophage-derived cytokines, eicosanoids, and reactive oxygen intermediates.

Animals↗

Pokeweed mitogen induces IgE synthesis in the presence of a blocking antibody to the interferon-gamma receptor.

BACKGROUND: Although pokeweed mitogen (PWEM) can induce peripheral blood mononuclear cells (PBMCs) to synthesize IgG, IgA, and IgM, such cultures fail to induce IgE synthesis. The present study examined the possibility that the stimulation of interferon-gamma (IFN-gamma) production plays a role in the failure of PWM to induce IgE synthesis. METHODS: We examined PBMCs from eight normal control subjects for IFN-gamma and IL-4 production. Since IFN-gamma synthesis is known to inhibit IgE synthesis, we also examined the effect of a neutralizing anti-IFN-gamma antibody and of two anti-IFN-gamma receptor antibodies, monoclonal antibody (mAb) GIR208, which blocks cellular binding of IFN-gamma, and mAB GIR94.5, which binds to the IFN-gamma receptor but does not block the binding of IFN-gamma to its receptor on PWM-stimulated PBMCs. RESULTS: After stimulation with PWM, culture supernatants contained significantly more IFN-gamma (p = 0.001) and IL-4 (P = 0.001) compared with supernatants from nonstimulated cultures. PWM-stimulated PBMCs also expressed higher levels of IFN-gamma and IL-4 gene transcripts than unstimulated cells. When cultured in the presence of anti-IFN-gamma, supernatants from PWM-stimulated cultures also induced CD23 on Ramos B cells in an IL-4-dependent manner. In the presence of mAB GIR208 and a neutralizing anti-IFN-gamma antibody, but not mAb GIR94.5, PWM stimulated PBMCs from eight normal control subjects and six patients with atopic dermatitis to produce IgE. Monoclonal antibody GIR208, however, did not enhance IgG synthesis. Furthermore, the exogenous addition of IFN-gamma inhibited the IgE-stimulatory effect of mAb GIR208. Monoclonal antibody GIR208 was unable to induce purified B cells to synthesize IgE in the presence of IL-4. CONCLUSIONS: Thus unlike anti-CD40, mAb GIR208 does not act as a second signal for the induction of IgE synthesis. These results demonstrate that the induction of IFN-gamma production contributes to the failure of PWM to stimulate synthesis of IgE in PBMCs from atopic and nonatopic donors.

Adult↗

Development and transfer of immediate cutaneous hypersensitivity in mice exposed to aerosolized antigen.

We previously showed that BALB/c mice sensitized to ovalbumin (OVA) by brief daily inhalations of antigen over 10 consecutive days exhibit elevated antigen-specific serum IgE antibody levels and increased airways responsiveness. For the first time, we now show that animals sensitized in this fashion to either OVA or ragweed (RGW) develop immediate hypersensitivity skin test reactions when challenged 2 d after completion of the sensitization protocol. Skin testing, performed by direct assessment of wheal formation after intradermal injection of allergen, was sensitive and specific, since animals exposed to RGW by inhalation only responded to RGW, and OVA-sensitized animals responded only to OVA. Positive reactions were associated with mast cell degranulation, whereas control injections were not. Since only sensitized IgE high responder BALB/c mice but neither nonsensitized BALB/c mice nor OVA-sensitized IgE low responder SJL/J mice exhibited wheal responses, induction of OVA-specific IgE appeared to be essential for the mediation of OVA-specific immediate hypersensitivity reactions of the skin in this model. Passive cutaneous anaphylaxis (PCA) testing confirmed the presence of antigen-specific IgE in the serum. Mice that developed IgG (predominantly IgG2b) anti-OVA antibodies did not respond to OVA injection, indicating that OVA-specific IgG was not involved in this system. Further support for the role of IgE in the immediate hypersensitivity response included the wheal response to intradermal injection of anti-IgE antibody that occurred in OVA- and RGW-sensitized mice at 10-fold lower concentrations than in nonsensitized BALB/c mice and not in sensitized SJL/J mice. After transfer of mononuclear cells from peribronchial lymph nodes of OVA- or RGW-sensitized BALB/c mice, naive, syngeneic recipients developed antigen-specific IgE and specific immediate hypersensitivity responses, indicating that the local lymphoid tissue at the site of sensitization can transfer responsiveness to these allergens. These results demonstrate for the first time the ability to elicit and study IgE-mediated immediate skin hypersensitivity responses in the mouse and illustrate the association of increased antigen-specific and total serum IgE levels, airways hyperresponsiveness, and antigen-specific immediate cutaneous reactivity after sensitization to allergen via the airways.

Aerosols↗

Sensitization of rat alveolar macrophages to enhanced TNF-alpha release by in vivo treatment with dexamethasone.

Treatment of rats with dexamethasone rapidly induced a marked weight loss which occurred within 3 days and persisted for several weeks. The cachectic state was paralleled by increased serum levels of triglycerides, albumin, and protein and a strong reduction of blood mononuclear leukocytes. In lung sections, an increased number of mononuclear giant cells was found but no bacteria, fungi, or Pneumocystis carinii organisms. Quite strikingly, alveolar macrophages from dexamethasone-treated rats, but not from control animals, were highly sensitive to LPS and released large amounts of TNF-alpha ex vivo. Also under in vivo conditions, high TNF-alpha serum concentrations were found in dexamethasone-treated but not control rats when examined 1 1/2 hr after an intravenous LPS injection. These data suggest that the glucocorticoid-induced cachexia of rats may be linked, at least in part, to readily inducible TNF-alpha release from primed macrophages.

Animals↗

T cells expressing variable elements of T-cell receptor beta 8 and beta 2 chain regulate murine IgE production.

After sensitization to ovalbumin (Ova) by inhalation of nebulized antigen, BALB/c mice respond with an early rise in IgE but not in IgG anti-Ova antibody production. Our purpose here was to analyze the repertoire of T cells that may contribute to regulating this IgE response. Initial study of Ova-reactive T-cell hybridomas showed that they selectively express the T-cell receptor variable beta-chain (V beta) elements 2, 8.1/8.2, and 14. The frequency of T cells bearing these V beta elements in local draining lymph nodes of the airways and lungs (peribronchial-draining lymph nodes) after Ova inhalation was examined. Local sensitization increased the proportion of V beta 8.1/8.2 T cells in the peribronchial-draining lymph nodes, whereas expression of V beta 2 or V beta 14 was similar in sensitized and nonsensitized animals. In the presence of increased antigen concentrations, V beta 8 and V beta 2 T cells were equally reactive to Ova when cell proliferation was assayed. Coculture of Ova-selected V beta 8 T cells from peribronchial-draining lymph nodes and spleens of sensitized animals with primed splenic B cells increased IgE but not IgG production. The V beta 8 increase in IgE production was related to an increase in numbers of IgE-secreting B cells. In contrast, coculture of Ova-selected V beta 2 T cells with sensitized B cells had no stimulatory effect on either IgE or IgG production. Further, addition of V beta 2 cells to V beta 8 cells inhibited the V beta 8-induced augmentation of IgE production. These data indicate that T cells expressing different T cell receptors or, perhaps, different V beta elements may play different roles in IgE production in sensitized mice.

Animals↗

Monoclonal antibodies directed to different epitopes in the CD3-TCR complex induce different states of competence in resting human T cells.

After the initial stages of activation, T cells are not able to proliferate on their own but become competent to proliferate in response to exogenously added lymphokines. In the present study we compared the capacity of mAb directed to CD3 (OKT3, Leu4, UCHT1) or to common epitopes on the alpha/beta T-cell receptor (BMA 031, BMA 032) to induce competence in purified resting T cells. Stimulation with either soluble anti-CD3 or anti-alpha/beta TCR mAb rendered cells competent to progress to DNA synthesis in response to exogenous IL-2. In contrast, only soluble BMA 031 and BMA 032 were able to induce responsiveness to IL-4; anti-CD3 mAb had either to be immobilized or used in combination with anti-CD28 mAb to induce responsiveness to IL-4. Further, BMA 031-induced IL-4 responsiveness was selectively found in the CD45RA+ T cell subset. Analysis of early activation events revealed that the capacity of soluble BMA 031 and BMA 032 to induce responsiveness to IL-4 did not correlate with the ability of these mAb to increase the level of cytosolic Ca2+ or to induce detectable tyrosine phosphorylation. On the other hand, soluble Leu4 (anti-CD3) triggered an increase in both intracellular Ca2+ and tyrosine phosphorylation but was unable to induce IL-4 responsiveness. These data indicate that the induction of IL-2 and IL-4 responsiveness requires different sets of activation signals which can be induced by stimulating different epitopes in the CD3-TCR complex. This supports the concept that distinct activation pathways are coupled to the CD3-TCR complex.

Antibodies, Monoclonal↗

Factors underlying spontaneous inactivation and susceptibility to neutralization of human immunodeficiency virus.

To determine the factors governing inactivation and neutralization, physical, chemical, and biological assays were performed on a molecular clone of human immunodeficiency type 1 (HIV-1HXB3). This included quantitative electron microscopy, gp120 and p24 enzyme-linked immunosorbent assays, reverse, transcriptase assays, and quantitative infectivity assays. For freshly harvested stocks, the ratio of infectious to noninfectious viral particles ranged from 10(-4) to 10(-7) in viral stocks containing 10(9) to 10(10) physical particles per milliliter. There were relatively few gp120 knobs per HIV particle, mean approximately 10 when averaged over the total particle count. Each HIV particle contained a mean approximately 5 x 10(-17) g of p24 and approximately 2 x 10(-16) g of RNA polymerase, corresponding to about 1200 and 80 molecules, respectively. The spontaneous shedding of gp120 envelope proteins from virions was exponential, with a half-life approximately 30 hr. The loss of RNA polymerase activity in virons was also exponential, with a half-life approximately 40 hr. The physical breakup of virions and the dissolution of p24 core proteins were slow (half-life greater than 100 hr) compared to the gp120 shedding and polymerase loss rates. The decay of HIV-1 infectivity was found to obey superimposed single- and multihit kinetics. At short preincubation times, the loss of infectivity correlated with spontaneous shedding of gp120 from virions. At longer times, an accelerating decay rate indicated that HIV requires a minimal number of gp120 molecules for efficient infection of CD4+ cells. The blocking activity of recombinant soluble CD4 (sCD4) and phosphonoformate (foscarnet) varied with the number of gp120 molecules and number of active RNA polymerase molecules per virion, respectively. These results demonstrate that the physical state of virions greatly influences infectivity and neutralization. The knowledge gained from these findings will improve the reliability of in vitro assays, enhance the study of wild-type strains, and facilitate the evaluation of potential HIV therapeutics and vaccines.

CD4 Antigens↗

IL-4 and IL-2 promote human T-cell proliferation through symmetrical but independent pathways.

The role of IL-4 and IL-2 on normal human T-cell activation and proliferation was studied. Both IL-2 and IL-4 were unable to induce proliferation of resting T cells. Therefore, we investigated their effect and the regulation of the T-cell proliferative response in competent T cells. T cells were rendered competent following incubation with PDB/ionomycin for 30 min or suboptimal concentrations of PHA for 60 min. Cells were then washed and recultured with PDB, IL-2, or IL-4 in the second or progression phase of the culture. Cells cultured in medium alone in this phase did not proliferate. IL-2 and IL-4 independently promoted competent T cells to proliferate to a similar degree as the response to PDB and the combination of IL-2 and IL-4 was not additive. The induction of competence and subsequent responsiveness to IL-2 and IL-4 could be maintained for about 24 hr after which time they become gradually less responsive to the interleukin in the progression phase. Addition of anti-IL-2R mAb or anti-IL-2 mAb resulted in selective inhibition of IL-2-mediated proliferation only. Similarly, addition of anti-IL-4 mAb resulted only in inhibition of IL-4-mediated proliferation. Addition of IL-2 during the progression phase led to an enhancement of IL-2R (TAC) expression while IL-4 did not affect IL-2R expression. The production of IL-2 and IL-4 by competent T cells could not be enhanced by the noncorresponding lymphokine. These results on the protein level were confirmed at the mRNA level as well and demonstrated that only PDB and IL-2 could induce IL-2 mRNA and PDB and IL-4 enhanced IL-4 mRNA. The immunosuppressive drug, cyclosporin A, failed to inhibit progression triggered by PDB, IL-2 or IL-4 in competent T cells. These findings suggest that IL-2 and IL-4 trigger T-cell proliferation through symmetrical, but independent pathways.

Antibodies↗

Reciprocal regulatory effects of IL-4 on cell growth and immunoglobulin production in Ig-secreting human B-cell lines.

The effects of interleukin-4 (IL-4) on cell proliferation and immunoglobulin (Ig) production from three different Ig-secreting B-cell lines (U266, IgE; HSCE-, IgG; LA 350, IgM) were analyzed. Addition of IL-4 increased Ig production by the IgE- and IgG-secreting cell lines and this was paralleled by an inhibition of cellular proliferation. In contrast, the addition of IL-4 to LA 350 cells stimulated cellular proliferation but a decrease in IgM secretion. With each cell line, the IL-4 effects were both dose- and time-dependent and effects were maximal in the presence of 400 U/ml. Further analysis of the mechanism of IL-4 action on Ig production at the single B-cell level using an ELISA spot assay revealed a dualistic effect: increased Ig levels in culture supernatants reflected both an enhancement of single-cell Ig production as well as an increase in numbers of Ig-secreting B cells (IgE and IgG). In LA 350 cells the number of IgM-secreting B cells was suppressed as well as the amount of Ig released by single cells. These data on Ig production were supported by determination of mRNA amounts for the epsilon, gamma, and mu gene transcripts. Addition of IL-4 enhanced the levels of epsilon and gamma message in U266 and HSCE- cells, respectively, and reduced the amount of mu mRNA in LA 350 cells. In the IgE- and IgG-secreting cell lines, the IL-4 effect also correlated with enhanced expression of IL-4 receptor (IL-4R) mRNA levels, whereas IL-4R mRNA levels were unchanged in IgM-producing cells after IL-4 treatment. Incubation of cells with IL-4 and interferon-gamma abolished the stimulatory activities of IL-4 on either cell proliferation (LA 350 cells) or Ig production (HSCE- and U266); but did not influence the inhibitory activities of IL-4 on the cell lines. The immunosuppressive drug cyclosporin A (CsA) inhibited both cell proliferation and Ig production in all three cell lines to a similar degree. Furthermore, in U266 and HSCE- cells, CsA inhibition could not be overcome by IL-4. These data support the conclusion that on Ig-secreting human B-cell lines, IL-4 regulates cell proliferation and Ig production in a reciprocal fashion.

Antibody-Producing Cells↗

Aerosolized antigen exposure without adjuvant causes increased IgE production and increased airway responsiveness in the mouse.

Inhalation of an antigen, ovalbumin (OVA), in the absence of adjuvant has been demonstrated to induce an immune response that is associated with increased airway responsiveness. Determination of OVA-specific serum IgE and IgG antibody responses revealed an early increase in antibody titers that were initially restricted to the IgE class. Subsequently, IgG antibody titers increased and IgE antibody plateaued. Furthermore, we observed a tenfold increase in the number of lymphocytes caused by a predominant expansion of CD3+ T cells in the peribronchial-associated lymph modes (PBLNs) of sensitized animals compared with the numbers of cells in control animals or in the gut-associated lymphoid tissue. The sensitized animals demonstrated an increase in airway responsiveness to intravenous methacholine challenge. Analysis of in vitro immunoglobulin production by spleen mononuclear cells revealed increased spontaneous IgE production that was more than fourfold enhanced in the presence of OVA, but IgG production was not increased. Spleen and PBLN lymphocytes, but not lymphocytes from gut-draining lymph nodes, demonstrated a proliferative response to OVA. Control animals exhibited no proliferative response to OVA. Histopathologic examination of the sensitized lung revealed an absence of acute inflammatory cells (e.g., neutrophils and macrophages), lymphocytes, or monocytes at the time of the increased airway hyperresponsiveness. These data indicate that, after sensitization of mice by inhalation of antigen, the animals develop a specific IgE antibody response, expansion of PBLN lymphocyte numbers, and increased airway hyperresponsiveness in the absence of signs of airway inflammation.

Adjuvants, Immunologic↗

Decreased interferon gamma and increased interleukin-4 production in atopic dermatitis promotes IgE synthesis.

The mechanism(s) responsible for increased IgE synthesis in atopic dermatitis (AD) are unknown, but they may be related to either decreased interferon gamma (IFN-gamma) and/or increased interleukin (IL)-4 production. In this study we examined peripheral blood mononuclear cells (PBMCs) from 21 patients with AD, six patients with psoriasis, and 22 nonatopic healthy controls for IFN-gamma and IL-4 production after stimulation with concanavalin A (Con A). The Con A-induced proliferative response of AD PBMCs was similar to the response of healthy controls (p = 0.9). After mitogen stimulation, however, AD culture supernatants contained significantly less IFN-gamma (p = 0.001) but increased IL-4 (p = 0.001) compared with supernatants from nonatopic controls. In contrast, PBMCs from patients with psoriasis produced normal levels of IFN-gamma and IL-4 in vitro. Since IL-4 is known to decrease IFN-gamma synthesis, we examined the effect of neutralizing anti-IL-4 on IFN-gamma production. Anti-IL-4 significantly increased IFN-gamma production in patients with AD (p = 0.008) and nonatopic controls (p = 0.02) but did not normalize IFN-gamma production by AD PBMCs. Supernatants from AD PBMCs, but not supernatants from nonatopic PBMCs, induced IgE synthesis in PBMCs from nonatopic donors (p = 0.02). When an anti-IFN-gamma receptor antibody, which blocks cellular binding of IFN-gamma, was added to supernatants from nonatopic controls their capacity to induce IgE synthesis was significantly greater (p = 0.03). These results demonstrate an imbalance of IL-4 and IFN-gamma production, which may contribute to increased IgE synthesis in AD.

Dermatitis, Atopic↗

Enhanced IL-4 production and IL-4 receptor expression in atopic dermatitis and their modulation by interferon-gamma.

The in vivo and in vitro immunomodulatory effects of interferon gamma (IFN-gamma) treatment on peripheral blood mononuclear cells (PBMC) from patients with atopic dermatitis (AD) and elevated IgE levels were studied. As part of a double-blind placebo-controlled clinical trial, 14 AD patients were treated with IFN-gamma (n = 7) or saline (n = 7) for 12 weeks. To assess the in vivo effects of IFN-gamma treatment on interleukin (IL)-4-dependent lymphocyte function, we assessed the proliferation of AD PBMC in response to IL-4. Prior to IFN-gamma treatment, AD PBMC had proportionately decreased proliferative responses to IL-4 when compared to IL-2. After 12 weeks of in vivo treatment with IFN-gamma, there was an increase of IL-4- but not IL-2-induced lymphocyte proliferation in seven of eight AD patients. To further study the immunologic basis of these observations, we studied the expression of IL-4 receptor (IL-4R) mRNA and the production of IL-4 by PBMC from AD patients. PBMC from AD patients expressed higher levels of IL-4R mRNA and produced significantly higher amounts of IL-4 than normal controls (p less than 0.05). More importantly, the in vitro addition of IFN-gamma caused significant reduction in both IL-4R and mRNA expression and IL-4 production of PBMC from AD and non-atopic controls. These data indicate that AD is characterized by an in vivo overstimulation of the IL-4-IL-4R pathway. The poor proliferative responses of untreated AD PBMC to exogenous IL-4 may be due to increased levels of endogenous IL-4 production with constant occupancy on the IL-4R. Furthermore, in vivo and in vitro treatment with IFN-gamma down-regulates this pathway.

Adolescent↗

Airway response to electrical field stimulation in sensitized inbred mice. Passive transfer of increased responsiveness with peribronchial lymph nodes.

We have examined the effects of repeated exposure to antigen on airway responses to cholinergic stimulation in two inbred strains of mice that are similar in underlying cholinergic airway responsiveness, yet differ in their ability to produce IgE. Both BALB/c and SJL/J mice were repeatedly exposed to ovalbumin by inhalation for a 10-d period. While the BALB/c mice developed IgE antibody to this allergen, the SJL/J strain failed to mount an appreciable IgE response. In vitro assessments of the response of tracheal smooth muscle from saline exposed mice (controls) of both strains demonstrated responses to both methacholine and electrical field stimulation that were not significantly different between the strains. Following exposure to ovalbumin, the BALB/c strain developed a significant increase in their response to electrical field stimulation, while their response to methacholine was unaltered. In contrast, the in vitro responsiveness to these stimuli did not increase in SJL/J mice following similar exposure to inhaled nebulized ovalbumin. The passive transfer of cells from the peribronchial lymph nodes of ovalbumin-sensitized BALB/c mice into syngeneic nonimmune mice also led to increases in responsiveness of tracheal smooth muscle to electrical field stimulation. In contrast, transfer of cells from nonsensitized mice did not alter responsiveness. These results suggest that murine species capable of developing an IgE response to allergen also develop alterations in the neural control of their airways. Further, this alteration appears to be lymphocyte dependent, in that cells found within peribronchial lymph nodes following allergen exposure are capable of transferring this increase in responsiveness to nonimmune mice.

Animals↗

IL-4-dependent up-regulation of IL-4 receptor expression in murine T and B cells.

This study examined mRNA levels and cell surface expression of IL-4 receptor (IL-4R) in murine T and B cells after incubation with IL-4. Northern blot analysis of mRNA levels of T cells isolated from mesenteric lymph nodes and spleen revealed that IL-4 induced a transient augmentation of IL-4R mRNA in a dose-dependent manner. Maximal levels of mRNA were detected as early as 5 h after initiation of culture. These data were complemented by studies examining the cell surface expression of IL-4R using an anti-IL-4R mAb. Resting T and B lymphocytes express IL-4R (T greater than B) and incubation of these cells with exogenous IL-4 increased IL-4R expression to a maximum after 24 h. This effect was abolished after addition of anti-IL-4 antibody. Continuous incubation of T cells in the presence of high concentrations of IL-4 resulted in a down-regulation of IL-4R expression. Addition of the protein synthesis inhibitor cycloheximide blocked the induced increases in IL-4R expression, indicating the requirement for de novo protein synthesis. Both the levels of mRNA and cell surface expression of IL-4R were not affected by addition of exogenous IL-2, and IL-4 regulation of IL-4R expression was not influenced by the immunosuppressive drug cyclosporin A. These data demonstrate that in T and B cells, IL-4 induces a transient up-regulation of IL-4 mRNA levels that is subsequently reflected in increased numbers of IL-4R displayed on the cell surface. This regulation of IL-4R expression by IL-4 provides an important mechanism for amplification of IL-4-dependent activation pathways.

Animals↗