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J F Gauchat

Publications and source records attributed to J F Gauchat.

At least 19 recordsLinked to original sources

Thiols decrease human interleukin (IL) 4 production and IL-4-induced immunoglobulin synthesis.

N-Acetyl-L-cysteine (NAC) is an antioxidant precursor of intracellular glutathione (GSH), usually given in human as a mucolytic agent. In vitro, NAC and GSH have been shown to act on T cells by increasing interleukin (IL) 2 production, synthesis and turnover of IL-2 receptors, proliferation, cytotoxic properties, and resistance to apoptosis. We report here that NAC and GSH decrease in a dose-dependent manner human IL-4 production by stimulated peripheral blood T cells and by T helper (Th) 0- and Th2-like T cell clones. This effect was associated with a decrease in IL-4 messenger RNA transcription. In contrast, NAC and GSH had no effect on interferon gamma and increased IL-2 production and T cell proliferation. A functional consequence was the capacity of NAC and GSH to selectively decrease in a dose-dependent manner IL-4-induced immunoglobulin (Ig) E and IgG4 production by human peripheral blood mononuclear cells. Interestingly, NAC and GSH also acted directly on purified tonsillar B cells by decreasing the mature epsilon messenger RNA, hence decreasing IgE production. In contrast, IgA and IgM production were not affected. At the same time, B cell proliferation was increased in a dose-dependent manner. Not all antioxidants tested but only SH-bearing molecules mimicked these properties. Finally, when given orally to mice, NAC decreased both IgE and IgG1 antibody responses to ovalbumin. These results demonstrate that NAC, GSH, and other thiols may control the production of both the Th2-derived cytokine IL-4 and IL-4-induced Ig in vitro and in vivo.

Acetylcysteine

Recombinant soluble trimeric CD40 ligand is biologically active.

CD40 ligand (CD40L) is expressed on the surface of activated CD4+ T cells, basophils, and mast cells. Binding of C40L to its receptor, CD40, on the surface of B cells stimulates B cell proliferation, adhesion and differentiation. A preparation of soluble, recombinant CD40L (Tyr-45 to Leu-261), containing the full-length 29-kDa protein and two smaller fragments of 18 and 14 kDa, has been shown to induce differentiation of B cells derived either from normal donors or from patients with X-linked hyper-IgM syndrome (Durandy, A., Schiff, C., Bonnefoy, J.-Y., Forveille, M., Rousset, F., Mazzei, G., Milili, M., and Fischer, A. (1993) Eur. J. Immunol. 23, 2294-2299). We have now purified each of these fragments to homogeneity and show that only the 18-kDa fragment (identified as Glu-108 to Leu-261) is biologically active. When expressed in recombinant form, the 18-kDa protein exhibited full activity in B cell proliferation and differentiation assays, was able to rescue of B cells from apoptosis, and bound soluble CD40. Sucrose gradient sedimentation shows that the 18-kDa protein sediments as an apparent homotrimer, a result consistent with the proposed trimeric structure of CD40L. This demonstrates that a soluble CD40L can stimulate CD40 in a manner indistinguishable from the membrane-bound form of the protein.

Amino Acid Sequence

Undetectable CD40 ligand expression on T cells and low B cell responses to CD40 binding agonists in human newborns.

IgG, IgA, and IgE production by newborn B cells is limited both in vivo and in vitro in various activation conditions, whereas IgM production is readily detectable. It has been suggested that the Ig heavy chain switch inability could be the consequence of T and B cell immaturity. As the interaction between CD40 (expressed on B cells) and its ligand CD40-L (expressed on activated T cells) triggers a key signal required for isotype switching, we studied the expression and function of these two components in normal fetuses, newborns, and infants, compared with adults. CD40-L expression was not inducible in 28 of 30 specimens of newborn cord-blood T cells following incubation with PMA and ionomycin, whereas activation markers such as CD69 were inducible. CD40-L expression was triggered by activation of T cells from infants > 3 wk of age. Surprisingly, T cells from 19- to 28-wk-old fetuses also expressed CD40-L following activation. CD40-L expression on newborn T lymphocytes was induced on T cell lines generated in the presence of PHA and maintained with IL-2 following further stimulation with PMA and ionomycin. CD40-L mRNA transcripts and intracytoplasmic protein expression following activation of newborn T cells were strongly decreased, leading to undetectable protein membrane detection. These results point to a possible transcriptional down-regulation of CD40-L expression by neonatal T lymphocytes. In addition, fetal and cord-blood B cells were poorly able to switch to IgG or IgA by stimulation with CD40 agonists (Ab or soluble CD40-L) in the presence of IL-4 or IL-10 as also detected with surface IgD+ adult B cells. Both phenomena could contribute to the neonatal Ig switch inability, although distinct underlying regulatory mechanisms are probably involved, as suggested by different in vivo time courses.

Adult

CD40 ligand is functionally expressed on human eosinophils.

CD40 ligand (CD40L), a surface molecule which can be expressed by T cells, mast cells and basophils, has been shown to be involved in the control of B cell proliferation, immunoglobulin class switching as well as in the activation of monocytes and T cells. We demonstrate that CD40L can also be expressed constitutively by eosinophils from an hypereosinophilic patient or, upon activation, by the eosinophilic cell line EOL-3 and normal blood eosinophils. Eosinophils were able to induce, in conjunction with IL-4, CD40L-dependent B cell proliferation in vitro. These results suggest that CD40L could play a role in the inflammatory processes during which eosinophil infiltration and activation are observed.

B-Lymphocytes

Interleukin-12 increases interleukin-4 production by established human Th0 and Th2-like T cell clones.

Interleukin (IL)-12 is a potent inducer of cell-mediated immunity: it favors the generation of interferon (IFN)-gamma-producing T cells, increases IFN-gamma production by T cells and natural killer cells and prevents the generation of a Th2 response in murine in vivo models. Nevertheless, the effects of IL-12 on an established Th2 response remain poorly documented. In the present paper, we analyzed the effect of IL-12 on the profile of lymphokines produced by established IL-4-producing Th0 and Th2-like human T cell clones (TCC) and by polyclonal T cells. We found that IL-12 (i) enhances, as previously reported, IFN-gamma production by Th0 TCC and, to a smaller extent, by Th2-like TCC, (ii) increases the proliferation of Th0 and Th2-like TCC and (iii) unexpectedly, synergizes with T cell receptor-associated or nonspecific stimuli in increasing IL-4 production by these TCC. Thus, IL-12 potentiates the production of IFN-gamma and also of IL-4 by established IL-4 producing TCC. Although IL-12 has been widely reported to induce a Th1 response and to prevent the development of a Th2 response in vivo, IL-12 may on the contrary potentiate an established Th2 response in humans.

CD4-Positive T-Lymphocytes

CD23 and B-cell activation.

The past year has seen the publication of significant new findings on the regulation of CD23 expression, the precise interaction of CD23 with CD21 and its functional consequences. Moreover, new advances have been made in unravelling the biochemical network of events downstream from the triggering of CD23 in human B cells. Analyses of the properties of CD23-deficient mice have demonstrated a link between IgE regulation and CD23 in vivo.

Animals

CD23 regulates monocyte activation through a novel interaction with the adhesion molecules CD11b-CD18 and CD11c-CD18.

CD23 is expressed on a variety of haemopoietic cells and displays pleiotropic activities in vitro. We report that in addition to CD21 and IgE, CD23 interacts specifically with the CD11b and CD11c, the alpha chains of the beta 2 integrin adhesion molecule complexes CD11b-CD18 and CD11c-CD18, on monocytes. Full-length recombinant CD23 incorporated into fluorescent liposomes was shown to bind to COS cells transfected with cDNA encoding either CD11b-CD18 or CD11c-CD18 but not with CD11a-CD18. The interaction was specifically inhibited by anti-CD11b or anti-CD11c, respectively, and by anti-CD23 MAbs. The functional significance of this ligand pairing was demonstrated by triggering CD11b and CD11c on monocytes with either recombinant CD23 or anti-CD11b and anti-CD11c MAbs to cause a marked increase in nitrite-oxidative products and pro-inflammatory cytokines (IL-1 beta, IL-6, and TNF alpha). These CD23-mediated activities were decreased by Fab fragments of MAbs to CD11b, CD11c, and CD23. These results demonstrate that CD11b and CD11c are receptors for CD23 and that this novel ligand pairing regulates important activities of monocytes.

CD11 Antigens

CD23 interacts with a new functional extracytoplasmic domain involving N-linked oligosaccharides on CD21.

Human CD21 has been described as a receptor for the C3d,g and iC3b proteins of complement, for the Epstein-Barr virus, and also for IFN-alpha. We reported recently that CD23, a low affinity receptor for IgE (Fc epsilon R2), is a new functional ligand for CD21. To determine the site of interaction of CD23 on CD21, we analyzed the ability of purified recombinant CD23 incorporated into fluorescent liposomes to bind CD21 mutants bearing various deletions of extracytoplasmic short consensus repeats (SCRs). We found that the site of interaction of CD23 on CD21 is on SCRs 5 to 8, with contribution of SCRs 1 and 2. Tunicamycin treatment of CD21-transfected K562 cells strongly inhibited the binding of CD23-liposomes, suggesting that an N-linked sugar, present on SCRs 5 to 8, is involved in the CD23/CD21 interaction. By mutating together or individually, the three asparagines present on SCRs 5 to 8, asparagines (Asn) 370 and 295, but not Asn 492, were shown to be involved critically in the binding of CD23. Furthermore, we mapped the binding sites of a panel of anti-CD21 mAbs and found that at least six epitopes can be detected on CD21. The mAbs that inhibit the most CD23 binding to CD21 map in SCRs 5 to 8. This study indicates that SCRs 5 to 8 represent a novel functional domain on the CD21 molecule, and is the first demonstration of an activity of an extracytoplasmic region of the CD21 outside of SCRs 1 to 4.

Antibodies, Monoclonal

Similar CD40 ligand expression on EL-4 thymoma cell lines with widely different helper activity for B lymphocytes.

A mutagenized subclone of the murine EL-4 thymoma (clone B5) is approximately 30 times more potent than parental EL-4 cells in stimulating proliferation and Ig secretion of murine or human B cells by direct cell contact in the presence of appropriate cytokines. In this study we found that CD40 ligand (CD40L) expression was constitutive and very similar on EL-4 B5 and parental EL-4 cells according to Northern blot and flow cytometry. Activation with phorbol 12-myristate 13-acetate (PMA) alone, PMA and ionomycin, interleukin-1 (IL-1) or human T-cell supernatant did not lead to significant CD40L up-regulation. A receptor-binding assay with soluble CD40 did not reveal different ligand affinities. However, murine and human soluble CD40-IgFc fusion proteins inhibited human B-cell stimulation by EL-4 B5 cells in the presence of human T-cell supernatant. Inhibition was 96% when soluble CD40 was added on day 0 of culture and progressively decreased when the CD40 was added subsequently. Ig secretion by cytoplasmic Ig-positive cells was no longer inhibited. These findings imply that, although CD40 ligand is necessary for B-cell activation by EL-4B5 cells, additional molecule(s) must be responsible for the increased helper activity of the EL-4 B5 clone.

Animals

Stimulation of human IgE production by a subset of anti-CD21 monoclonal antibodies: requirement of a co-signal to modulate epsilon transcripts.

CD21, the receptor for Epstein-Barr virus (EBV) and the complement receptor-2 (CR2), was recently found to interact specifically with CD23, a low-affinity receptor for IgE, and to regulate IgE production. Therefore, the effect of different anti-CD21 monoclonal antibodies (mAb) on IgE synthesis by blood mononuclear cells was investigated. One anti-CD21 mAb, BU-33, was able to increase significantly (more than threefold) interleukin-4 (IL-4)-induced IgE synthesis, whereas HB-5, OKB-7 and B2 anti-CD21 mAb had no effect. BU-33 had no effect on IgG and IgA production and produced only a moderate increase in IgM production. Recombinant, 29,000 MW, soluble CD23 (sCD23) expressed in COS cells exhibited the same IgE-enhancing activity. BU-33 was the best inhibitor of CD23-liposome binding to the CD21-positive cell line RPMI-8226 when compared to the other anti-CD21 mAb tested. BU-33 identified a different epitope on CD21. The effect of BU-33 on IgE production by purified tonsillar B cells and highly purified germinal centre B cells, was dependent on the presence of T cells or anti-CD40 mAb stimulation. Molecular analysis revealed that BU-33 alone failed to induce germline epsilon mRNA but increased the IL-4-induced germline epsilon transcription levels. Moreover, BU-33 had a synergistic effect on anti-CD40 mAb or T-cell-induced productive epsilon transcript expression. These results therefore indicate that the CD23-CD21 interaction needs a co-signal for B-cell differentiation towards IgE production.

Antibodies, Monoclonal

Induction of human IgE synthesis in B cells by mast cells and basophils.

Immunoglobulin E (IgE) is central to the induction of allergic diseases through its binding to the high-affinity receptor (Fc epsilon R1) on mast cells and basophils. Crosslinking by allergens of the bound IgE leads to the release of various inflammatory mediators. IgE production by B cells requires a physical interaction with T cells, involving a number of surface adhesion molecules, as well as the soluble factors interleukin-4 (IL-4) and IL-13 (ref. 5) produced by T cells, basophils and mast cells. Here we report that, in the presence of IL-4, mast and basophilic cell lines can provide the cell contact signals that are required for IgE synthesis. The human cell lines HMC-1 (mast) and KU812 (basophilic) both express the ligand for CD40 (CD40L) which is shown to be responsible for the IgE production. Moreover, freshly isolated purified human lung mast cells and blood basophils are also shown to express CD40L and to induce IgE production. This evidence suggests that mast cells and basophils may therefore play a key role in allergy not only by producing inflammatory mediators, but also by directly regulating IgE production independently of T cells.

Animals

Human CD40-ligand: molecular cloning, cellular distribution and regulation of expression by factors controlling IgE production.

Here we report the cloning of the cDNA for human CD40-Ligand (CD40-L) from a CD4-positive T cell clone. The deduced amino acid sequence predicts a type II membrane protein of 261 amino acids. Northern blot and FACS analysis of PBMNC revealed that the human CD40-L can be detected on T cells and is absent from B cells and monocytes. The human CD40-L is expressed on both CD4- and CD8-positive T cells, (CD45R0+) and (CD45RA+) subsets. We observed that IL-4, an inducer of IgE production, upregulated CD40-L mRNA level while IFN gamma, an inhibitor of IgE synthesis, reduced the expression of CD40-L mRNA. These data suggest a the correlation between human CD40-L expression and IgE production.

Amino Acid Sequence

CD21 expressed on basophilic cells is involved in histamine release triggered by CD23 and anti-CD21 antibodies.

Recombinant full-length human CD23 incorporated into fluorescent liposomes was used to detect a ligand for CD23 on the basophilic leukemia cell line, KU 812. Based on our recent finding that CD23 interacts with CD21 on subsets of B and T cells, we investigated if the same ligand was involved on KU 812 cells. An anti-CD21 monoclonal antibody (mAb) BU-33, was able to totally block CD23-liposome binding to KU 812 cells. Moreover, KU 812 cells express CD21 mRNA and have a cell surface molecule that reacts with anti-CD21 mAb. The CD23/CD21 interaction was not merely physical but was also associated with an increase in histamine release by KU 812 cells. Both recombinant soluble CD23 and an anti-CD21 mAb-mediated effect on histamine release was not restricted to and anti-CD21 mAb-mediated effect on histamine release was not restricted to the leukemic cell line, but was also observed with normal human blood basophils. These data demonstrate that CD21 is expressed on basophilic cells and that CD21 controls histamine production upon ligand-induced stimulation (CD23 or anti-CD21 mAb).

Antibodies, Monoclonal

Regulation of germ-line epsilon transcription and induction of epsilon switching in cloned EBV-transformed and malignant human B cell lines by cytokines and CD4+ T cells.

IL-4 induces germ-line epsilon transcript synthesis in normal human B cells, but a second signal provided by CD4+ T cells is required for subsequent production of productive epsilon mRNA and IgE synthesis. In the present study we demonstrate that IL-4 specifically induces germ-line epsilon transcripts in most EBV lymphoblastoid (LCL) and EBV+ and EBV- Burkitt's lymphoma (BL) cells without inducing IgE synthesis. However, cocultivation of cloned sIgM+, sIgE- EBV-LCL or BL cells with activated CD4+ T cell clones in the presence of IL-4 resulted in IgE production in 13 to 24% of the wells. Analysis of rearranged DNA in IgE-producing cloned BL cells indicated that epsilon switching occurred through a recombination deletion event. IgE production is a stable feature of the cloned switched EBV-LCL and BL cells because these cells continued to produce relatively high levels of IgE in the absence of IL-4 and CD4+ T cells. Induction of IgE synthesis was blocked by IFN-gamma, IFN-alpha, and transforming growth factor beta (TGF-beta), but only TGF-beta inhibited IL-4-induced germ-line epsilon mRNA expression. These results suggest that the inhibitory effects of TGF-beta are mediated via inhibition of germ-line epsilon expression, whereas IFN-alpha and IFN-gamma block other steps in the regulatory processes resulting in induction of IgE synthesis by established human B cell line cells. Our results indicate that the same set of signals that induce normal B cells to switch to IgE synthesis also induce high frequency epsilon switching in cloned established EBV transformed and malignant B cell lines including classical cell lines such as JY and BL-2.

B-Lymphocytes

Immunoregulatory functions of paf-acether. VIII. Inhibition of IL-4-induced human IgE synthesis in vitro.

In the present study we showed that paf-acether (paf), a naturally occurring phospholipid cytokine, down-regulated IL-4-induced IgE production by mononuclear cells from healthy nonatopic donors in a dose-dependent fashion from 10 microM to 10 pM. Kinetic studies indicated that addition of paf together with IL-4 strongly decreased IgE synthesis from day 7 up to day 14. By contrast, paf had little or no inhibitory effect on the levels of IgM, total IgG, and IgA production. The inhibition of IgE synthesis by paf occurred independently of known inhibitors of IgE synthesis, IFN-gamma, PGE2, and transforming growth factor-beta because the addition of anti-IFN-gamma (10 micrograms/ml) mAb, indomethacin (0.1 microM), or anti-transforming growth factor-beta (10 micrograms/ml) mAb, together with paf and IL-4, did not overcome the inhibition of IgE synthesis. Finally, paf not only inhibited IL-4-induced IgE production but also reduced both germ-line and productive IgE transcripts levels by 77 and 67%, respectively, suggesting that modulation of IgE production by paf occurred at the transcriptional level. Taken together, these results suggest a novel IgE regulatory mechanism by phospholipid cytokine.

Dinoprostone

Membranes of activated CD4+ T cells expressing T cell receptor (TcR) alpha beta or TcR gamma delta induce IgE synthesis by human B cells in the presence of interleukin-4.

In the present study it is demonstrated that human B cells can be induced to switch to IgE production following a contact-mediated signal provided by activated T cell receptor (TcR) gamma delta+, CD4+ and TcR alpha beta+, CD4+ T cell clones and interleukin (IL)-4. The signal provided by these T cell clones was antigen nonspecific, indicating that the TcR alpha beta/CD3 or TcR gamma delta/CD3 complexes were not involved in these T-B cell interactions. Activated TcR alpha beta+, CD8+, and TcR gamma delta+, CD4-CD8-, or resting CD4+ T cell clones were ineffective. Intact TcR alpha beta+ or TcR gamma delta+, CD4+ T cell clones could be replaced by plasma membrane-enriched fractions isolated from these activated CD4+ T cell clones. In contrast, membranes isolated from resting TcR alpha beta+, CD4+, TcR gamma delta+, CD4+ T cell clones or an Epstein-Barr virus (EBV)-transformed B cell line (EBV-LCL) failed to provide the costimulatory signal that, in addition to IL-4, is required for induction of IgE synthesis. As described for intact CD4+ T cells, CD4+ T cell membranes induced purified surface IgM+ B cells to switch to IgG4- and IgE- but not to IgA-producing cells, excluding the possibility of a preferential outgrowth of IgG4- and IgE-committed B cells. The membrane activity was inhibited by protease or heat treatment. Induction of IgE synthesis by B cells co-cultured with both TcR alpha beta+, CD4+ and TcR gamma delta+, CD4+ T cell clones and membrane preparations of these cells was blocked by anti-class II major histocompatibility complex (MHC) monoclonal antibodies (mAb), whereas various anti-CD4 mAb had differential blocking effects. Murine L cells, or EBV-LCL transfected with CD4 could not replace CD4+ T cell clones. These results indicate that, although CD4 and class II MHC antigens are required for productive CD4+ T cell clone-B cell interactions, an additional signal, provided by a membrane associated (glyco)protein that is induced by activation of both TcR alpha beta and TcR gamma delta, CD4+ T cells, is needed for induction of IgE production in the presence of IL-4.

Antibodies, Monoclonal

Modulation of IL-4 induced germline epsilon RNA synthesis in human B cells by tumor necrosis factor-alpha, anti-CD40 monoclonal antibodies or transforming growth factor-beta correlates with levels of IgE production.

To determine the role of germline epsilon transcription in IgE synthesis, the effects of cytokines on germline epsilon RNA synthesis in IL-4 dependent epsilon switching in B cells was investigated. Induction of germline epsilon transcription in highly purified B cells seems to be a specific property of IL-4, since none of the other cytokines tested [IL-1 alpha, beta, IL-2, IL-3, IL-5, IL-6, IL-7, IL-9, IL-10, G-CSF, GM-CSF, M-CSF, IFN-gamma, IFN-alpha, tumor necrosis factor (TNF)-alpha, and transforming growth factor (TGF)-beta] were effective. TGF-beta, IFN-gamma, and IFN-alpha inhibit IL-4 dependent IgE synthesis, but only TGF-beta blocked germline epsilon RNA synthesis in purified B cells, indicating that this may be the mechanism by which TGF-beta inhibits IgE synthesis, and that IFN-gamma and IFN-alpha act on other stages of the regulatory process resulting in IgE production. IL-5, IL-6, and TNF-alpha enhance IL-4 dependent IgE synthesis, but only TNF-alpha enhanced IL-4 induced germline epsilon RNA synthesis. Finally, anti-CD40 mAbs and the non-IL-4 producing CD4+ T cell clone A3, which in the presence of IL-4 induce IgE synthesis by purified B cells, both strongly enhanced germline epsilon transcription. These data, together with the observation that epsilon switching in cultures initiated with single sIgM+, sIgE- B cells in all instances was preceded by germline epsilon RNA synthesis, indicate that there is a strong relationship between germline epsilon transcription and IgE synthesis.

Antibodies, Monoclonal