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Biomedical subjects

D Vercelli

Publications and source records attributed to D Vercelli.

At least 37 records · Page 2Linked to original sources

Expression of IL-2 and IL-4 in T lymphocytes transformed by herpesvirus saimiri.

Herpesvirus saimiri (H. saimiri) is a highly oncogenic lymphotropic herpesvirus which can immortalize T lymphocytes and cause tumors in rabbits and New World monkeys. T cells infected with strain 484-77 of group C express four viral U-like small RNAs (HSUR1-4) and a 1.2-kb mRNA which encodes open reading frames ORF-1 and ORF-2. ORF-1 encodes a collagen-like oncoprotein. Deletion mutation analysis showed that ORF-1 and ORF-2 are essential for IL-2 independent growth of human T cells infected with H. saimiri. An earlier study also demonstrated that H. saimiri-immortalized cells carry functional IL-2 receptors. The work presented in this report investigated whether IL-2 and IL-4 is produced by H. saimiri-immortalized T lymphocytes. Both IL-2 mRNA and IL-4 mRNA were detected in various monkey T cells as well as human peripheral blood lymphocytes infected with wild-type H. saimiri. Secretion of IL-2 was suggested by cyclosporin A inhibition. IL-4 secretion by monkey T cell cultures was demonstrated by a bioassay and inhibition of bioactivity by an antibody to IL-4. The data also show that recombinant IL-4 stimulate H. saimiri-immortalized T cells; thus, IL-4 receptors are expressed. However, antibodies to human IL-4, IL-4 receptor, or soluble IL-4 receptor did not curtail growth of transformed cells. T cells infected with ORF-1 and ORF-2 deletion mutants expressed no detectable IL-2 mRNA. ORF-1, ORF-2, HSUR1, and HSUR2, were all essential for expression of IL-4 mRNA. These data are consistent with the hypothesis that H. saimiri-immortalized monkey and human T lymphocytes proliferate through autocrine secretion of IL-2 and that ORF-1, ORF-2, and HSUR sequences of the virus are involved in expression of lymphokines.

Animals↗

Role of protein tyrosine kinases and phosphatases in isotype switching: crosslinking CD45 to CD40 inhibits IgE isotype switching in human B cells.

Protein tyrosine kinases and protein tyrosine phosphatases play an important role in the transduction of signals via antigen receptors in T and B cells, and in CD40-dependent B-cell activation. To examine the role of tyrosine kinases and phosphatases in B-cell isotype switching, we examined the effects of the engagement of the transmembrane phosphatase CD45 on the synthesis of IgE induced by IL-4 and anti-CD40 monoclonal antibody (mAb). Crosslinking CD45 to CD40 using biotinylated mAbs and avidin strongly inhibited CD40-mediated IgE synthesis in IL-4-treated human B cells. CD40/CD45 crosslinking did not affect epsilon germline transcription in B cells stimulated with IL-4, but strongly inhibited induction of S mu/S epsilon switch recombination as detected by a nested primer polymerase chain reaction assay. The B-cell src-type tyrosine kinase lyn, which is activated following CD40 engagement, is a potential target for the effects of CD45 observed in our experiments, because CD45/CD40 crosslinking resulted in the inhibition of CD40-mediated lyn phosphorylation and activation. These results suggest an important role for protein tyrosine kinases and phosphatases in CD40-mediated induction of isotype switching to IgE.

Antigens, CD↗

Interleukin-4 receptor expression by human B cells: functional analysis with a human interleukin-4 toxin, DAB389IL-4.

BACKGROUND: Studies of human IgE-secreting B cells have proven difficult because of the small size of this population. We have used an interleukin-4 (IL-4) fusion toxin to detect functionally IL-4 receptor (IL-4R) expression on B cells involved in IgE synthesis. METHODS: In diphtheria toxin IL-4 (DAB389IL-4) the receptor-binding domain of diphtheria toxin has been replaced with human IL-4. DAB389IL-4 cytotoxicity depends on IL-4R binding and internalization. RESULTS: Addition of DAB389IL-4 inhibited IgE synthesis induced by IL-4+ anti-CD40 monoclonal antibody or hydrocortisone. IgE inhibition resulted from DAB389IL-4 B-cell cytotoxicity because DAB389IL-4 inhibited IL-4-independent B-cell proliferation. Thus induction of human IgE synthesis involves IL-4R+ cells. In contrast, terminally differentiated, IgE-producing B cells no longer express functional IL-4R because DAB389IL-4 only modestly inhibited ongoing IgE synthesis by B cells from patients with hyper-IgE states and only minimally affected IL-4-induced IgE synthesis in normal B cells when the toxin was added at day 7. Pokeweed mitogen-induced IgM synthesis was sensitive to early but not to late addition of DAB389IL-4. Thus the loss of functional IL-4R immunoglobulin-secreting B cells is independent of isotype switching. CONCLUSIONS: IgE-secreting B cells no longer express functional IL-4R. Therapies for allergic disease that target the IL-4R would not affect IgE-secreting B cells but may block the recruitment of B cells into the IgE-secreting pool. For optimal benefits this approach may be combined with therapies that target IL-4R-, IgE-secreting B cells.

B-Lymphocytes↗

Mutual influence between vesicourethral and anorectal function in spinal cord injury patients.

There is clinical evidence of a relationship between urethrovesical and anorectal dysfunction in spinal cord injured patients. This study was performed to assess how rectal distension could influence the results of urodynamic investigations. Ten patients with spinal cord injury were submitted to repeated urodynamic evaluations under different rectal conditions after performing complete anorectal testing. Distension of the rectal ampulla may interfere with vesicourethral function in spinal cord injured patients: in those with complete spinal cord lesions rectal distension causes a reduction in bladder compliance, earlier and higher amplitude of the first hyperreflexic contraction, and an increase in detrusor-external urethral sphincter dyssynergia. We suggest that urodynamic evaluation of spinal cord injured patients should not normally be performed if the patient has a full rectum.

Anal Canal↗

Engagement of CD14 on monocytes inhibits the synthesis of human Igs, including IgE.

Engagement of CD14 on normal human monocytes results in monocyte activation and, furthermore, delivers a negative signal that terminates T cell proliferation. We show herein that engagement of selected CD14 epitopes by specific mAbs inhibited PWM-induced IgM and IgG synthesis, as well as IL-4-dependent IgE synthesis by human PBMCs. Inhibition by anti-CD14 mAb was still evident when the Ab was added after 6 days of culture, suggesting that inhibition targets a late B cell activation event. In experiments that focused on the role of CD14 in IgE regulation, suppression of IgE synthesis after CD14 engagement did not result from the release of inhibitory monokines (IL-10, TGF-beta, and PG). In fact, neutralizing Abs and specific inhibitors did not restore the IgE response and anti-CD14-conditioned monocyte supernatants did not inhibit IgE synthesis. On the other hand, inhibition of IgE synthesis by anti-CD14 mAb was not likely to be caused by the lack of soluble factors with amplificatory effects on the IgE response, because addition of either rIL-6 or rTNF-alpha did not overcome CD14-dependent inhibition of IgE production. IgE inhibition after CD14 engagement was exerted at the B cell level, inasmuch as it was observed not only in T cell-dependent IgE induction i.e., mononuclear cells stimulated with IL-4, but also in T cell-independent systems, i.e., T cell-depleted populations stimulated with IL-4 plus anti-CD40 mAb or IL-4 plus hydrocortisone. These data indicate that CD14 plays a regulatory role in B cell responses.

Antibody Formation↗

Antiidiotypic antibodies mimic molecular and functional properties of human IL-1 beta in vitro and in vivo.

We obtained affinity-purified polyclonal anti-id antibodies against mAb MhC1 and BrhC3, which recognize amino acids 133-147 at the N-terminus of mature human IL-1 beta. mAb MhC1 and BrhC3 have been shown to inhibit binding of IL-1 beta to type I IL-1R, and to neutralize IL-1 beta bioactivity in a number of in vitro assays. We show that affinity-purified antibodies against the MhC1 and BrhC3 idiotypes specifically bind to type I IL-1 beta IL-1R and that this binding is inhibited by both IL-1 beta and IL-1ra; anti-id antibodies were also able to trigger IL-1R-dependent events, such as IL-8 secretion by human skin fibroblasts and pyrogenic effect after injection in mice. These anti-id antibodies, therefore, behave as structural and functional "images" of IL-1 beta, both in vivo and in vitro. These data indicate the idiotypic strategy as a powerful tool to study the fine specificity of receptor-ligand interactions. Moreover, this is, to our knowledge, the first report showing that the "internal image" of a cytokine can be active in vivo.

Animals↗

Sequential switching from mu to epsilon via gamma 4 in human B cells stimulated with IL-4 and hydrocortisone.

The molecular events leading to IgE synthesis in human B cells stimulated with IL-4 and hydrocortisone were analyzed. IL-4, but not hydrocortisone, induced C epsilon germ line transcription. However, hydrocortisone increased the levels of IL-4-induced germ line C epsilon transcripts by twofold and delivered the signal required for transcription of mature C epsilon mRNA. Nested primer polymerase chain reaction of high m.w. DNA revealed deletional switch recombination occurring in B cells sorted for lack of expression of surface IgE and stimulated with both IL-4 and hydrocortisone, but not in B cells stimulated with IL-4 alone or hydrocortisone alone. DNA sequence analysis of 10 switch fragments revealed direct joining of S mu to S epsilon in eight fragments, one of which exhibited an 876-bp deletion in S mu. The ninth fragment contained a 50-bp insertion at the S mu/S epsilon junction, which was likely to be derived from S gamma 4. The sequence of the 10th fragment was consistent with either a 17-bp insertion at the S mu/S epsilon junction derived from S gamma 4 or with a complex 38-bp deletion within S epsilon. Mapping of the switch junction sites showed "hot spots" for recombination within S mu but not within S epsilon. These findings indicate that hydrocortisone induces S mu-S epsilon deletional switch recombination in IL-4-treated B cells, and support a model of sequential isotype switching from IgM to IgE via IgG4.

B-Lymphocytes↗

Effects of cisapride on anorectal and vesicourethral function in spinal cord injured patients.

The effect of cisapride on constipation in para and tetraplegia is well known. We have investigated the effects of this prokinetic drug on anorectal activity and on the function of the lower urinary tract. One result of the anorectal study showed a significant increase in activity and a reduction in compliance of the ampulla. The urodynamic study demonstrated earlier and higher amplitude reflex contractions in hyperactive bladders; hypoactive bladders significantly reduced their compliance. No functional alterations of striated urethral sphincter were observed.

Anal Canal↗

Molecular analysis of the induction of immunoglobulin E synthesis in human B cells by interleukin 4 and engagement of CD40 antigen.

The molecular events leading to immunoglobulin E (IgE) synthesis in human sIgE- B cells stimulated with interleukin 4 (IL-4) and anti-CD40 monoclonal antibody (mAb) 626.1 were analyzed. Anti-CD40 mAb increased the levels of IL-4-induced germline C epsilon transcripts and induced the production of mature C epsilon mRNA. These effects were dependent on the presence of IL-4. Nested primer PCR revealed deletional switch recombination occurring only in B cell stimulated with both IL-4 and anti-CD40 mAb. DNA sequence analysis of switch fragments showed direct S mu/S epsilon joining, without the deletions or duplications within S mu often found in B cells stimulated with IL-4 and Epstein-Barr virus. Analysis of the switch junction map sites showed "hot spots" for recombination within S mu, but not within S epsilon. These findings indicate that IL-4 provides a signal to B cells to induce germline C epsilon transcription and concurrent CD40 engagement induces S mu/S epsilon deletional switch recombination, production of mature C epsilon mRNA, and IgE synthesis.

Antigens, CD↗

IgE regulation and lymphokine patterns in aging humans.

IgE production declines with age, and allergic symptoms tend to improve. Aging therefore represents an in vivo model to study IgE regulation. We compared IgE production in older (> or = 60 years old) and young (15 to 30 years old) nonatopic individuals. Addition of exogenous interleukin-4 (IL-4) to mononuclear cells from older and young subjects induced equivalent amounts of IgE, indicating that IL-4 responsiveness is preserved in aging. After surface receptor stimulation with concanavalin A, IL-4 production by mononuclear cells from older subjects was approximately 50% as compared with the young, whereas interferon-gamma (IFN-gamma) production was reduced threefold (p = 0.008). By contrast, stimulation with phorbol esters and ionophore, which bypass surface receptor signaling, induced comparable amounts of IL-4 and IFN-gamma in older and young subjects. These data point to an impairment in T-cell membrane signal transduction in older individuals. This hypothesis was directly confirmed by showing that Ca+2 fluxes after CD3 crosslinking were significantly (p = 0.014) decreased in the older population. Our findings altogether suggest that an age-dependent T-cell activation defect may result in decreased availability of IL-4 and in the waning of IgE responses.

Adolescent↗

Regulation of isotype switching.

In the past year, our understanding of the mechanisms that regulate isotype switching has significantly progressed. Activation of germ line transcription by isotype-specific cytokines is emerging as a crucial mechanism for increasing the accessibility of a particular switch region, and targeting switch recombination.

Animals↗

Lymphokine profile in bone marrow transplant recipients.

Immune reconstitution after bone marrow transplantation (BMT) recapitulates immune ontogeny. At birth there is an imbalance in lymphokine production, with decreased production of interferon-gamma (IFN-gamma) compared with interleukin-4 (IL-4) and IL-2. We investigated whether a similar imbalance in lymphokine production occurs in BMT recipients within 6 months after transplantation. Our results show that BMT recipients not treated with immunosuppressive drugs have a decrease in IFN-gamma production and IL-2, in comparison with IL-4. This imbalance was likely to result from impaired signal transduction through surface receptors, because it was detectable on stimulation with Concanavalin A (ConA), but was overcome completely or largely by stimulation with phorbol myristate acetate (PMA) + ionophore, which bypass surface receptors and mimic the effects of second messengers. In contrast, lymphokine production in patients treated with immunosuppressive drugs (cyclosporine A, corticosteroids) was abnormal after stimulation with PMA and ionophore, as well as ConA. Thus, treated BMT recipients exhibit an additional deficit, which affects the signaling cascade down-stream of second messenger generation and results in impaired lymphokine production.

Adult↗

Deletional switch recombination occurs in interleukin-4-induced isotype switching to IgE expression by human B cells.

There is controversy as to whether deletional rearrangement occurs between the IgM and IgE switch regions (S mu and S epsilon, respectively) during switching to the IgE isotype. We have addressed the issue by stimulating normal human B cells, sorted for lack of expression of surface IgE, to produce IgE by infection with Epstein-Barr virus (EBV) in the presence of interleukin 4 (IL-4). Genomic DNA was amplified for S mu/S epsilon switch junction fragments by utilizing the nested-primer polymerase chain reaction. Switch junction fragments were amplified from B cells infected with EBV in the presence of IL-4 but not from B cells infected with EBV alone. The DNA sequence of these "switch fragments" revealed direct joining of S mu to S epsilon in each case. The recombination sites within S mu were clustered within 900 base pairs at the 5' end of the switch region, suggesting that there are "hot spots" for recombination within S mu. The S epsilon recombination sites were scattered throughout the S epsilon region. These findings indicate that IL-4-induced isotype switching to IgE production in human B cells is accompanied by DNA rearrangements with joining of S mu to S epsilon.

B-Lymphocytes↗

Hydrocortisone and IL-4 induce IgE isotype switching in human B cells.

Induction of IgE synthesis in human B cells requires two signals. The first signal is delivered by the cytokine IL-4. The second signal activates B cells and is delivered by T cells, EBV infection, or engagement of the B cell-specific Ag CD40. Hydrocortisone (HC) has recently been shown to synergize with IL-4 to induce IgE synthesis in CD5+ chronic lymphocytic leukemia B cells. We show herein that a combination of HC and rIL-4 induces IgE synthesis in highly purified normal peripheral blood B cells. HC and IL-4 acted directly on B cells, because T cells and monocytes were not required for IgE synthesis. IgE induction was shown to occur in surface IgE- B cells isolated by cell sorting. These results suggest that IgE synthesis results from isotype switching, rather than from expansion of a precommitted B cell population. Furthermore, IgE synthesis was induced in sorted CD5- B cells, indicating that the ability to produce IgE in response to HC and IL-4 is not constrained by CD5 expression. Endogenous IL-6 was critical for induction of IgE synthesis by HC and IL-4, because an anti-IL-6 antibody strongly inhibited IgE production. These data suggest that hormones may play an important role in the regulation of IgE synthesis.

Antigens, CD↗