PubMed HealthSearch

Biomedical subjects

F Manca

Publications and source records attributed to F Manca.

At least 19 recordsLinked to original sources

Selective functional depletion of HIV gp120 peptides complexed with MHC from antigen-presenting cells engaged with specific T lymphocytes.

Human T cell lines specific for different peptides of HIV envelope glycoprotein gp120 have been used as probes to identify the availability of functional MHC-peptide complexes on APC. MHC-peptide complexes recognized by T cells specific for peptide 24 (amino acids 225-240) are no longer available on the surface of APC after interaction with irradiated (binding nonproliferating) T cells with the same fine specificity. On the contrary, MHC-peptide complexes recognized by T cells specific for peptide 30 (amino acids 285-300) were functionally available and could stimulate T cells with such a specificity. The reciprocal experiment yielded similar results. The same data were also reproduced with another pair of gp120 peptides. These data demonstrate that upon clustering of peptide-specific T cells with presenting cells presentation of the same peptide to a second cohort of T cells with identical specificity is abolished, suggesting that a selective functional depletion of the MHC-peptide complexes engaged with specific T cells occurs at the surface of the presenting cells. The depletion does not affect other MHC molecules complexed with unrelated peptides.

Amino Acid Sequence

Galactose receptors and presentation of HIV envelope glycoprotein to specific human T cells.

Recognition of viral Ag and of the envelope glycoprotein of HIV (gp120) in particular by human Th cells is critical in the immune response to the viral Ag which includes antibody production and generation of cytotoxic cells. Procedures to increase antigenicity of gp120 are highly desirable in a vaccine perspective. Therefore, to induce activation of gp120-specific T cells by a liminal dose of Ag we enhanced uptake of gp120 by exploiting the galactose receptors on APC. Terminal sialic acid residues were removed by neuraminidase treatment from the carbohydrate side chains of the heavily glycosylated gp120. Galactose residues were exposed and hence recognized by galactose receptors on APC. The experiments demonstrated that 1) human monocytes and dendritic cells, but not cells of the B lineage, bear galactose receptor; 2) galactose receptors are indeed involved because enhanced presentation is inhibited by galactose and acetylgalactosamine and competed for by other asialoglycoproteins; 3) galactose receptors mediate internalization of Ag in intracellular compartments that intersect the processing and presenting pathways, resulting in activation of specific T cells; 4) antigenicity of gp120 for specific T cells can be enhanced by the exposure of galactose residues.

Antigen-Presenting Cells

Kinetic immunodominance: functionally competing antibodies against exposed and cryptic epitopes of Escherichia coli beta-galactosidase are produced in time sequence.

The murine antibody response to Escherichia coli beta-galactosidase (GZ) was analyzed in vivo and in vitro by focusing on two families of antibodies that exert distinct conformational/functional activity on the antigen. Activating antibodies--defined by their capacity to increase the enzymatic activity of defective GZ produced by mutant strains of E. coli--are detected early after secondary challenge. Inhibiting antibodies, which interfere with antibody-mediated enzyme activation, appear later and cause the abrupt fall of activating titer, a scenario suggesting either idiotype/anti-idiotype interaction or opposite pulsions exerted on the antigen molecule. Supporting the latter mechanism, the confrontation of mAbs of the two families produced classical competitive inhibition curves when the readout was enzyme activation, although they recognize two different epitopes of the same molecule: the activating mAb a quaternary conformation-dependent site of wild-type GZ, the inhibiting mAb a sequential determinant exposed only in denatured or in defective enzyme. The different timing of generation of these antibodies during the response may depend on a processing step necessary for unfolding of native antigen and consequent display of certain cryptic epitopes before they can trigger specific B cells. A picture emerges where the response to the various epitopes of a complex antigen is sequentially connected and where the uptake by antigen-presenting cells of antigen complexed with antibodies specific for the exposed epitopes may favor revelation of the cryptic ones.

Animals

Inhibitory activity of HIV envelope gp120 dominates over its antigenicity for human T cells.

HIV-1 envelope glycoprotein (gp120), as a CD4-binding reactant, has been shown to inhibit in its native form human T cell responses to several antigens. Here we show that gp120 in soluble form also inhibits activation of a specific human T cell line that responds to gp120-pulsed autologous antigen-presenting cells. In addition the inhibitory property of gp120 for antigen-driven T cell proliferation depends upon its ability to bind CD4 and is lost when CD4-binding capacity is abolished by denaturation, or blocked by complexing with soluble CD4 or with polyclonal antibodies. In contrast, antigenicity of denatured or complexed gp120 for specific human T cells is preserved. Similar effects are also observed with another CD4-binding reactant (i.e. anti-Leu 3a MoAb), which stimulates and/or inhibits human T cells specific for mouse immunoglobulins depending on native or denatured conformation.

Antibodies, Monoclonal

HIV-induced deletion of antigen-specific T cell function is MHC restricted.

When antigen-specific T cells are pulsed by antigen-presenting cells (APC) in the presence of HIV they are functionally deleted following subsequent exposure to syngeneic APC in the absence of HIV. Recombinant soluble HIV envelope (gp120) is able to induce a similar effect which, unlike that induced by HIV, is reversible. Neither HIV nor gp120 affect the ability to respond to IL-2. Thus it is only antigen-specific responses involving the T cell receptor pathways and CD4/MHC class II interaction that appear to be inhibited by HIV-1 and gp120. Furthermore, the functional impairment caused by HIV-1 is specific to the T cells that respond to the antigen in co-culture with HIV, as there is no apparent effect on 'bystander'-activated T cells specific for another antigen. Antigen-specific T cell lines may be deleted by a signalling mechanism which involves molecules other than gp120/CD4 but still requires MHC class II restriction.

Animals

Thymomodulin increases release of granulocyte-macrophage colony stimulating factor and of tumour necrosis factor in vitro.

To evaluate the effects of thymomodulin (TMD), a thymic biological response modifier derived from calf thymus, on the release of various cytokines involved in the lung immune reactions, human alveolar macrophages (AM) and peripheral blood lymphocytes (PBL) were cultured either alone or in co-cultures. In co-cultures of AM with PBL, TMD did not induce any change in gamma-interferon (gamma-IFN) and interleukin-1 (IL-1) secretion, while it was able to increase the level, of tumour necrosis factor (TNF) (TMD 100 micrograms.m-1, p < 0.05 vs control cultures), and of granulocyte macrophage colony-stimulating factor (GM-CSF) (TMD 1, 10 and 100 micrograms.ml-1 p < 0.05, < 0.05 and < 0.01, respectively, vs control cultures). In cultures of AM alone, TMD did not induce changes in the levels of any of the tested cytokines, whilst in supernatants from PBL lymphocyte cultures, TMD at 1, 10 and 100 micrograms.ml-1 increased the amounts of GM-CSF (p < 0.01 each comparison vs control cultures). Thus, TMD seems to directly stimulate lymphocytes to secrete GM-CSF and to modulate macrophage-lymphocyte interactions, resulting in the release of TNF and GM-CSF.

Adult

[Defecography and manometry in the postoperative follow-up of patients treated with colo-anal anastomosis by the Parks technique for neoplasm stenosis of the rectum].

The Authors report 15 cases of patients with adenocarcinoma of the rectum who were treated using Park's resection. Morphofunctional parameters are evaluated 3 months after surgery using defecography and manometry before the closure of the neostoma and the reactivation of the ano-rectal canal. Opaque defecography enables the morphology and dimensions of the anal canal to be examined together with modifications to the area between the rectum and the anal canal, and the impression of the pubo-rectal sling. In conclusion these data confirm the importance of surgery, whereas the correlation between defecographic and manometric results allows the functional recovery "ad integrum" of the area to be checked.

Adenocarcinoma

The naive repertoire of human T helper cells specific for gp120, the envelope glycoprotein of HIV.

The envelope glycoprotein of HIV gp120 is a T cell Ag in experimental animals and in humans infected with HIV or deliberately immunized with gp120 in various forms. Inasmuch as T cell responses result from the interaction of Ag processed and presented by APC with the unprimed T cell repertoire, we have investigated the human T cell repertoire specific for gp120 in seronegative, normal individuals. T cell lines and clones specific for HIV gp120 were generated by repeated in vitro stimulation of peripheral blood T lymphocytes with gp120-pulsed APC, followed by IL-2 expansion. We observed that the T cell response to whole gp120 involved single restricted immunodominant epitopes in gp120 that differ between responding individuals. Focusing of the response to limited regions of gp120 when the whole Ag is used for priming suggests that one or more adjacent epitopes are immunodominant and mask responses to "immunorecessive" epitopes. We have been able to generate primary in vitro responses to recessive epitopes by stimulation in vitro with synthetic peptides of gp120. The results indicate that a much broader T repertoire can be detected when individual peptides are used for priming in vitro rather than gp120. This information has important implications for the development of vaccination protocols aimed at eliciting diverse immune responses to "immunorecessive" regions of envelope glycoprotein.

Epitopes

Effect of antigen/antibody ratio on macrophage uptake, processing, and presentation to T cells of antigen complexed with polyclonal antibodies.

Activation of a galactosidase-specific murine T hybridoma clone and of a human tetanus toxoid-specific T clone by antigen-presenting cells (APC) was used to evaluate the regulatory function of antibodies complexed with the relevant antigen. Complexed antigen, in fact, is taken up with high efficiency thanks to Fc receptors borne by APC. Antibody/antigen ratio in the complexes proved to be a critical parameter in enhancing antigen presentation. Complexes in moderate antibody excess provided optimal T cell activation independently of the physical state of the complexes (precipitated by a second antibody or solubilized by complement). Complexes in extreme antibody excess, on the contrary, did not yield T cell activation although taken up by APC efficiently. The effect of antibodies at extreme excess was observed with substimulatory dose of antigen (loss of potentiation) and with optimal dose of antigen (loss of stimulation). An excess of specific polyclonal antibodies hampers proteolytic degradation of antigen in vitro, supporting the view that a similar mechanism may operate within the APC that have internalized immune complexes in extreme antibody excess. The possibility that immune complex forming in extreme antibody excess may turn off the T cell response is proposed as a regulatory mechanism.

Animals

Limited clonal heterogeneity of antigen-specific T cells localizing in the pleural space during mycobacterial infection.

To detect possible differences in phenotype and fine specificity for mycobacterial antigens between CD4-positive T cells from peripheral blood (PB) and from inflammatory sites, we identified four patients presenting with a mycobacterial pleural exudate (PE) rich in PPD-specific lymphocytes and with a negative skin test to tuberculin purified protein derivative (PPD) and a negative proliferative response of PB lymphocytes to PPD at the same time. Several weeks after chemotherapy, these patients converted to PPD responsiveness in the periphery, and PPD-specific clones could be generated from PB at this stage. The phenotypic comparison of PE lymphocytes and concomitant PB lymphocytes obtained before treatment showed an increase of CD8 cells and a high frequency of HLA-DR-positive activated T cells in PE. The frequency of tetanus toxoid-specific and Candida albicans-specific proliferating T cells was lower than that of PPD-specific cells in PE but not in PB. PPD-specific clones were derived initially from PE and from PB once the patients had converted to PPD responsiveness. The two sets of clones from each patient were compared for proliferative response to mycobacterial antigen clusters of defined molecular weight ranges. A large number of PE-derived clones (36%) responded to a fraction of 27 to 35 kDa, whereas only one clone from PB responded to the same fraction. The purified antigen P32 (32 kDa), a soluble mycobacterial protein, stimulated PE-derived clones that were responsive to the 37- to 27-kDa fraction but did not stimulate PB-derived clones. The data demonstrate that PE- and PB-derived lymphocytes differ both in phenotype and in fine specificity, suggesting a limited clonal heterogeneity of T cells localizing at the inflammatory site in tuberculous patients without a PPD response in the periphery. Therefore T cells compartmentalized at inflammatory sites provide information that is different from that provided by T cells in the periphery.

Antigens, Bacterial

Interference of monoclonal antibodies with proteolysis of antigens in cellular and in acellular systems.

Monoclonal antibodies complexed with protein antigens can interfere with proteolytic degradation of the antigen. Depending on their fine specificity, they can "protect" well defined regions of the antigen. Because of steric hindrance between bound antibody and proteolytic enzyme, the protected region is larger than the minimal epitope recognized by the antibody binding site. The principle of limited proteolysis proves a valuable tool for the analysis of antigenic fragments and for epitope mapping. Since proteolysis of antigen also occurs in antigen presenting cells, degradation of antigen complexed with a monoclonal antibody (either taken up as an immunocomplex by Fc receptors, or taken up in complexed form with a surface immunoglobulin of a specific B cell) likely modulates the processing pattern of the antigen. This results in a different spectrum of peptides displayed by the antigen presenting cell and thus in different interactions with the antigen specific T cell repertoire. Modulation of T cell response and B cell response by using antigen complexed with different monoclonals is proposed as possible means of interfering with the fine specificity of the response.

Antibodies, Monoclonal

HIV envelope glycoprotein, antigen specific T-cell responses, and soluble CD4.

Specific T cells stimulated by antigen presenting cells (APC) pulsed with antigen in the presence of HIV were no longer detectable with a functional assay, which suggests that HIV has been transferred from APC to the specific activated T cell via an antigen-dependent mechanism to exert its cytopathic effect on activated T cells. In contrast soluble gp120 inhibited antigen-driven proliferation, but this action was reversible and could be blocked by soluble CD4. Thus the chief mechanism of HIV pathogenesis may be gp120/CD4 interaction and HIV may be pathogenic mainly as a producer of gp120.

Antibodies, Monoclonal

AIDS pathogenesis: HIV envelope and its interaction with cell proteins.

The immune deficiency induced by HIV has its origin in the interaction of the outer envelope glycoprotein gp120/gp41 with receptors present on human immunocytes. Virus binding to cells, virus entry and subsequent compartmentalization resulting in productive infection depends on the interaction of gp120/gp41 with CD4 and other accessory molecules. Gp120 and HIV are markedly immunosuppressive of T-cell responses and, in addition, HIV can functionally delete antigen responsiveness of T cells. Abolition of CD4 binding, by denaturation of gp120, allows study of T-cell epitopes in gp120 and shows the denatured molecule is highly immunogenic even in naive subjects (F. Manca, unpublished). The gp120-binding site of CD4 is shared with MHC class II molecules and the reaction of antibodies within this region of CD4 induces conformational changes that may be significant for virus entry into cells or for syncytial formation. The HIV envelope contains sites of sequence homology with monomorphic human MHC class II sites that do not appear to be naturally immunogenic in humans. In addition to the properties of gp120, it is hypothesized that HIV envelope may also represent an 'alloepitope' of class II to the human T-cell repertoire, and is therefore able to induce a chronic allogeneic response not dissimilar to experimentally induced GVHD. These features are of potential importance both for primary vaccination against HIV, and for the long-term treatment of HIV seropositive patients. Induction of effective T-cell responses to gp120 require use of a denatured or otherwise modified product lacking CD4-binding capacity. The potential distortion of the TCR repertoire by the class-II-homologous and CD4-interactive sequences must be assessed.(ABSTRACT TRUNCATED AT 250 WORDS)

Acquired Immunodeficiency Syndrome

In vitro evidence for impaired cellular immune responsiveness in children with chronic renal failure.

We used mixed lymphocyte culture (MLC) as an assay to evaluate in vitro the cellular immune functions of children with chronic renal insufficiency (CRI) or with chronic renal failure (CRF). The proliferative response of lymphocytes from both groups of patients was significantly reduced as compared to the response of control individuals. In addition, the proliferative response of CRF patients treated with hemodialysis was significantly lower than the response of continuous ambulatorial peritoneal dialysis (CAPD) patients. These data confirm that a marked depression of the cellular immune response is detectable in a pediatric population, as predicted from data from the literature on the adult renal failure population.

Child