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Biomedical subjects

R C Monteiro

Publications and source records attributed to R C Monteiro.

At least 37 records · Page 2Linked to original sources

Fc alpha receptors mediate release of tumour necrosis factor-alpha and interleukin-6 by human monocytes following receptor aggregation.

The functional capacity of the human monocyte receptor for the Fc portion of IgA (Fc alpha R) in mediating signal transduction was evaluated by cytokine release. F(ab')2 fragments of anti-Fc alpha R monoclonal antibodies (mAb) were used as specific probes to induce release of tumour necrosis factor-alpha (TNF-alpha) and interleukin-6 (IL-6). Multivalent cross-linking by a secondary anti-mouse antibody [F(ab')2 fragments] induced a significant release of TNF-alpha and IL-6 by human blood mononuclear cells, indicating requirements for Fc alpha R aggregation on the cell surface to transmit signals. Both cytokines were released exclusively by adherent cells, identifying monocytes as the responding cells within the mononuclear cell population. This cytokine release could not be due to contaminating endotoxins, because it was not abolished by polymyxin B, a lipopolysaccharide (LPS) inhibitor. Moreover, purified recombinant soluble Fc alpha R inhibited the anti-Fc alpha R mAb-mediated cytokine release from blood monocytes, demonstrating that TNF-alpha and IL-6 were released in a receptor-specific manner. Our data suggest that Fc alpha R, through its capacity to mediate secretion of IL-6, may play an important role in B-cell proliferation and immunoglobulin production. On the other hand, release of TNF-alpha following stimulation of Fc alpha R molecules directly implicates these receptors in amplification and regulation of the inflammatory process occurring during IgA-mediated host defence.

Animals↗

Impaired Fc alpha receptor expression is linked to increased immunoglobulin A levels and disease progression in HIV-1-infected patients.

OBJECTIVES: Expression of immunoglobulin (Ig) A Fc receptors (Fc alpha R) and their saturation by endogenous IgA were studied on blood monocytes and neutrophils to evaluate the role of Fc alpha R in the formation of increased serum levels of IgA and IgA-immune complexes (IgA-IC) observed during HIV-1 infection. METHODS: Peripheral blood samples were obtained from 45 patients at different stages of HIV-1 infection and from 22 healthy volunteers. This study was performed using a quantitative flow cytometry method in which blood cells were stained with anti-Fc alpha R monoclonal antibodies (MAb) recognizing epitopes outside the IgA-binding site and with F(ab')2 fragments of anti-IgA antibodies. Immunoprecipitations of radiolabelled surface Fc alpha R molecules were analysed by sodium dodecylsulphate-polyacrylamide gel electrophoresis under glycosylated and deglycosylated conditions. RESULTS: This study reveals a diminished surface expression of Fc alpha R on blood monocytes of HIV-1-infected patients, which follows disease progression. Fc alpha R molecules on patients' neutrophils have a higher apparent molecular mass (60-90 kD) with normal protein core, suggesting expression of receptors with altered carbohydrate moieties. Increased levels of serum IgA significantly correlate with decreased levels of Fc alpha R in HIV-1-infected patients. Surface Fc alpha R molecules are saturated by endogenous IgA1 in both cell types. CONCLUSION: These findings suggest that defective expression and/or altered glycosylation of Fc alpha R may result in receptor saturation, impairment of IgA catabolism and diminished clearance of IgA-IC in HIV-1-infected patients. Fc alpha R expression represents a new marker for disease progression.

Antigen-Antibody Complex↗

Expression of surrogate light chain receptors is restricted to a late stage in pre-B cell differentiation.

Surrogate light chain (psi LC) genes are transcriptionally active in progenitor B (pro-B) cells before immunoglobulin genes are rearranged. Current hypothetical models suggest that the psi LC proteins may couple with surrogate or conventional heavy chain proteins to form cell surface receptors that signal the progressive differentiation of pro-B, precursor B (pre-B), and immature B cells. Monoclonal antibodies were produced and used to examine the synthesis, expression, intermolecular interaction, and function of psi LC during B cell differentiation. The results indicate that, while psi LC production spans several developmental stages, cell surface expression is confined to a relatively late stage in normal pre-B cell differentiation, during which receptor cross-linkage does not impede cell growth or B cell differentiation.

Animals↗

Recombinant soluble IgA Fc receptor: generation, biochemical characterization, and functional analysis of the recombinant protein.

We previously described the cloning of a human myeloid cell surface receptor for the Fc region of immunoglobulin A (Fc alpha R). In the present study, a soluble version of the Fc alpha R (solFc alpha R) was generated by removing the transmembrane and cytoplasmic coding regions from full-length Fc alpha R cDNA and ligating into a mammalian expression vector. COS-7 cells transfected with the solFc alpha R plasmid secreted a protein that inhibited both immunoglobulin A (IgA) and anti-Fc alpha R monoclonal antibody (mAb) binding to Fc alpha R+ U937 cells. Furthermore, the solFc alpha R bound specifically to and could be eluted from an anti-Fc alpha R mAb-immunoaffinity column, retaining biological activity. Analysis by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) demonstrated that the recombinant full-length Fc alpha R migrates over a molecular mass range of approximately 40-60 kd, consistent with the reported size and heterogeneity of the naturally occurring myeloid cell surface Fc alpha R. The solFc alpha R ran on SDS-PAGE as a smaller band (37-55 kd) that reduced to two bands of 23 and 25 kd following N-glycanase treatment, indicating that the Fc alpha R is a heavily glycosylated protein. The biochemical data, coupled with flow cytometry studies showing that the recombinant Fc alpha Rs bind to five different anti-Fc alpha R mAbs, clearly demonstrate that the cloned Fc alpha R corresponds directly to the major Fc alpha R species expressed on human monocytes, neutrophils, and myeloid cell lines. The generation of soluble receptor protein will permit investigations of the role of Fc alpha R in IgA-mediated immunoregulation, effector functions, and disease.

Antigens, CD↗

Definition of immunoglobulin A receptors on eosinophils and their enhanced expression in allergic individuals.

Fc alpha receptors (Fc alpha R), detected by the binding of IgA and by anti-Fc alpha R antibodies, were found to be differentially expressed on eosinophils and neutrophils. Neutrophils were the major granulocyte population expressing Fc alpha R, and they expressed much higher levels of Fc alpha R than eosinophils. The expression of Fc alpha R by eosinophils could be upregulated approximately threefold by Ca2+ ionophore treatment in a dose- and time-dependent manner. This effect, which was blocked by a chelating agent, was not duplicated by other cellular stimuli. Eosinophils in allergic individuals displayed enhanced Fc alpha R expression, whereas neutrophils did not. The Fc alpha R on eosinophils had a higher molecular mass (70-100 kD) than those identified on neutrophils (55-75 kD). However, removal of N-linked carbohydrates from Fc alpha R of eosinophils and neutrophils revealed a major protein core of 32 kD for both cell types. The data indicate that expression of Fc alpha R molecules with a characteristic glycosylation pattern is upregulated on eosinophils in allergic individuals.

Adult↗

Molecular heterogeneity of Fc alpha receptors detected by receptor-specific monoclonal antibodies.

Fc alpha receptors (Fc alpha R) were isolated from a human monocytic cell line and used to raise four mAb with receptor specificity. The antibodies were used to identify the types of white blood cells that express Fc alpha R and the molecular heterogeneity of the receptor molecules. Nonpolymorphic epitopes, outside of the Fc alpha-binding site, were recognized only on blood cells of granulocyte and monocyte/macrophage lineages. The molecules identified, both by the antibodies and by the IgA ligand, were glycoproteins ranging in relative molecular mass from 55 to 75 kDa. However, one antibody detected a subpopulation of Fc alpha R molecules characterized by relatively restricted size heterogeneity. A complex glycosylation pattern was revealed by the resolution of discrete 32- and 36-kDa molecular species after removal of N-linked oligosaccharides and by evidence for O-linked carbohydrate moieties on at least a portion of the Fc alpha R molecules. In biosynthetic studies, all four anti-Fc alpha R antibodies and the IgA ligand bound a single 32-kDa core protein present in tunicamycin-treated cells, and the exceptional antibody again recognized molecules with relatively restricted glycosylation in the nontreated cells. These antibodies and native IgA ligands thus provide complementary reagents for definition of the complex structure and function of Fc alpha R in systemic IgA antibody responses.

Antibodies, Monoclonal↗

Identification of a surface protein (p100) associated with two glycosyl-phosphatidylinositol-linked molecules (Thy-1 and ThB) by natural anti-lymphocyte autoantibodies.

Our previous study of natural autoantibodies showed that anti-lymphocyte antibodies are frequently produced by perinatal B cells from normal strains of mice. One-third of these monoclonal antibodies (mAb) recognized similar epitopes on the surface of thymocytes. In the present report, we have characterized the molecule recognized by three of these mAb (D10, G7, 22). These mAb identified a 100-kDa protein (p100) on the surface of thymocytes. This protein resolved into 70-kDa polypeptide chains under reducing conditions. Inhibition experiments as well as antibody immunoprecipitations in the presence of mild detergents revealed non-covalent association of the p100 with Thy-1 and ThB. A similar multimolecular complex was identified following chemical cross-linking of thymocyte surface proteins. Analysis of several Thy-1-defective mutant cells lines, and thymocytes treated with phosphatidylinositol-specific phospholipase C (PI-PLC) showed that the expression of p100 was strongly influenced by Thy-1 molecule. The p100 was resistant to PI-PLC treatment and was not released into the supernatant as was the case for Thy-1 and ThB molecules. These data lead us to propose that the p100 is a transmembrane protein, the expression of which in the plasma membrane is dependent on the association or presence of Thy-1 molecule.

Animals↗

Immune complex-mediated glomerulopathy in experimental Chagas' disease.

To investigate the development of glomerulopathy during the chronic phase of experimental Chagas' disease, C3H-Hej mice were infected with Trypanosoma cruzi trypomastigotes. Deposits of IgG, IgM, and C3 in renal mesangium were observed by immunofluorescence (IF) to increase in size as a function of time after infection (4-6 months). T. cruzi antigens were codeposited in glomeruli with Ig and C3. Electron-dense deposits were visualized in mesangial and paramesangial areas by electron microscopy. Anti-T. cruzi and rheumatoid factor (RF) antibodies (of IgG isotypes) were detected both in serum and in renal eluates. In serum, the titers of both antibodies progressively decreased as a function of time after infection. In renal eluates, titers of anti-T. cruzi antibodies appeared to be stable during the three time periods after infection. By contrast, titers of RF antibodies in renal eluates were shown to increase progressively during these same time periods, paralleling the increase in size of mesangial Ig deposits observed by IF. Several T. cruzi proteins were immunoprecipitated from radiolabeled renal eluates by a control anti-T. cruzi antibody. In addition, antibodies from renal eluates specifically precipitated a 85-kDa protein from radiolabeled T. cruzi lysates, whereas serum antibodies precipitated a broad pattern of T. cruzi proteins. These results demonstrate that mice experimentally infected with T. cruzi can develop a mesangial glomerulopathy during the chronic phase of the disease, which appears to be mediated through immune complexes containing parasite antigens associated with secondary deposition of RF.

Animals↗

IgA deficiency.

IgA deficiency, the most common primary immunodeficiency, is a very heterogeneous clinical disorder which may be associated with a variety of infections, allergies, autoimmune disorders, gastrointestinal diseases, and genetic disorders. The central phenotypic feature of this immunodeficiency is a B cell differentiation arrest, the extent of which may determine the clinical variability. Integrity of the immunoglobulin genes and their expression by immature B cells in affected individuals suggests an immunoregulatory basis for the B cell arrest. Genetic studies imply that a susceptibility gene in or near the major histocompatibility locus may predispose homozygous individuals to a spectrum of antibody deficiencies which may range from isolated IgA deficiency to panhypogammaglobulinemia. Essential cofactors in the pathogenesis of IgA deficiency include environmental factors, such as certain drugs and viral infections.

B-Lymphocytes↗

Cellular distribution, regulation, and biochemical nature of an Fc alpha receptor in humans.

In these studies, we characterize an Fc receptor (FcR) for IgA that is present on human granulocytes, monocyte/macrophages, and their corresponding cell lines. Receptor expression appears to be constitutive but can be selectively upregulated on monocyte cell lines by stimulation with a phorbol ester and polymeric IgA. Both the induction requirements and ligand specificity of the IgA receptor differ from the IgG receptors, Fc gamma R I, II, and III, that are also expressed on monocytes and granulocytes. IgA binding to the cell surface receptor is mediated via the Fc alpha region. The Fc alpha R is a heterogenously charged, approximately 60-kD molecule with an isoelectric point of 4.5-5.6 that binds monomeric or polymeric IgA1 and IgA2 molecules. This transmembrane glycoprotein appears to be composed of 32- and 36-kD protein cores with multiple N-linked carbohydrate moieties. We conclude that this Fc alpha R represents a novel member of the FcR family that may have a distinctive role in host defense.

Antigens, CD↗

Association between acute lymphoblastic leukemia and partial IgA deficiency in a young man--a family study.

We report on an unusual association between partial IgA deficiency and acute lymphoblastic leukemia in a young man. We also report results of the family study of immunoglobulin levels, sIgA B cells, in vitro IgA synthesis and molecular analysis of the structural C alpha genes. The IgA deficiency was present at diagnosis of leukemia prior to any therapy. The indirect arguments for a preexisting IgA deficiency are the absence of improvement of the IgA level during complete remission and especially the finding of a similar partial IgA deficiency in a sister who shared the same HLA haplotype, had a low percentage of sIgA B cells and decreased in vitro IgA production. The mother, who had a normal IgA serum level also had decreased in vitro IgA synthesis. No major structural C alpha gene defect was found. The relationship between acute lymphoblastic leukemia and IgA deficiency remains to be elucidated.

Adolescent↗

Immunofluorescence analysis of IgA binding by human mononuclear cells in blood and lymphoid tissue.

The nature of IgA-binding cells and their tissue distribution was examined by an indirect immunofluorescence assay with the use of IgA1 and IgA2 paraproteins and fluorochrome- or biotin-labeled F(ab')2 fragments of idiotype-specific antibodies. The frequency of IgA-binding mononuclear cells was approximately 13% in blood and spleen samples but less than 1% in tonsil samples. IgA binding could be visualized by flow immunocytometry on monocyte/macrophages, but not on T and B cells. IgA polymers were bound better than IgA dimers and monomers. Nonhomologous IgA myelomas of both IgA1 and IgA2 subclasses inhibited the IgA-binding to monocytes, whereas aggregated normal serum IgG, IgM paraproteins, and an IgG myeloma did not. IgA binding was relatively insensitive to changes in temperature or cation concentration. IgA-binding monocytes were found in IgA-deficient patients at the same frequency as in normal individuals. The results indicate that monocytes constitutively express class-specific binding sites for both IgA1 and IgA2 molecules.

Agammaglobulinemia↗

Glomerular and serum immunoglobulin G subclasses in IgA nephropathy.

The distribution of human IgG subclasses among mesangial glomerular deposits of 11 patients with IgA nephropathy (IgA-N) was examined by indirect immunofluorescence with subclass-specific mouse monoclonal antibodies (mAb). A subclass restriction was observed with mesangial deposits containing almost exclusively IgG1 (81% of the studied biopsies) and IgG3 (64%). IgG2 was present in only 1 out of the 11 cases studied and IgG4 was never found to be present, although seven different anti-IgG4 mAb were used. In addition, serum levels of total IgA and IgG, as well as serum IgG subclass levels, were measured in 27 patients with IgA nephropathy by an indirect competitive immunoenzymatic assay using mAb. It was noted in IgA-N patients, but not in normal individuals, that there was significant positive correlation between total IgA and IgG serum levels which was entirely due to a positive correlation between total serum IgA and IgG2 levels. This study provides no explanation for the subclass restrictions observed but suggests that (i) the presence of IgA-IgG1-IgG3 in mesangial deposits may be secondary to an antigenic stimulation, possibly viral, and (ii) the positive correlation between IgA and IgG2 serum levels may result from an increased T helper function.

Adolescent↗

Immune regulation in IgA nephropathy.

Regulation in IgA nephropathy (IgA N) has been largely studied. We present in this work our recent data which suggest that an abnormal chemical structure and/or molecular form of serum immunoglobulin A (IgA) might contribute to both the mesangial deposition of IgA and the T cell abnormalities which may in turn deregulate the IgA synthesis.

Antigen-Antibody Complex↗

Glomerular and serum immunoglobulin G subclasses in membranous nephropathy and anti-glomerular basement membrane nephritis.

The distribution of human IgG subclasses among the glomerular deposits of 53 patients with glomerulonephritis was examined by immunofluorescence (IF) with subclass-specific monoclonal antibodies (Mab). A subclass restriction was observed in idiopathic membranous nephropathy (MN) with glomerular deposits predominantly containing IgG4 (81% of the studied biopsies) and IgG1 (75%). In de novo MN, occurring after transplantation, the restriction was markedly different, with a predominance of IgG1 (100%) and IgG2 (69%). In anti-glomerular basement membrane (a-GBM) nephritis the restriction was considerable with deposits containing almost exclusively IgG1 (91%) and IgG4 (73%). The same restriction was observed for circulating anti-GBM antibodies detected by indirect IF assay. By contrast IgG1, IgG2, and IgG3 deposits were identified in lupus proliferative glomerulonephritis. Serum IgG subclass levels were measured in 29 patients with idiopathic MN and a-GBM nephritis by an indirect competitive immunoenzymatic assay using Mab. Mean percentage of IgG2 serum level was significantly lower in patients. In spite of high variations from patient to patient, a serum IgG subclass imbalance was clearly present in 10 cases with low IgG2 and high IgG1 and IgG3 levels. The imbalance in these patients was not due to urinary loss since it was observed with a similar frequency in hypo- and normoimmunoglobulinemic patients. In 5 out of these 10 patients IgG2 levels were very low, analogous to those observed in selective IgG2 deficiency. Whether the important subclass restriction of glomerular IgG (in which patterns differed according to the type of glomerulonephritis) and the serum subclass imbalances were due to a clonally restricted antibody response to a particular antigen or to a host immune response defect, or both, remains to be elucidated.

Autoantibodies↗

Serum IgA preferentially binds to cationic polypeptides in IgA nephropathy.

The observation of negatively charged IgA in the mesangium of patients with primary IgA nephropathy (IgA-GN) prompted us to study the charge of serum IgA in IgA-GN, Henoch Schönlein purpura (HSP), alcoholic liver cirrhosis (ALC), membranous nephropathy (MGN) and systemic lupus erythematosus (SLE). Since no abnormal distribution of IgA isoelectric points was detected by isoelectric focusing studies, we developed a sensitive charge-dependent assay using plates coated with either cationized BSA (cBSA) or poly-L-lysine. In 15 IgA-GN sera, the amount of IgA reacting specifically with cBSA (cBSA-IgA) was almost linearly correlated with the poly-L-lysine-binding IgA (r = 0.97, P = 0.0006), suggesting that both assays detect charge-dependent interactions and thus probably measure anionic IgA. Significantly high serum levels of cBSA-IgA were observed in 56% of IgA-GN patients and in 40% of ALC patients. In contrast, normal serum levels of cBSA-IgA were detected in HSP, MGN and SLE. Both, the mono- or polymeric IgA bound to cBSA in a patient's serum studied. Contrasting with the presence of anionic IgA, no increase of cBSA-IgG was observed in IgA-GN. IgA rheumatoid factor (IgA-RF) assay showed high levels in IgA-GN (39%) and in ALC (25%). IgA-RF levels did not correlate with the amount of cBSA-IgA. When 18 patients with IgA-GN were tested after kidney transplantation, increased levels of cBSA-IgA and/or IgA-RF were found to be associated with the recurrence of mesangial IgA deposits in the graft. This suggests that both negatively charged IgA and IgA-RF may play a role in the recurrence of mesangial IgA deposits.

Adolescent↗