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R Frade

Publications and source records attributed to R Frade.

At least 55 records · Page 3Linked to original sources

Autoantibodies against gp140, the Epstein-Barr virus and C3d receptor in sera from rheumatoid arthritis patients.

gp140 is the Epstein-Barr virus receptor and the C3d receptor (EBVR/C3dR) of human B lymphocytes. Recently, we have shown that cross-linking of EBVR/C3dR on cell surface by polyclonal anti-gp140 induced B cell activation, in presence of T cell factors. Immunoregulatory abnormalities of EBV-induced B cell activation have been demonstrated in rheumatoid arthritis (RA) patients. These data prompted us to analyze the putative presence of anti-EBVR/C3dR autoantibodies in human sera. The IgG fractions from eleven RA and 10 normal sera were tested for their ability to: (a) bind to Raji cell surface; (b) inhibit the binding to cell surface of 3 anti-EBVR/C3dR monoclonal antibodies (mAb), which recognized different epitopes on gp140; (c) inhibit the binding of particle-bound C3d and (d) react with 1% Nonidet-P40-solubilized gp140 from Raji cell membranes, in immunoblotting assays. Three RA sera carry anti-EBVR/C3dR autoantibodies which react with gp140 expressed on Raji cell surface or its solubilized form. The purification of monomeric IgG fraction of selected RA sera ruled out involvement of immune complexes carrying C3 molecules, which could interfere in these assays. One of these 3 RA sera was able to inhibit the binding to cell surface of anti-EBVR/C3dR mAb and particle-bound C3d. However, the 2 other RA sera, found positive by immunoblotting, did not inhibit particle-bound C3d and presented differences in their inhibitory effect on anti-EBVR/C3dR mAb binding to Raji cell surface. These data allow us to demonstrate differences which exist in the properties of anti-EBVR/C3dR autoantibodies. These autoantibodies were not detected in all the normal and other RA sera. Anti-EBVR/C3dR autoantibodies could play a role "in vivo" in B lymphocyte activation of RA patients.

Arthritis, Rheumatoid↗

Structure and functions of gp 140, the C3d/EBV receptor (CR2) of human B lymphocytes.

Analysis of the interaction of human C3 fragments with human B lymphoma cell line, led us to isolate gp 140, the C3 receptor of Raji cells. Rabbit anti-gp 140 was prepared against this highly purified receptor. Using these polyclonal antibodies, it was found that: gp 140 is the C3d receptor (CR2) which reacts with the C3d site expressed on C3d, C3dg, C3bi and at a less extent on C3b. Gp 140 is a specific marker of human B lymphocytes; gp 140 is also the Epstein-Barr virus receptor (EBVR); CR2 is a membrane site involved in B-cell regulation; and the C3d/C3dg receptor (CR2) of human B lymphocytes is distinct to the C3dg receptor (CR4) of human neutrophils.

B-Lymphocytes↗

Increased expression of Epstein-Barr virus receptor on lymphoblastoid cell lines from subsets of patients with rheumatoid arthritis.

We studied the expression of Epstein-Barr virus receptor (EBVR/CR2) on lymphoblastoid cell (LCL) lines established from 23 patients with rheumatoid arthritis and the T cell suppression of IgM secretion by EBV activated B cells. Ten patients had normal T cell suppression of IgM secretion, whereas 13 patients had defective suppressor T cell function. EBVR expression on LCL was assessed using a rabbit anti-gp 140 IgG; Raji cells, used as reference cell line expressed 50,000 EBVR, a 140 k glycoprotein (gp 140). Patients with defective T cell suppression of IgM secretion by EBV activated B cells had a significantly higher EBVR expression on LCL than patients with normal T cell suppression (mean +/- SD; 50.8 +/- 23.8 vs 29.5 +/- 13.2, respectively; p less than 0.05). These data suggest a relationship between the T cell suppression defect and an increased EBVR expression on LCL from patients with RA.

Arthritis, Rheumatoid↗

Enhancement of human B cell proliferation by an antibody to the C3d receptor, the gp 140 molecule.

The C3d receptor is a specific marker of B lymphocytes. Recently we have shown that C3d receptor activity is carried by a gp 140 membrane antigen. A polyclonal antibody has been prepared by immunizing a rabbit with highly purified gp 140 molecule isolated from membranes of the human B lymphoblastoid cell line Raji and its high specificity was previously demonstrated. We tested the effect of this antibody to the C3d receptor on the B cell proliferative response. Purified B cells from human blood were induced to proliferate by a B cell growth factor (BCGF)-containing partially purified supernatant from activated T cells. The anti-C3d receptor F(ab')2 enhanced the BCGF-dependent B cell proliferation. This effect was dose dependent, was observed in the presence of different concentrations of BCGF and did not correspond to a change in the time course of the response. The anti-C3d receptor F(ab')2 had no mitogenic effect in the absence of T cell supernatant. In contrast the undigested anti-C3d receptor IgG suppressed the BCGF-dependent B cell proliferation. These results emphasize the potentialities of anti-gp 140 F(ab')2 to explore the involvement of the C3d receptor in the regulation of B cell response to T cell products.

Adjuvants, Immunologic↗

gp140, a C3b-binding membrane component of lymphocytes, is the B cell C3dg/C3d receptor (CR2) and is distinct from the neutrophil C3dg receptor (CR4).

gp140, previously identified as a 140-kDa C3b-binding membrane glycoprotein present on Raji cell surface, was shown to be the C3dg/C3d receptor of B lymphocytes (CR2). Specific polyclonal anti-gp140, prepared by immunizing rabbits with this highly purified C3 receptor, blocked Raji cell rosettes with EC3b, EC3bi, EC3dg and EC3d, and also blocked normal lymphocyte rosettes with EC3dg and EC3d without affecting CR1 or CR3 activity. Moreover, a monoclonal anti-C3 (C3b/#130), described by others as reacting with the d region highly expressed on EC3bi, EC3dg and EC3d and poorly exposed on EC3b, completely inhibited EC3bi, EC3dg and EC3d rosettes with Raji cells, but had no effect on EC3b rosettes. Treatment of Raji cells with rabbit anti-gp140 blocked the uptake of three 125I-labeled monoclonal antibodies anti-B2, HB-5 and OKB7 reported to react with C3d-binding proteins, indicating that each of these monoclonal antibodies recognizes epitopes present on gp140. The neutrophil C3dg receptor was examined to determine its relationship to lymphocyte CR2. While neutrophil rosettes with EC3d were undetectable, a specificity for C3d was suggested by the inhibition of EC3dg rosettes by fluid phase C3d-complexes bearing no detectable C3dg. However, such neutrophil EC3dg and EC3bi rosettes were not inhibited by rabbit anti-gp140 nor an excess of anti-CR1, anti-CR2, and anti-CR3. In addition, neutrophils did not bind 125I-labeled anti-gp140, anti-B2, or HB-5. Thus, the neutrophil C3dg receptor is distinct from gp140, the lymphocyte CR2, and should be designated CR4.

Antibodies, Monoclonal↗

gp140, the C3d receptor of human B lymphocytes, is also the Epstein-Barr virus receptor.

The relationship between gp140, the membrane C3d receptor (CR2) of human B lymphocytes, and the Epstein-Barr virus receptor (EBVR) was analyzed by using the polyclonal anti-gp140, previously prepared by immunizing rabbits with highly purified gp140 (isolated by some of us) from CR2/EBVR-positive Raji cells. Polyclonal anti-gp72, a C3-binding membrane component, not related to the EBVR but also expressed on the Raji cell surface, was used as a control. Binding of rabbit IgG and EBV on cells was assessed by using immunofluorescence techniques with analysis by flow cytofluorometry. A semiquantitative bioassay was also used to measure the EBV binding. Polyclonal monospecific anti-gp140 IgG inhibits directly the binding of EBV to Raji cells at the same concentration that inhibits the binding of EC3d on cells, whereas a 35 times higher concentration of anti-gp72 IgG or preimmune serum IgG does not. Anti-gp140 IgG treatment also inhibits the induction of EBV-determined nuclear antigen in normal tonsil B lymphocytes or in EBV-negative Ramos cells, whereas high concentrations of anti-gp72 IgG or preimmune serum IgG have no effect. These data strongly suggest that gp140, the CR2 of human B lymphocytes, is also the EBVR.

B-Lymphocytes↗

Analysis of gp 140, a C3b-binding membrane component present on Raji cells: a comparison with factor H.

In a previous report (M. Barel et al. FEBS Lett., 1981. 136: 111) using radiolabeling methods, we characterized from the membrane of the human B lymphoblastoid cell line Raji, a 140 000-Mr glycoprotein (gp140) carrying a C3b-binding activity with 125I-labeled C3b or Sepharose-bound C3b. The facts of absence on Raji cells of CR1, the C3b receptor purified from human erythrocytes, the observations made by others that H-like activity (the 150 000 Mr C3b binding serum protein) was present in Raji cells and the same molecular weight range of H and gp140, led us to investigate the relationship between both antigens. A rabbit antibody anti-5.4 was prepared against gp140, highly purified from Raji cells. However, anti-H specificities were detected in crude anti-5.4 IgG, while anti-serum H IgG did not react with gp140 antigen. The crude anti-5.4 IgG fraction, anti-gp 140 IgG or F(ab')2 and anti-H specificities present in anti-5.4 IgG, separated by absorption on Sepharose-bound H, and anti-serum H IgG were tested on Raji cells by immunofluorescence techniques, by measuring the inhibition of specific cytotoxic assays and the inhibition of specific binding of soluble or particle-bound C3b to the cell surface and on solubilized antigens by immunoblotting techniques. All the data obtained support that: (a) anti-H specificities are not shared by antibodies bearing anti-gp 140 specificities and their presence in crude anti-5.4 IgG is more likely due to a contamination by H antigen of gp 140 antigen used in the immunization process, and (b) gp 140 antigen is highly expressed on Raji cell surface, whereas H antigen can not be detected under the same conditions. Molecular analysis of gp140 and H antigens confirmed differences between both antigens in molecular weight, trypsin sensitivity and charge properties. All the results presented herein support the notion that gp140 is not identical with the H molecule and that C3b binding to gp140 is not mediated by H. The relationship between gp140 and C3 receptors described by others is discussed.

Animals↗

A simple solid phase radioimmunoassay specific for human C3b to detect C3b receptors on human lymphoblastoid cell surfaces.

Our aim was to detect C3b receptors on human lymphoblastoid cells using a solid phase radioimmunoassay (RIA) specific for human C3b. RIA was performed by coupling rabbit antihuman C3b to acrylamide beads to make immunobeads. The specificity and sensitivity of binding of 125I-C3b to immunobeads allowed the detection of as little as 6 X 10(-10) M unlabeled human C3b. The cells were incubated with a C3b concentration (10(-9) M) giving 25% inhibition in the RIA. The concentration of unbound C3b was then measured in the cell supernatants using RIA. Results showed that: (a) loss of C3b antigen in the cell supernatant was not due to degradation of C3b molecules, (b) C3b binding could be detected at 37 degrees C on the four B cell lines, but not on the two T cell lines or on the two non T-non B cell lines tested, (c) C3b bound on the B lymphoblastoid cells was not cleaved, neither into iC3b nor C3c and C3d fragments, supporting the presence of C3b receptors on the cells tested. This method allows screening of a variety of C3b receptor-positive cells.

Animals↗

Behavior of soluble human 125I-labeled C3b, the third component of complement, after binding to human cells.

The behavior of 125I-labeled C3b incubated with two C3b receptor-positive cells (human erythrocytes and the B lymphoblastoid Raji line), one C3b receptor-negative cell (T lymphoblastoid CEM line) and solubilized membranes from each cell was analyzed by sucrose density gradient (SDG) and sodium dodecyl sulfate polyacrylamide gel electrophoresis. Whichever whole cell was tested, the unbound 125I-labeled C3b recovered in the cell supernatant was not cleaved. When 125I-labeled C3b was bound to whole cells or incubated with solubilized membranes, three different activities were detected: (a) nonspecific C3b polymerization, induced on the membrane of C3b receptor-positive or C3b receptor-negative cells; (b) specific C3b receptor activity solubilized only from the membrane of the two C3b receptor-positive cells and (c) C3b hydrolytic activity, inhibited by 5 X 10(-4)M phenyl methyl sulfonyl fluoride, only extracted from human erythrocyte membranes and carried by a molecule different from that of C3b receptor. C3b receptor activity solubilized from Raji and human erythrocyte membranes was detected by a 12S peak complex formation on a 10-30% SDG and characterized by an affinity constant of 2 X 10(7) to 4 X 10(7) mol-1. Hydrolysis of labeled C3b (Mr = 175000) by solubilized human erythrocyte membranes led to the formation of a split product of Mr = 35000 consisting of two disulfide-linked polypeptide chains of Mr = 17000. This is the first report of a breakdown of C3b on cell membranes different from the physiological breakdown described in the fluid phase.

B-Lymphocytes↗

Inhibition of in vitro natural killer activity by the third component of complement: role for the C3a fragment.

Purified human native third component of complement, C3, was found to inhibit in vitro natural killer (NK) cell cytotoxicity in both mouse and human systems. The effect was dose and time dependent, a 50% inhibition being reached with 190 nM C3 (35 micrograms/ml) added during the NK assay or after a 30-min preincubation of the effector cells with this C3 concentration. C3 was shown to act at the effector-cell population level because pretreatment of the target cells did not modify the NK lysis. The inhibition was not due to general cytotoxicity nor to cell agglutination. Moreover, another in vitro cytotoxicity system (represented by alloreactive cytotoxic lymphocytes) was not affected by purified C3. Structural analysis of the active part of the C3 molecule shows that the C3-induced inhibition is supported by the C3a fragment. Release of carboxyl-terminal arginine residue by carboxypeptidase B, converting C3a into des-Arg77-C3a, did not alter the inhibitory effect displayed by this fragment. These results suggest that C3a may play an important role in the regulation of NK activity.

Animals↗

Use of cell differentiation effectors to select a human B lymphoblastoid cell line enriched in C3b receptors.

A study was undertaken to establish conditions of growth to increase C3b receptor synthesis on a human B lymphoblastoid cell line (Raji) by use of cell differentiation effectors. It appears that whereas two polar compounds HMBA (2mM) and Me2SO(2%) have no or little effect, 5 BrdU (30microM) and db cAMP (5 x10(-4) M) are able to increase in 48 h and 36 h respectively the synthesis of C3b receptor on Raji cell surface. These two compounds help to select a variant in which 100% of cells have C3b receptors with a high density of receptors per cell. The mechanism of BrdU action on the regulation of C3b receptor synthesis is discussed.

Acetamides↗

Interaction of particle-bound [125I]C3b, the third component of complement, with specific receptors on human B-lymphoblastoid cells (Raji).

Taking advantage of the high density of the complex formed between the C3b receptor on cultured B-lymphoblastoid cells and particle-bound C3b, some properties of their interaction were studied. The process had an apparent dissociation constant equal to 10(-7) M. Thus particle-bound C3b has a higher affinity for C3b receptor than soluble C3b. Moreover, analysis of dissociation rate of particle-bound C3b-C3b receptor complexes suggested that a cooperative effect was induced at the cell surface by particle-bound C3b but not by soluble C3b. The most suitable explanations of these data are discussed.

B-Lymphocytes↗

Detection of Fc gamma receptors on human lymphoblastoid cell surfaces using a simple solid phase radioimmunoassay specific for human IgG.

The aim of this work was to detect Fc gamma receptors on human lymphoblastoid cells using a solid phase radioimmunoassay (RIA), specific to human IgG. RIA was performed by coupling rabbit anti-human IgG (AHIgG) to acrylamide beads to make immunobeads. The specificity and sensitivity of binding of human [125I]IgG to immunobeads permitted detection of as little as 10(-10) M unlabeled human IgG or aggregated human IgG (AHIgG) in competitive assay. The cells were incubated with an AHIgG concentration (3 x 10(-10) M) giving 25% inhibition in the RIA; unbound AHIgG concentration was then measured in the cell supernatants using RIA. Results show that Fc gamma receptors could be detected at 20 degrees C or at 37 degrees C (but not at 4 degrees C) on the four B cell lines tested. At whatever temperature of incubation, Fc gamma receptors were not detected on three T cell lines nor on two 'non T-non B' cell lines. This method allows screening of a large number of Fc gamma receptor positive cells. It is also useful for detecting Fc gamma receptors in membrane preparations or in detergent extracts of human B cell membranes.

B-Lymphocytes↗

Preliminary characterization of a glycoprotein having Fc receptor properties extracted from a T cell lymphoma (L-5178-Y).

After incorporation of 14C-labeled amino acids and/or of [3H]fucose during in vitro culture of the Thy-1.1-bearing, Fc receptor-positive T lymphoma, L-5187-Y, attempts were made to purify the Fc binding structure(s). Following solubilization of a crude membrane pellet using sodium deoxycholate, the 110 000 x g supernatant was filtered on Sephadex G-200, and the fractions containing IgG-binding material were further purified by affinity chromatography (on IgG Sepharose 4B.) Sodium dodecyl sulfate polyacrylamide gel electrophoretic analysis of the final Fc-binding product showed an apparent molecular weight of 110 000 daltons. On subsequent reduction with 2-mercaptoethanol, five bands (mol. wts. 56 000, 36, 000, 25 000, 18 000 and 15 000) were observed, the latter two being probably degradation products. These results are in accord with some of the published data concerning B cell Fc receptors.

Animals↗