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S Avrameas

Publications and source records attributed to S Avrameas.

At least 73 records · Page 4Linked to original sources

IgG autoantibody activity in normal mouse serum is controlled by IgM.

In the serum of normal BALB/c mice, IgG antibody reactivity to mouse actin and tubulin, DNA, and TNP groups was very low compared to that of the IgM. This activity was considerably increased when IgG was separated, by affinity chromatography on protein A-Sepharose, whereas no difference in the IgM activity was observed. Addition of IgM to IgG isolated from the same serum resulted in the inhibition of IgG binding to these Ag. Isolation of IgG antibodies on actin, TNP, and tubulin immunoadsorbents has indicated that at least part of the IgG antibodies is polyreactive. In order to understand this inhibition better, experiments with F(ab')2 fragments of IgG were performed. IgM inhibited the binding of F(ab')2 to the antigens in a dose-dependent manner and reacted with immobilized F(ab')2. IgM isolated on F(ab')2 immunoadsorbent, as compared to the initial IgM preparation, were less active toward the Ag but more inhibitory for IgG binding to the Ag. In some pathologic situations, IgM failed to inhibit some IgG antibody activities. The anti-DNA IgG activity from (NZB x NZW)F1 mice was not affected by autologous IgM. Similarly the anti-tubulin IgG from mice infected with Trypanosoma cruzi were less inhibited by IgM from autologous serum than antitubulin IgG from normal mice. These results are compatible with the existence in normal mice of an idiotypic-like network, regulating via an IgM population in the serum, the binding of IgG autoantibodies to self Ag. Modifications of this idiotype-anti-idiotype system might lead to the expression and/or expansion of autoreactive IgG-producing clones.

Actins↗

Comparison between autoantibodies arising during Trypanosoma cruzi infection in mice and natural autoantibodies.

The autoantibodies induced in (C57BL/6 x BALB/c)F1 mice during Trypanosoma cruzi (CL strain) infection were analyzed and compared with natural autoantibodies present in healthy mice. Mice were killed at intervals after infection and their sera were tested by enzyme immunoassay against a panel of self- and non-self-Ag: actin, myoglobin, myosin, tubulin, DNA, and TNP-OVA. The level of IgM and IgG autoantibodies against all Ag started to increase from day 15 until 6 wk after the parasite infection. The high level of all autoantibodies persisted 3 mo postinfection, and 1 yr later, half of the mice still had elevated levels of IgM and IgG autoantibodies, particularly antitubulin IgG antibodies. IgM and IgG were isolated from pools of normal and infected mouse sera and their binding capacity to all Ag was compared. The titers of infected mouse sera were increased and the slopes of both IgM and IgG binding curves of autoantibodies to actin, myosin, and tubulin were greater than those of control mouse sera, indicating higher affinities. The average dissociation constant of the IgG2a autoantibody to mouse tubulin was 5 times lower than that of natural antitubulin IgG2a antibodies. Furthermore, absorption of the IgG from infected mouse sera onto a tubulin immunoadsorbent removed half the reactivity with tubulin and also with myosin, actin and parasite extracts. The eluted antibodies bound the same Ag. When IgG were further analyzed by Western blot on proteolytic fragments of tubulin, we found that antibodies from both groups bound to the same broad spectrum of polypeptide bands. However, additional fragments were recognized by antibodies from infected mice. All these results indicate that the autoantibodies naturally present in mice are significantly affected after infection with T. cruzi, in quantity as well as in specificity and affinity.

Animals↗

Idiotypic interactions between normal human polyspecific IgG and natural IgM antibodies.

Pooled normal human polyspecific IgG (IVIg) contain anti-idiotypes against a variety of autoantibodies from patients with autoimmune diseases and IgG autoantibodies present in IVIg. The present study indicates that IVIg may also react through idiotypic/anti-idiotypic interactions with human natural IgM antibodies. Sixty-four percent of IgM secreted by B lymphoid cell lines derived from B cells of healthy elderly donors and 18% of IgM secreted by cloned EBV-transformed cord B cells that were tested, bound through their variable region to F(ab')2 fragments of IVIg. The binding to 2,4,6-trinitrophenyl (TNP) of a polyreactive IgM with anti-TNP specificity, was inhibited by F(ab')2 fragments from IVIg, indicating the presence in IVIg of anti-idiotypes that may interfere with the antibody-combining site of polyreactive IgM antibodies. The ability of IgM antibodies to interact with idiotypes on IVIg was not related to the degree of polyreactivity of natural antibodies. Our observations further document that IVIg contain antibody specificities against Ig from normal individuals and suggest that IgG originating from the physiologically expressed repertoire may modulate the expression of the potential B cell repertoire. The results may be relevant to the suppressive effect of IVIg in autoimmune diseases.

Antibody Specificity↗

Poly(Glu60Ala30Tyr10) (GAT)-induced IgG monoclonal antibodies cross-react with various self and non-self antigens through the complementarity determining regions. Comparison with IgM monoclonal polyreactive natural antibodies.

Previous studies have shown that the antibodies of the preimmune repertoire are able to bind to various auto- and xenoantigens including chemical haptens. Sequence analysis of two such murine monoclonal IgM natural autoantibodies showed that they are encoded by unmutated germ-line variable regions of the light and heavy chain (V alpha and VH) genes which were also found in various murine immune responses, like phenyl-oxazolone, dinitrophenyl, arsonate, phosphorylcholine and influenza virus hemagglutinin. These data raised the question as to whether induced antibodies possessing germ-line sequence are also able to react with autoantigens. To study this problem, anti-poly(Glu60Ala30Tyr10) (GAT) and anti-alprenolol (Alp) monoclonal antibodies, carrying similar VH and V alpha genes and the same IgG1 isotype, were examined for their capacity to react with several self and non-self antigens. The results showed that: (a) the anti-GAT antibodies tested reacted with different autoantigens, such as murine tubulin, actin and myosin as well as trinitrophenyl (TNP) and bovine serum albumin. Similarly, one of the anti-Alp showed weak reactivities for myosin, DNA, actin and TNP; (b) in contrast two other anti-Alp antibodies did not react with any of the tested antigens. Since the major differences between the oligoreactive anti-GAT and the monoreactive anti-Alp antibodies are in the complementarity determining regions (CDR) our results suggest that the observed cross-reactions are mediated by hypervariable loops. Sequence comparison of these antibodies indicate a possible correlation between cross-reactivity and the presence of aromatic and charged amino acids in the CDR.

Amino Acid Sequence↗

Antibodies to viral antigens, xenoantigens, and autoantigens in Alzheimer's disease.

Sera from 19 patients with Alzheimer's disease (AD) and 21 control subjects were studied by immunofluorescence and enzyme immunoassay for antibody activity against various viruses and 12 self- and non-self-antigens. Total IgG mean level was significantly higher in the AD group; the IgG level was above 15 g/L in 52.8% of AD patients versus 14.3% of control subjects. Antiviral antibody titers showed no significant differences except for antibodies to herpes simplex virus-1, which were increased in control group. In contrast, autoantibodies were more frequently found in AD patients, and the prevalence of antibodies to spectrin, peroxidase, and thyroglobulin was significantly increased. Thus, in our series, autoimmune but not antiviral responses were heightened in at least 42% of AD patients (versus 9% of the control group) suggesting the existence of two subpopulations in the AD group.

Adult↗

IgA polyspecific autoantibodies in IgA nephropathy.

The specificity of circulating and kidney-bound IgA during IgA nephropathy is still a matter of discussion. In the present study, high levels of IgA antibodies directed against a panel of self and non-self antigens were found in the serum from patients with IgA nephropathy and were eluted from four out of the seven kidney biopsies studied. After immunoadsorption of pooled selected serum samples on TNP and actin-coated columns, polyspecific IgA antibodies were eluted. This supports the hypothesis that IgA-bearing B cells clones most probably producing polyspecific antibodies are a major feature of human IgA nephropathy. These findings also suggest that it may be hazardous to draw conclusions from the finding of apparently monospecific IgA antibodies in this condition.

Adolescent↗

A concurrent increasing of natural antibodies and enhancement of resistance to furunculosis in rainbow trout.

In order to compare the respective roles of specific response and non-specific mechanisms in the enhancement of resistance to furunculosis, 2 groups of rainbow trout (Oncorhynchus mykiss) were immunized with supernatants of Aeromonas salmonicida or Escherichia coli cultures. The fish received 4 weekly intraperitoneal injections (70 micrograms of crude proteins). One control group was injected with phosphate-buffered saline, while another was untreated. Specific agglutinins were produced only in the fish immunized with A salmonicida supernatant. Polyspecific natural antibodies were measured using different antigens in an enzyme immunoassay. A significant rise (up to 3 times the mean titer of untreated controls) was observed in the 3 injected groups (even with PBS), which also displayed significant protection against experimental furunculosis (32 to 42% mortality versus 72% in controls). Thus, although the exact significance of natural antibodies still has to be confirmed, the importance of natural defenses and the difficulty in clearly inducing specific protection against furunculosis are confirmed.

Aeromonas↗

Immunochemical studies of a murine polyreactive IgG2b autoantibody with rheumatoid factor activity.

The hybridoma, 62H3, which secretes a monoclonal IgG2b with anti-HLA-DR specificity, was expanded in pristane-primed BALB/c mice and the antibody was isolated from the ascitic fluid by affinity chromatography on Protein A-Sepharose. The purified IgG2b antibody was tested by an enzyme immunoassay for antibody activity against a panel of 40 self and non-self antigens. It was found to react strongly with beta-galactosidase, actin, glutamate dehydrogenase, rabbit and human IgG and di- and trinitrophenyl groups; and moderately with tubulin, insulin and phosphorylcholine; but it did not react with various other self and non-self antigens, such as DNA, albumin, keyhole limpet hemocyanin, hen lysozyme and horseradish peroxidase. Fab and Fc fragments were prepared from this IgG2b by papain proteolysis. The Fab fragment possessed the same spectrum of polyreactivities as the native IgG2b, whereas no activity was detected with the Fc fraction. In order to investigate the properties of the antigen binding site, the actin, TNP and rabbit IgG antibody activities were studied in more detail by enzyme immunoassay, Western blot and immunocytochemistry. The monomolecular nature of this multireactivity was confirmed by immunoabsorption analysis. Furthermore, 62H3 monoclonality was also verified by comparative isoelectric focusing and sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis with other monospecific antibodies. The dissociation constants (Kd) of antigen-antibody equilibria in solution were measured. The Kd for actin was 1.11 +/- 0.24 x 10(-5) M and the Kd for TNP-BSA was 8.7 +/- 0.51 x 10(-7) M. No interaction with rabbit IgG could be detected in solution. These findings raise the question of the possible implication in autoimmune pathology or in normal physiology of IgG class polyspecific antibodies with solid-phase restricted cross-reactive rheumatoid factor activity.

Animals↗

Anti-tubulin antibodies in rabbits before and after immunization with pig tubulin.

Sera from rabbits before and after repeated injections of pig tubulin in complete Freund's adjuvant were examined for antibody activity against pig and rabbit tubulins and against a panel of antigens: actin, myosin, DNA, TNP/BSA. Antibody activity against all the antigens of the panel (PAg) increased moderately after the first but not after subsequent injections. Antibody activity against pig and rabbit tubulins strongly increased after the second immunization when the maximum was reached. Isolation of anti-tubulin antibodies from normal or immune sera on tubulin-immunoadsorbent demonstrated the presence of three different antibody populations: (1) polyspecific IgM reacting with the PAg and the tubulins, present in substantial amounts in normal sera and moderately increased in immune sera; (2) small amounts of polyspecific IgG detected only in immune sera; (3) high amounts of specific IgG reacting with pig and rabbit tubulins, present in immune but not normal sera. Western blot analysis of the specific IgG population showed that it contained antibodies reacting with both native pig and rabbit tubulins, as well as antibodies recognizing only the 30,000 proteolytic fragment of pig, but not that of rabbit tubulin. The results indicate that the immunization of rabbits with heterologous tubulin induced specific IgG anti-tubulin antibodies which recognize the self and non-self antigens differently.

Animals↗

Natural autoantibodies in nude and normal outbred (Swiss) and inbred (BALB/c) mice.

Spleen cells from adult unprimed outbred (Swiss) and inbred (BALB/c) mice, either normal (no) or athymic-nude (nu) as well as spleen cells from Swiss nude mice bearing two different human tumors (BUR and PINQ), were fused with the mouse non-secreting myeloma cell line P3X63 Ag8-653. The supernatants of immunoglobulin secreting hybrids, all containing IgM, were screened for antibody activity against macromolecular antigens (autologous: actin, tubulin, myosin, dsDNA) and haptens (TNP, NP, NIP and NBrP). Furthermore, their idiotypic determinants were analyzed using a rabbit anti-idiotype which recognizes a major cross-reactive idiotype (IdD23) of BALB/c natural polyreactive autoantibodies. In all the mice studied, we identified: (1) hybrids reacting strongly with one or more haptens (10.7 to 37.8%) and (2) hybrids secreting natural monoclonal autoantibodies (NMoAb) with broad reactivities (polyreactive and/or oligoreactive) against autoantigens and/or haptens (11.4 to 26.8%). The results indicate that: (1) cells secreting natural autoantibodies with broad reactivities exist in both normal and nude mice, independently of the genetic background (inbred/outbred) of the mouse. However, in nude mice, the natural autoantibodies exhibit a more restricted pattern of reactivity (oligoreactive) compared to those of normal mice, and do not express the common idiotype IdD23 of natural polyreactive autoantibodies. (2) Tumors grafted into nude mice seem to induce the expression of polyreactive autoantibodies bearing the IdD23.

Animals↗

Natural anti-TNP antibodies from rainbow trout interfere with viral infection in vitro.

Normal and viral-infected rainbow trout (RT) were tested for serum antibody activity against self and nonself antigens. Particularly high titres of anti-trinitrophenyl (TNP) antibodies were noted, as in other fish species. To analyse this, the anti-TNP antibodies were isolated by affinity chromatography and their capacity to interfere with viral infection in vitro was studied. We selected RT fibroblasts as target cells, and two common pathogenic viruses in trout, a rhabdovirus, viral haemorrhagic septicaemia virus (VHS) and a birnavirus, the infectious pancreatic necrosis virus (IPN). Anti-TNP antibodies were examined for their capacity to neutralize VHS and IPN viruses. Data obtained show that the anti-TNP antibodies, even at high concentrations, only partially neutralized virus. In contrast, when anti-TNP antibodies were assayed for their protective activity using RT fibroblast cells infected with VHS or IPN viruses, results showed high protective activity, regardless of serum origin or of the virus used, when the antibodies were added to the cell culture after viral infection. Therefore, our experiments indicate that the protective activity does not seem to be due to a direct interaction of the antibodies with the viruses. It is suggested that virus-modified cell surface self structures exhibit new epitopes which interact with the anti-TNP antibodies. Such an interaction would allow anti-TNP antibodies to participate in a non-specific defence mechanism against viral infection.

Animals↗

Two murine natural polyreactive autoantibodies are encoded by nonmutated germ-line genes.

Two monoclonal IgM natural autoantibodies (E7 and D23) obtained from the fusion of normal, nonimmunized, BALB/c mouse spleen cells and nonsecreting myeloma cells were selected on the basis of their polyreactivity with auto- and xenoantigens and chemical haptens. Nucleotide sequence analysis of the variable and constant regions of the heavy and light chains showed the following. (i) The antibodies arise from different genetic elements with very low or no homology--E7 from a heavy-chain variable region (VH) of family 36-60 and kappa light-chain variable region (V kappa) from a group 19--whereas D23 derives from a VH of family Q52 and V kappa derives from group 8. (ii) E7 and D23 are probably of germ-line origin, as suggested by high homology with VH genes from the unrearranged genome. Compared with the germ-line VH 1210.7 gene, E7 has a single nucleotide difference leading to a silent mutation at position 15, whereas D23 seems to be encoded by germ-line VH 101 with one nucleotide difference causing replacement of Ser-84 by Ala. (iii) The genetic V kappa and VH elements for E7 and D23 also give rise to different responses to phenyloxazolone, dinitrophenyl, 5-(dimethylamino)naphthalene-1-sulfonyl, arsonate, phosphocholine, and influenza virus hemagglutinin. Antibodies from normal and autoimmune mice with rheumatoid factor-like activity are also homologous to E7 and D23. These results indicate that polyreactive autoantibodies are encoded by germ-line genes and that, starting with the preimmune poly- and autoreactive repertoire, mutated forms of antibodies recognizing exogenous antigens can be obtained and selected.

Amino Acid Sequence↗

Studies on active immunization with self antigens. I. Production of antibody to unmodified proteins by neonatal immunization.

Newborn BALB/c mice were repeatedly injected either with syngeneic (BALB/c) or xenogeneic (bovine) myosin, albumin, or actin in sterile physiological saline. The serum antibody response was evaluated by enzyme immunoassay 1 and 2 months after birth and after two booster injections. At 1 month, higher antibody titres were found in the sera of mice injected with syngeneic than with xenogeneic antigens. At 2 months and after boosting, anti-syngeneic actin antibodies were present in equal or higher amounts, anti-syngeneic albumin antibodies were not detected, and anti-syngeneic myosin antibodies were considerably decreased. Antibodies produced after booster injections of syngeneic actin were found to be highly specific and to belong mainly to the IgG isotype. These results suggest that newborn mice are better able than adult mice to respond to stimulation with self antigens, and that administration of self proteins during neonatal life may lead to the induction of immunological memory. They also indicate that one of the primary functions of the immune system in newborn mice is the recognition of self antigens.

Actins↗

Studies on active immunization with self antigens. II. Production of antibody related to hapten substitution.

BALB/c mice were injected during neonatal life with conjugates in buffered physiological saline, prepared by coupling trinitrophenyl groups (TNP) at various densities to either syngeneic mouse serum albumin (TNP-MSA) or xenogeneic bovine serum albumin (TNP-BSA). Serum samples were obtained on days 30 and 60 after birth, on days 75 and 88 after two booster injections, and monoclonal antibodies were prepared from spleens of neonatally treated mice. The antibody titres, isotypes, and specificities were evaluated by enzyme-immunoassay. It was found that the extent of the anti-TNP immune response to TNP-MSA conjugates depends on the degree of hapten substitution, which is not the case for the anti-TNP-BSA. All the TNP-MSA conjugates induced mainly IgG and only a few IgM antibodies. These antibodies reacted essentially with the TNP group but seemed to have a higher avidity for the TNP-protein conjugate used in their induction. During the course of the immunization, decreasing quantities of TNP-MSA conjugates were needed to inhibit antibody binding. A large amount of monoclonal anti-TNP antibodies was found in hybridomas obtained after neonatal treatment either with TNP-MSA or TNP-BSA. Therefore, it appears that the anti-TNP immune response obtained after antigenic stimulation with sufficiently substituted TNP-MSA conjugates possesses all the characteristics of a normally occurring humoral immune response.

Animals↗

Mouse natural autoantibodies can interfere with murine alpha and beta interferons.

Natural polyspecific autoantibodies could impede the establishment of an antiviral state by mouse alpha and beta interferons (IFN) as determined by an IFN assay with L929 cells and with vesicular stomatitis virus as the challenge virus. This anti-IFN effect was due to interactions with cell surface constituents rather than to antibody activity against IFN. This observation supports the hypothesis that natural autoantibodies participate in specific immune regulation as well as in the regulation of nonspecific host defense.

Animals↗

Enzyme immunoassay analysis of antibody specificities present in the circulating immune complexes of selected pathological sera.

Using immobilized anti-C3 antibody and an enzyme immunoassay, sera from 26 patients (eight with systemic lupus erythematosus (SLE), four with Hashimoto's thyroiditis, eight haemophiliacs and six with post-hepatitis cirrhosis) containing high levels of circulating immune complexes (IC) were selected. The IC were precipitated with 2.5% polyethylene glycol, washed, treated with acid buffer, neutralized and tested using an enzyme immunoassay in parallel with the original sera for antibody activity against a panel of antigens: human myosin and thyroglobulin, mouse actin and tubulin, calf thymus DNA and trinitrophenyl coupled to bovine serum albumin (TNP/BSA). It was found that all the isolated IC may contain IgG, IgA and IgM antibodies reacting with actin tubulin and TNP/BSA and also, depending upon the disease, antibodies reacting with some of the other antigens of the panel. By comparison to the antibodies present in the original sera, higher titers of antibodies were found in the isolated IC while some antibody specificities not detected in a given serum were occasionally noted in the isolated IC. The antibodies present in the IC seem to possess characteristics similar to those of polyreactive human natural autoantibodies. It is concluded that natural autoantibodies participate actively in the formation of IC found in pathological sera.

Actins↗

Development of a rapid and sensitive enzyme-linked immunosorbent assay (ELISA) for measuring venom antigens after an experimental snake bite.

We describe a new ELISA which allows the measurement of the concentration of venom antigens in whole blood. The assay can be performed in less than 20 min and requires a 200 microliters sample of blood. It allows the accurate evaluation of concentrations of Vipera ammodytes venom in quantities smaller than 1 ng/ml of blood. Using this ELISA, we were able to follow in rabbits the kinetics of experimental envenomation with non-lethal doses of venom. This ELISA was also used to measure post mortem the level of venom antigens in various tissues such as liver, kidney, muscles and abdominal serosity of a rabbit. The method, which might be adapted to measure envenomation by other snake species, seems to be sufficiently rapid and sensitive to allow routine evaluation of the gravity of a snake bite in humans and to estimate the efficacy of immunotherapy.

Animals↗