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Biomedical subjects

T Ternynck

Publications and source records attributed to T Ternynck.

At least 37 records · Page 2Linked to original sources

Natural mouse IgG reacts with self antigens including molecules involved in the immune response.

IgG isolated on protein A-Sepharose from pools of normal sera from various mouse strains were examined by immunoblotting for reaction with self antigens. Homogenates of the major mouse organs, i.e. brain, skin, spleen, kidney, adrenals, thymus, heart, muscle and liver were used as the source of autoantigens. IgG stained at least 220 bands on the immunoblots. The antigens corresponding to these bands were tentatively identified by molecular mass estimation and referenced to computerized mouse protein data banks. IgG mainly recognized enzymes but it also stained intracellular structural constituents and surface molecules implicated in the functioning of the immune system. The validity of this identification was confirmed by analyzing purified antigens from mouse or other animal species by immunoblotting and enzyme immunoassays. Furthermore, extracts of 125I-surface-labeled cells were immunoprecipitated with IgG in the liquid phase or immobilized on beads. The proteins precipitated migrated to the same positions as those precipitated by specific monoclonal antibodies (mAb), such as class I alpha chain and beta 2-microglobulin, class II alpha and beta chains, CD3, CD4 and CD8 antigens. The results obtained with several enzyme immunoassay procedures using cell membrane extracts, specific mAb and normal IgG further supported the specific interaction of IgG with Ia, CD4 and CD8 molecules. Affinity chromatography indicated that at least 20% of normal mouse IgG possess polyreactive autoantibody function. Dissociation constants of these IgG were calculated for some autoantigens and found to be in the range of 2 x 10(-6)-7 x 10(-6) M. It is concluded that normal mouse IgG exhibit autoreactivities similar to those previously described for IgM.

Animals↗

Autoantibodies and circulating immune complexes in sera from patients with hepatitis B virus-related chronic liver disease.

Sera from 56 patients with hepatitis B virus-related chronic liver disease (CLD) and 30 normal individuals as controls were examined by enzyme immunoassay (EIA) for the presence of autoantibodies directed against actin, tubulin, myosin, double-stranded (ds) DNA, polymerized human albumin, thyroglobulin, and trinitrophenyl coupled to bovine serum albumin (TNP-BSA). Patients with CLD had consistently elevated levels of IgG, IgA, and IgM antibodies directed against all the panel antigens. The percentage of patients with autoantibodies of the IgA class was particularly high: respectively, 88 and 78% of the patients had strikingly high levels of anti-actin and anti-TNP-BSA IgA autoantibodies. High amounts of IgA and IgG antibodies to polymerized albumin as well as IgG to thyroglobulin were also detected. Circulating immune complexes (CIC) were isolated from patients' sera and their autoantibody activities were tested on the same antigen panel. The autoantibodies thus detected were of the same class and possessed the same activities, although at higher values than those present in the homologous sera. These results indicate that, regardless of their origin, autoantibodies are present in high amounts in the sera of these patients. Moreover, autoantibodies participating in the formation of CIC might play a pathological role.

Actins↗

Comparison of natural antibodies to autoantibodies arising during lupus in (NZB x NZW)F1 mice.

Autoantibodies arising in (NZB x NZW)F1 (B/W) mice during the lupus-like syndrome were studied and compared to natural antibodies present in normal mice. The antibody activities were tested in sera, circulating immune complexes (CIC) and kidney eluates, using an enzyme immunoassay against a panel of self and non-self antigens: actin, myosin, tubulin, DNA, myoglobin, spectrin and trinitrophenylated bovine serum albumin (TNP/BSA). In the B/M mouse sera, IgM antibodies reacting with all the panel of antigens (PAg) and comparable to those of normal mice, increased moderately from 5 to 9 months and markedly during the last stage preceding death (10 months), when particularly high levels of anti-DNA, anti-tubulin and anti-myoglobin antibodies were noted. Polyreactive IgM antibodies present in CIC were moderately increased while those present in complexes deposited in kidneys were strongly enhanced after the 8th month. IgG antibodies showed an early increase (2 months) in B/W sera for anti-TNP activity, which remained more or less constant until death, while a later (5-6 months) and greater increase of activity, mainly directed against DNA but also against the other antigens of the panel, was observed. In CIC, IgG, mainly anti-DNA but also anti-TNP, were enhanced at the end of the disease while at the same time IgG reacting with all the PAg were found in kidney deposits. Isolation of antibodies from sera on a DNA-immunoadsorbent demonstrated that eluted IgM reacted with all the PAg but mainly with DNA, while IgG reactivity was more restricted to DNA and to a lesser degree to TNP. The D23 idiotype, characteristics of natural polyspecific antibodies, was expressed on IgM and IgG autoantibodies from B/W mice and was enhanced, particularly in kidneys, at the end of the disease. These results demonstrate that natural antibodies are a part of the population of increased autoantibodies in this disease and could participate with IgG anti-DNA antibodies in lupus.

Animals↗

Induction of high levels of IgG autoantibodies in mice infected with Plasmodium chabaudi.

This study analyzed the effect of infection of mice with a virulent strain of Plasmodium chabaudi on natural autoantibodies. Mice received appropriate treatments in order to survive and the serum autoantibodies were characterized either by enzyme immunoassays against a panel of self and non-self antigens or by Western immunoblots using fibroblast or red blood cell (RBC) extracts. IgM and mainly IgG antibodies directed against actin, myoglobin, myosin, spectrin, tubulin, and trinitrophenylated-ovalbumin were found a few days after the parasitemia peak, persisted for several weeks after parasite clearance, and returned to almost normal levels after 2 months. Following a challenge with parasitized RBCs, a similar increase in all antibodies was observed, their levels remaining high 20 days post-injection and still remaining at twice the normal level 1 month later. Western blotting detected autoantibodies to many membrane RBC proteins, e.g. spectrin, and band 3 and its related polypeptides, as well as against fibroblast constituents, such as tubulin, actin, and the 70 kd heat shock protein. Autoantibodies seemed to be polyspecific, since those eluted from infected mouse RBCs and the IgG antibodies from infected mouse sera affinity-purified on a mouse tubulin immunoadsorbent reacted with all antigens of the panel, including parasite extracts. Surprisingly, in mice which had recovered from infection, autoantibody levels, particularly anti-spectrin and anti-band 3, rose after the injection of a high dose of normal instead of parasitized RBCs.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Polyreactivity of human monoclonal antibodies: human anti-Rh monoclonal antibodies of IgM isotype are frequently polyreactive.

The specific aim of this study was to characterize human anti-Rh monoclonal antibodies cross-reacting with self-antigens. We studied supernatants from man-mouse hybridomas and from lymphoblastoid cell lines. Man-mouse hybridomas were established by fusion of peripheral blood lymphocytes from healthy individuals recently immunized against Rh alloantigens, with mouse myeloma (or man-mouse heteromyeloma) cell lines. Lymphoblastoid cell lines were produced by Epstein-Barr virus induction of lymphocytes from identical sources. Of the 55 monoclonal alloantibodies studied, 11 also reacted with intracellular self-antigens as demonstrated by immunofluorescence assay on cryostat sections of human tissues. This cross-reactivity was mainly a property of monoclonal alloantibodies belonging to the IgM isotype (among the 11 cross-reacting mAbs 10 were IgM). The cross-reactivities of these monoclonal antibodies were ascertained by absorption of alloreacting antibodies with red blood cells. Similar results were obtained on a panel of purified cellular antigens by ELISA. The results confirm that during an immune response against a foreign antigen (alloantigen), B cells that produce polyreactive antibodies are not excluded from the pool of responding cells. Therefore, polyreactive autoantibodies present in sera from healthy individuals may be the result of an immune response against foreign antigens.

Antibodies, Monoclonal↗

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↗

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↗

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↗

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↗

5-Bromodeoxyuridine in vivo labelling of M13 DNA, and its use as a non-radioactive probe for hybridization experiments.

We describe the in vivo production of 5-bromodeoxyuridine- (5-BUdR) labelled M13 DNA by a thymine-requiring Escherichia coli strain. We show that the 5-BUdR-labelled M13 single-stranded DNA is not extruded into the culture medium, but accumulates inside the bacterial cells. On the basis of this observation, a procedure involving FPLC gel filtration already reported and used for the isolation of plasmid DNA has been adapted for the isolation of at least 90% pure 5-BUdR-labelled single-stranded DNA. An M13 probe, containing part of the Hepatitis B Virus (HBV) genome was constructed, and the corresponding 5-BUdR-labelled single-stranded DNA was used in hybridization experiments to detect homologous HBV target DNA. Picogram amounts (10(-19) moles) of the probe itself or the target DNA could be detected, by monoclonal anti-5-BUdR antibodies in an immunoenzymatic assay.

Animals↗

Detection of plasma cell immunoglobulins in tissue sections optimally fixed for ultrastructural immunocytochemistry.

We describe the ultrastructural localization of plasma cell immunoglobulins in vibratome sections of popliteal lymph nodes. Fixation with glutaraldehyde-paraformaldehyde gave better tissue and antigen preservation than paraformaldehyde or periodic acid lysine-paraformaldehyde; biotinylated Fab fragments of sheep anti-mouse IgG-streptavidin-biotinylated horseradish peroxidase (HRP) or Fab-HRP conjugates gave similar results. With both immunoreagents, excellent tissue preservation and antigen detection was observed in the first layer of cells sectioned with the vibratome. Conjugates of anti-mouse IgG with HRP did not show any staining. Peroxidase stain was observed in the nuclear envelope, cisternae of the rough endoplasmic reticulum, and the Golgi apparatus complex. In the Golgi apparatus, staining was seen consistently in cisternae of the cis face and in adjacent vesicles; the trans cisternae showed weak or no stain, and adjacent vesicles, "coated" vesicles, and granules were not stained. This study shows that high quality of tissue preservation and antigen detection, by both light and ultrastructural immunocytochemistry, is feasible in tissue fixed with glutaraldehyde-paraformaldehyde followed by vibratome sectioning and immunostaining with Fab-biotin-streptavidin-biotin-HRP, or Fab-HRP.

Animals↗

In vitro proliferation of human lymphocytes measured by an enzyme immunoassay using an anti-5-bromo-2-deoxyuridine monoclonal antibody.

A previously described, non radioactive method for the measure of in vitro mouse lymphocyte proliferation was applied to human lymphocyte proliferation assays. It involved incorporation into DNA, during cell multiplication, of 5-bromo-2-deoxyuridine (BUdR), a thymidine analogue. BUdR-DNA was then assayed by a sandwich enzyme immunoassay (BUdR-EIA) using an anti-BUdR monoclonal antibody (McAb 76-7). BUdR-DNA from crude cell extracts was first immobilized on microtitration plates coated with McAb 76-7. In a second step BUdR-DNA was reacted again with McAb 76-7 conjugated to horse radish peroxydase. The quantity of peroxydase in microtitration wells was then measured by the coloration of o-phenylenediamine (492 nm). Titration curves obtained with dilutions of crude extracts were compared to the curve obtained with a purified BUdR-DNA reference solution. Results were expressed as equivalent ng BUdR-DNA/ml. BUdR-EIA was compared to 3H-thymidine incorporating assay for the measure of lymphocyte proliferation induced by PHA mitogen, candidine and tuberculine antigens and mixed lymphocyte culture. Excellent correlation between both assays was observed for each experiments (r = 0.953 to 0.999). Overall correlation coefficient for the 5 experiments was 0.785, indicating greater variation of BUdR than 3H-thymidine incorporation, according to the mitogen or antigen used and the culture conditions. This could be due to that fact that BUdR-EIA measured only BUdR incorporated into DNA, while 3H-thymidine incorporation assay measured 3H-thymidine both incorporated into DNA, and stocked into the cell before DNA incorporation. BUdR-EIA would thus reflect cell proliferation more exactly than 3H-thymidine incorporation assay. The sensitivities of both techniques were comparable.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal↗