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At least 19 recordsLinked to original sources

Suppression of anti-hapten antibody response in vitro by hapten-carrier conjugates.

Production of antibodies was stimulated or suppressed arbitrarily by antigen treatment in vitro of spleens cultured at various time intervals after in vivo immunization. Spleens of mice immunized to the 2,4-dinitrophenyl or (4-hydroxy-3-iodo-5-nitrophenyl)acetyl haptenic determinants produced antibodies in culture when no antigen was applied in vitro. When a conjugate of the hapten to the same carrier employed for priming was given in vitro, an initial reduction of the response was observed, the level of which was dependent on antigen dose. Subsequently, increased amounts of antibodies were measured. In contrast, in vitro exposure to the hapten conjugated to an unrelated carrier resulted in significant reduction of the response for the entire period of the test. This suppressive effect manifested with various carrier proteins (ovalbumin, bovin IgG, bovine and rabbit serum albumin and keyhole limpet hemocyanin), when when applied to cultures in doses which were potentially immunogenic.

Animals↗

Fine specificity of cytotoxic T lymphocytes: C57BL effector cells induced by autologous cells modified with hapten (4-hydroxy-3-nitro-phenyl)acetyl (NIP) are not heteroclitic.

Cytotoxic T lymphocytes (CTL) were generated to syngeneic cells derivatized with serologically cross-reactive compounds (4-hydroxy-3-nitro-phenyl)acetyl (NP) and (4-hydroxy-5-iodo-3-nitro-phenyl)acetyl (NIP) in order to investigate the possible role of a heteroclytic T and B cell receptor marker (U. Krawinkel et al., Eur. J. Immunol. 1977. 7:566) in CTL-target cell interaction. The cytotoxic cells of both BALB/c and C57BL/10 (B 10) origin react specifically with target cells of the inducer type; no heteroclicity of the overall cytotoxic response can be observed by CTL of B 10 origin. The results suggest that in this system, the specificity of CTL is determined by a receptor with a variable region different from that of the isolated NP-specific antigen-binding T cell receptor material.

Animals↗

Suppression of IgE antibodies to the (4-hydroxy-3-iodo-5-nitrophenyl)acetyl (NIP) group and induction of NIP-specific suppressor cells with NIP-poly-N-vinylpyrrolidone conjugates.

The capacity of (C57BL/6 x DBA/2)F1 mice to produce anti-(4-hydroxy-3-iodo-5-nitrophenyl)acetyl (NIP) IgE antibodies, as a result of immunization with 1 microgram of NIP2-ovalbumin (OA) in the presence of A1(OH)3, was specifically suppressed by treatment of mice, either before or after immunization, with tolerogenic conjugates consisting of the hapten coupled to poly-N-vinylpyrrolidone (PVP) with an average mol. wt of 10 000. The suppression was hapten-specific, since it did not affect the immune response of the host to OA. The unresponsive state of the spleen cells of mice which had been tolerized with respect to NIP was maintained even after cell transfer into X-irradiated, syngeneic recipients and was shown to be due to hapten-specific suppressor cells. However, the splenic B cells of these mice did not possess any suppressive activity. The generation of an effective number of suppressor cells required between 1 and 2 days following the administration of the tolerogen. The suppressive effects observed on adoptive transfer could not be attributed to the carry-over of the tolerogen, which might have been associated with the spleen cells of the donor mice, since the transfer of B cells of tolerized mice or of mice which had received 2 mg of the tolerogen 2-24 h before cell transfer did not abrogate the capacity of spleen cells of immune mice to mount an anti-NIP response. Hence, it may be concluded that NIP2-PVP induced, in addition to a probable receptor of blockade of B cells, a central inhibitory mechanism which led to the development of an effective number of suppressor cells within 1 to 2 days after administration of NIP2-PVP.

Animals↗

Standard sera in solid-phase immunoassays.

Solid-phase immunoassay-derived antibody titers are often converted to weight unit concentrations with the aid of standard sera containing known antibody concentrations. Systematic studies justifying this procedure have not yet been published. We therefore investigated the magnitude of errors associated with this conversion. Antibody concentrations of thirteen sera or ascites fluids were determined by quantitative precipitation or equilibrium dialysis, and one was then used as a "standard antibody" for the others in solid-phase radioimmunoassay (SP-RIA) or enzyme-linked immunosorbent (ELISA) assays. Antibody concentrations determined by the conventional solid-phase assay (the "standard serum" has the same specificity as the "sample") had up to fourfold errors. These errors could be reduced by basing the conversion on the combination of two standard sera instead of one. The possibility was studied of whether the conversion to weight units could be done with the aid of a standard serum directed to a different antigen than the sample antibody. Errors associated with the use of such a heterologous standard were not significantly greater than those found using the conventional conversion. A combination of two reference sera again reduced the errors. The use of such heterologous standard(s), however, requires checking the binding capacity of the antigen coats.

Animals↗

Murine lupus anti-DNA antibodies cross-react with the hapten (4-hydroxy-5-iodo-3-nitrophenyl)acetyl, but immunization-induced anti-DNA antibodies do not.

The antigen-binding selectivity of 2 sets of anti-DNA antibodies from autoimmune mice and from normal mice was examined. Eighteen affinity-purified anti-DNA auto-antibodies from MRL-lpr/lpr mice were examined for binding to the haptens azobenzenearsonate, phosphorylcholine, (4-hydroxy-3-nitrophenyl)acetyl and (4-hydroxy-5-iodo-3-nitrophenyl)acetyl (NIP). Five of these autoantibodies bound to NIP-protein conjugates. In contrast, none of 12 monoclonal antibodies to single-stranded DNA or left-handed Z-DNA induced by immunization of BALB/c and C57BL/6 mice with nucleic acid antigens reacted with the tested haptens. In a reciprocal test of the relationship between anti-DNA and anti-NIP binding, we examined 24 monoclonal antibodies to NIP, from various strains of mice, for binding to DNA. One such antibody from a BALB/c mouse also bound to DNA. These results are discussed in the context of the mechanisms underlying autoantibody hyperproduction.

Animals↗

Mapping of murine IgE epitopes involved in IgE-Fc epsilon receptor interactions.

The generation of anti-IgE monoclonal antibodies has permitted the identification of various serological epitopes on the IgE molecule. The relationship of the sites on IgE recognized by such antibodies to the Fc epsilon receptor (Fc epsilon R) interaction site has been determined using cross-inhibition studies. However, interpretation of this type of experiment is limited by problems of steric hindrance. Thus, to accomplish precise mapping on the IgE molecule of the Fc epsilon R interaction site and the binding sites of various anti-IgE mAb, we employed site-directed mutagenesis of the IgE heavy chain gene. To this end we have constructed and expressed a recombinant murine constant epsilon heavy chain (C epsilon) gene bearing a (4-hydroxy-3-nitrophenyl)acetic acid (NP)-binding VH region. Several site-specific mutants in the C epsilon 3 and C epsilon 4 domains of this recombinant C epsilon gene were prepared and expressed by transfection into the light chain-producing J558L myeloma cell line. The resulting IgE antibodies were tested for binding to mast cells and to various anti-IgE mAb. The mutants produced include a proline to histidine point mutant at amino acid residue 404 in the C epsilon 3 domain, a mutant with a truncated C epsilon 4 domain, a mutant with a 45 amino acid deletion in the carboxy end of C epsilon 3, and a chimeric human C epsilon in which the human C epsilon 3 was replaced by the homologous mouse C epsilon 3 domain. These mutants have permitted the localization, to the C epsilon 3 domain, of the epitopes recognized by the 84.1C and 95.3 anti-IgE mAb. The 84.1C mAb recognizes a site on IgE which is identical or very close to the Fc epsilon R binding site, and 95.3 recognizes a site on IgE which is related, but not identical to the Fc epsilon R binding site. The antigenic determinant recognized by the 51.3 mAb, which is inefficient at blocking the IgE-Fc epsilon R interaction, has been mapped to the C epsilon 4 domain. When tested for binding to the Fc epsilon R on RBL-2H3 cells, the point mutant bound to the Fc epsilon R with twofold reduced affinity, while the C epsilon 3 deletion mutant and the mutant truncated in C epsilon 4 lost all receptor binding activity.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence↗

Human IgG isotype-specific amino acid residues affecting complement-mediated cell lysis and phagocytosis.

In this report we describe the construction of anti-5-iodo-4-hydroxy-3-nitrophenacetyl (NIP) mouse/human immunoglobulin (Ig) G4 chimeric molecules with altered amino acid residues in the CH2 domain. Three mutants are described. Gln-268 is substituted by His in gamma 4 Q268H, Ser-331 is substituted by Pro in gamma 4 S331P, and in gamma 4 Q268H/S331P both residues are substituted. The ability of the mutant molecules to induce complement-mediated cell lysis (CML) and phagocytosis by Fc gamma RII- and Fc gamma RIII-bearing polymorphonuclear leukocytes (PMN) were measured. In CML, gamma 4 Q268H was inactive, but both gamma 4 S331P and gamma 4 Q268H/S331P were active provided that the antigenic density on the target cells was high. In phagocytosis mediated by PMN, the mutants gamma 4 S331P and gamma 4 Q268H/S331P were both active only when complement was introduced. gamma 4 Q268H was not active in phagocytosis under any conditions. We conclude that His-268 in human IgG molecules does not modulate CML activity or phagocytosis mediated by Fc gamma RII and/or Fc gamma RIII. Pro-331 rescues CML activity in IgG4 molecules when the epitope density on the target cells is high, but does not affect Fc gamma RII/Fc gamma RIII-mediated phagocytosis. In this manner the mutants gamma 4 S331P and gamma 4 Q268H/S331P mimic human IgG2. This could indicate a structural similarity between IgG2 and these mutant molecules that distinguish them from both IgG1 and IgG3.

Animals↗

Sialylation of human IgG-Fc carbohydrate by transfected rat alpha2,6-sialyltransferase.

A recombinant IgG3 antibody with Phe-243 replaced by Ala (FA243) was expressed in a CHO-K1 parental cell line. The resulting IgG-Fc-linked carbohydrate was significantly alpha2,3-sialylated (53% of glycans), as indicated by normal- and reverse-phase HPLC analyses. Following transfection of a rat alpha2,6-sialyltransferase gene into this parental cell line, IgG-Fc-linked glycans were sialylated (60% of glycans) such that the ratio of alpha2,6- to alpha2,3-linked sialic acid was 0.9:1.0. By comparison, the wild-type IgG3 (F243) is minimally sialylated (2-3% alpha2,3-linked), thus suggesting that sialylation is controlled primarily by the protein structure local to the carbohydrate and that the two sialyltransferases compete to sialylate the nascent oligosaccharide. The additional alpha2,6-sialylation affected the function of the recombinant antibody. FA243 IgG3 having both alpha2,6 and alpha2,3-sialylation restored recognition to wild-type IgG3 levels for human FcgammaRI, FcgammaRII, and target cell lysis by complement. We discuss how sialylation linkage could modulate IgG function.

Animals↗

Gastric antigen challenge releases gastrin and eicosanoids and protects against ethanol.

Various gastrointestinal functions such as mucosal blood flow and mucus secretion can be influenced immunologically. Rats were systemically sensitized with 4-hydroxy-3-iodo-5-nitro-phenylacetic acid (NIP), a synthetic antigen. Mucosal release of gastrin, prostaglandin F2 alpha, 6-keto-prostaglandin F1 alpha, and leukotriene C4 was measured after intragastric or in vitro antigen challenge. Gastric protection from ethanol was determined. In sensitized rats, intragastric antigen challenge increased release of gastrin from the antral mucosa ex vivo and tended to increase release of prostaglandin F2 alpha. Likewise, antral mucosa of sensitized rats released significantly more gastrin and prostaglandin F2 alpha during in vitro antigen challenge than during incubation in the absence of antigen. Release of 6-keto-prostaglandin F1 alpha and leukotriene C4 was not affected by the immunologic reaction. Topical antigen challenge in sensitized rats reduced gastric mucosal damage caused by ethanol by 50%. The immunologically induced gastroprotection was significantly attenuated by pretreatment with indomethacin. The findings show that specific antigen challenge renders the gastric mucosa more resistant against the injurious effect of ethanol indicating that the stomach is a target organ of immunological reactions. As gastrin and prostaglandins exert potent protective effects, release of these mediators may contribute to the protective response to gastric mucosal immune activation.

6-Ketoprostaglandin F1 alpha↗

A universal antibody-derived targeting agent.

We report bacterial expression of a single-chain antibody (ScFv) reactive against the haptens 4-hydroxy-3 nitrophenylacetic acid (NP) and 4-hydroxy-3-iodo-5-nitrophenylacetic acid (NIP) that is suitable for targeting to mammalian cells in vitro in a novel two-step targeting strategy. Hapten-derivatized primary antibodies of known specificity, bound to target cells, can capture the ScFv. Specificity resides in the interaction of the primary targeting antibody with the target and the interaction of the ScFv for NP/NIP, since the ScFv does not bind cells and nonderivatized antibodies bound at cells cannot capture the ScFv. The ScFv described here can therefore be considered as a universal agent for delivery of drugs, toxins, or radionuclides to any cell type for which a previously characterized antibody exists.

Amino Acid Sequence↗

Mediators of antigen-induced gastrin release: role of antigen-antibody complexes and the complement system.

That orally administered antigen was shown to induce gastrin release in immunized animals was a new aspect of gastrointestinal physiology. The mediators responsible for this immunological effect are still unclear. In an attempt to discover more about the mechanisms regarding antigen-induced gastrin release, we developed an in vitro system where fragments of rat antral mucosa were challenged. This makes it possible to determine the role of antigen-antibody complexes and the complement system in the mechanism of antigen-induced gastrin release. Wistar rats were immunized in vivo with NIP-OVA and mucosal fragments were challenge, in vitro with NIP-HGG. Gastrin was determined after a preincubation and a challenged incubation period without supernatants. After antigenic challenge, supernatants were used for in vitro challenge in order to rule out the presence of a soluble mediator and activation of complement. In a second group of experiments Wistar rats were used to study in vitro the release of specific antibodies after antigenic challenge. With this experimental design we were able to show increased gastrin secretion after antigenic challenge in vitro in the presence of intact tissue. It is shown that the increased gastrin release is most probably mediated by activation of the complement system in the presence of antigen-antibody complexes. These are built up by specific anti-NIP antibodies and NIP-HGG used for the challenge. The complement system might be the final pathway of the observed increased gastrin release.

Animals↗

Disturbance of hapten-antibody equilibria by ammonium sulphate solutions. A source of error in antibody affinity determinations.

The affinity of anti-hapten antibody can be conveniently measured by precipitating immune complexes with ammonium sulphate. The method has, however, not proved very reproducible. Here is described one variable difficult to control in the assay: the ammonium sulphate was found to cause dissociation of ligands from hapten (NIP)--antibody complexes. The reason was the volume increase caused by addition of ammonium sulphate. The study suggested that in the calculation of the free hapten concentration the final volume during precipitation should be used. The precipitate should not be washed when hapten binding capacities are measured.

Ammonium Sulfate↗

A method for the accurate determination of anti-hapten cytotoxic T lymphocyte precursors: correction for apparent 'anti-self' reactivity.

A method is described for accurately determining the frequency of precursors of hapten specific cytotoxic T cells. The method is based on a standard Poisson analysis of limit dilution cultures, but makes a correction of 'anti-self' reacting clones and for spontaneously arising clones that recognise modified self. These corrections are shown to be especially important when low hapten densities are used, where there may be more than a 10-fold difference between the corrected and uncorrected frequency estimates. Determined levels of antigen specificity and of H-2 restriction are significantly enhanced by application of this method.

Animals↗