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Biomedical subjects

S Izui

Publications and source records attributed to S Izui.

At least 109 records · Page 6Linked to original sources

Prolactin influences autoimmune disease activity in the female B/W mouse.

Prolactin, an anterior pituitary hormone, stimulates humoral and cell-mediated immunity. This study investigated effects of manipulating prolactin levels in the autoimmune B/W mouse model of SLE. A group of B/W females was treated with daily injections of the prolactin-suppressing drug, bromocriptine. These mice had delayed elevation of anti-DNA antibodies and serum IgG; longevity was increased compared to control mice. Functioning syngeneic pituitary glands, implanted under the renal capsule, produced prolonged hyperprolactinemia in a separate group of female B/W mice. Hyperprolactinemic animals were characterized by premature albuminuria, elevated circulating gp70IC and IgG, and accelerated mortality. Analyses of thymic and splenic lymphocytes revealed no differences in lymphocyte subpopulations in mice with altered prolactin levels. This is the first report to substantiate an immunomodulatory role for prolactin in B/W mice. Further evaluation of this model may identify specific means of intervening clinically with immunosuppressive hormone-modulating therapy in SLE.

Albuminuria↗

Murine cryoglobulinemia: pathogenic and protective IgG3 self-associating antibodies.

A murine IgG3 mAb, 6-19, derived from autoimmune MRL-lpr/lpr mice, is a rheumatoid factor (RF) specific for IgG2a and is able to generate cryoglobulins via nonspecific IgG3 Fc-Fc interaction. Intra-peritoneal passive transfer of ascites containing the 6-19 mAb into BALB/c mice induces skin leukocytoclastic vasculitis and acute glomerulonephritis associated with cryoglobulinemia. Because IgG3 interact with each other, we have determined whether noncryoprecipitating IgG3 mAb were able to inhibit the cryoprecipitation of 6-19 mAb and the development of related tissue lesions. In vitro, the cryoprecipitation of 6-19 mAb was almost completely inhibited by a fourfold excess of a noncryoprecipitating non-RF IgG3 (9-106) mAb derived from MRL-lpr/lpr mice. Cryoprecipitation of five other IgG3 mAb was similarly inhibited by the 9-106 mAb, and two other noncryoprecipitating IgG3 mAb, including the 2-6D antinuclear autoantibody, inhibited the cryoprecipitation of 6-19 mAb. In vivo, pretreatment of BALB/c mice with 9-106 or 2-6D mAb prevented the development of skin vasculitis and glomerulonephritis induced by the 6-19 mAb. The cryoglobulin formation was greatly diminished in 9-106 or 2-6D mAb-treated mice, although their serum levels of 6-19 mAb and RF activity were comparable to those of control mice. This indicated that pretreatment with non-cryoglobulin IgG3 inhibited the cryoglobulin generation and cryoglobulin-associated tissue lesions induced by an IgG3 RF cryoglobulin-generating mAb. These results suggest that the balance of formation of IgG3 autoantibodies with or without the cryoglobulin activity may be critical for the development of IgG3 cryoglobulin-mediated tissue lesions in murine lupus, particularly in MRL-lpr/lpr mice.

Animals↗

Selective autoantibody production by Yaa+ B cells in autoimmune Yaa(+)-Yaa- bone marrow chimeric mice.

The accelerated autoimmune syndrome observed in BXSB/MpJ male mice is associated with the presence on the Y chromosome of an as yet unidentified mutant gene, designated Y chromosome-linked autoimmune acceleration (Yaa). To study the mechanisms by which the Yaa gene accelerates and/or induces the production of autoantibodies, we have developed double-congenic bone marrow chimeras containing B cells from autoimmune males carrying the Yaa gene, and from nonautoimmune male or female mice lacking it and differing by the Igh allotype. The analysis of the allotype of total immunoglobulins and anti-DNA antibodies in Yaa+ male-normal female (Yaa-) chimeric mice revealed that the selective activation of B cells from autoimmune Yaa+ male mice was responsible for the hypergammaglobulinemia and autoantibody production. This phenomenon was not due to an anti-HY interaction between female T helper cells and male B cells, because first, Yaa+ B cells were selectively stimulated to produce autoantibodies in Yaa+ male-Yaa- male chimeric mice; and second, normal male and female chimeras failed to develop an autoimmune syndrome. In addition, the fact that both B cell populations in Yaa(+)-Yaa- chimeras similarly responded to a foreign antigen, human IgG, argues against the possibility that the selective activation of Yaa+ B cells may be due to their hyper-responsiveness to T helper signals. We propose that a cognate interaction of T helper cells with Yaa+ B cells, because of possible T cell recognition of a Yaa-related molecule expressed on Yaa+ B cells, may be responsible for the acceleration and/or induction of autoantibodies in BXSB/MpJ mice.

Animals↗

Transient T and B cell activation after neonatal induction of tolerance to MHC class II or Mls alloantigens.

The neonatal injection of semiallogeneic F1 spleen cells into newborn parental mice results in the induction of tolerance to the corresponding alloantigen (alloAg) and chimerism. In these F1 cell-injected mice, we have previously observed that this state of specific tolerance is associated with the development of a transient lupus-like autoimmune syndrome. In this study, we show that neonatal injection of mice with spleen cells differing from the host at major histocompatibility complex (MHC) class I, class II, class (I + II), or minor lymphocyte stimulating (Mls) alloAg induced a state of specific tolerance characterized by the absence of alloreactive CTL and/or Th cell responses in the spleen and the thymus of 6- to 12-week-old injected mice. However, in mice rendered tolerant to MHC class II or class (I + II) alloAg, the presence of high levels of IgG1 antibodies, of circulating immune complexes, of anti-ssDNA autoantibodies, and of tissue lesions were transiently observed. In these mice, an increased Ia Ag expression on lymphoid spleen cells was also detected at 1 wk. The elevated production of IgG1 and the overexpression of Ia Ag were almost completely prevented by treatment with an anti-IL-4 mAb. Such manifestations of B cell activation and autoimmunity were not observed in mice neonatally injected with F1 cells differing from the host only at MHC class I Ag. In mice neonatally tolerized to Mls Ag, a transient increase in IgG2a production and an overexpression of Ia Ag were detected without features of autoimmunity, and were prevented by anti-INF-gamma mAb treatment. In mice rendered tolerant to MHC class II, class (I + II), or Mls alloAg at birth, the manifestations of B cell activation were associated with the presence of in vivo-activated alloreactive CD4+ T cells in the spleen--but not the thymus--of 1-wk-old injected mice. Together, these results suggest that in mice neonatally injected with semiallogeneic F1 cells, the process of tolerance induction is not efficient during the early postnatal period, and could allow the maturation and peripheralization of some alloreactive CD4+ T cells, leading to transient B cell activation and, depending on the alloAg, to autoimmunity.

Animals↗

Lack of anti-DNA precursors in lambda chain-bearing B lymphocytes in (NZB x NZW)F1 mice. Evidence for the contribution of V kappa genes to anti-DNA specificity.

We have analyzed by the limiting dilution assay on spleen cells from (NZB x NZW)F1 hybrid mice the repertoire of lipopolysaccharide-responsive murine kappa- and lambda 1-secreting B cells committed to the production of anti-DNA autoantibodies to determine the contribution of the heavy and light chains to anti-DNA specificities. Our results demonstrated that anti-DNA precursors were predominantly found in the kappa-secreting B cell population, but not in lambda 1-secreting B cells, while anti-hapten, dinitrophenyl, and anti-tetanus toxoid activities were distributed fairly well in both populations of B cells. This suggests that the V kappa gene segments are critically involved in the generation of anti-DNA specificities, and that at least at the germ-line gene level, the heavy chain V region genes by themselves are not able to confer the anti-DNA autoreactivity.

Animals↗

Protective effect of cyclosporin A on immune abnormalities observed in the murine acquired immunodeficiency syndrome.

The murine leukemia viruses (MuLV) designated LP-BM5 induce an immunodeficiency disease in susceptible strains of mice with many features in common to human acquired immunodeficiency syndrome (AIDS), including lymphadenopathy and profound immunodeficiency associated with enhanced susceptibility to infection and terminal B cell lymphomas. The disease, termed murine AIDS (MAIDS), crucially depends on the presence of B cells and CD4+ T cells, suggesting that mutual activation of these two cell types is central in the pathogenesis of the immunodeficiency syndrome. Cyclosporin A (CsA), whose immunosuppressive effect is attributed mainly to inhibition of interleukin 2 and interferon-gamma expression, interferes in T-B cell interactions. Here we show that chronic treatment with CsA (40 or 60 mg/kg/day) before and after infection with LP-BM5 MuLV protects against the development of immunodeficiency disease as assessed by functional, serological and histopathological criteria. The protection was not complete, suggesting both CsA-sensitive and CsA-resistant components to the pathogenesis of this syndrome, and was found to be independent of ecotropic MuLV expression. These results underline immunopathological mechanisms in the progression of immune abnormalities in MAIDS that are susceptible to inhibition of CsA and may serve as an experimental basis for developing a treatment of the human disorder with immunomodulators.

Animals↗

Interleukin 3 perfusion prevents death due to acute anemia induced by monoclonal antierythrocyte autoantibody.

We have evaluated the therapeutic activity of rIL-3, in comparison with recombinant granulocyte-macrophage CSF (rGM-CSF) and recombinant erythropoietin (rEpo), on a lethal form of acute anemia induced by a single injection of a monoclonal IgG1 anti-mouse RBC (MRBC) autoantibody. Continuous perfusion of rIL-3 before the administration of anti-MRBC mAb prevented animals from the death due to anemia with a rapid recovery in greater than 90% of the cases, while only partial protection (one third of the cases) was obtained by rEpo perfusion, and no protection by rGM-CSF. Since the anti-MRBC mAb induced a marked agglutination of RBC in spleens and livers, and subsequent hemodynamic failure may be an additional contributing factor to the animals' death, the activation of Fc gamma receptor-dependent phagocytosis by rIL-3, as well as the increased number of monocytes/macrophages resulting from rIL-3 perfusion, may also facilitate rapid elimination of these agglutinated RBC, resulting in the further amelioration of the animals' survival. Our results suggest that the therapeutic effect of rIL-3 on anti-MRBC autoantibody-induced anemia is achieved by: (a) its activity to promote the growth and differentiation of erythroid progenitors responsive to Epo and of monocyte/macrophage lineage; and (b) its activity to enhance the phagocytic activity of macrophages to efficiently eliminate agglutinated RBC in spleens and livers.

Acute Disease↗

Variable region sequences of pathogenic anti-mouse red blood cell autoantibodies from autoimmune NZB mice.

New Zealand Black (NZB) mice spontaneously develop a severe autoimmune hemolytic anemia due to the production of anti-mouse red blood cell (MRBC) autoantibodies. The contribution of variable region genes and somatic mutations in the pathogenicity of anti-MRBC autoantibodies was investigated by mRNA sequencing of eight NZB anti-MRBC monoclonal autoantibodies, among which five are capable of inducing anemia in BALB/c mice. Here we report that at least three VH gene families (J558, J606 and 3609) and five Vchi subgroups (V chi 8, 9, 19, 21 and 28), in combination with several D, JH and Jchi gene segments, encode anti-MRBC autoantibodies. Thus, the NZB anti-MRBC autoantibodies, whether pathogenic or not, are encoded by a large number of immunoglobulin gene elements and by members of known VH and Vchi gene families with preferential usage of VH gene families most distal to the D regions. The presence of several mutations in the JH gene segments of both IgM and IgG anti-MRBC autoantibodies, whether pathogenic or not, strongly suggests that their VH regions may be highly mutated and that the mechanism of somatic diversification might be important in the generation of anti-MRBC autoantibodies. Our results support the idea that anti-MRBC autoimmune responses are likely to be generated by an antigen-driven mechanism.

Amino Acid Sequence↗

5-Azacytidine inhibits the lpr gene-induced lymphadenopathy and acceleration of lupus-like syndrome in MRL/MpJ-lpr/lpr mice.

MRL/MpJ-lpr/lpr mice spontaneously develop a lupus-like autoimmune disorder characterized by massive proliferation of T cells and rapidly fatal immune complex glomerulonephritis. We evaluated the therapeutic effect of 5-azacytidine (5AC), a cytidine analogue known as an inhibitor of DNA methylation, in MRL/MpJ-lpr/lpr mice. Intraperitoneal injection of 5AC (50 micrograms, twice a week) starting from 6 weeks of age retarded the development of lymphadenopathy and autoimmune syndrome. Its beneficial effects included: (a) increased life-span, (b) diminution of lymphadenopathy and splenomegaly, (c) reduction in circulating levels of autoantibodies such as anti-DNA and rheumatoid factors, and (d) suppression of lupus glomerulonephritis. However, similar treatment in BALB/c mice did not affect the development of IgG anti-human IgG antibody responses. These results suggest that the protective effect of 5AC is related to the inhibition of the lpr gene-induced T cell proliferation, thereby suppressing the autoimmunity-accelerating effect mediated by the lpr gene.

Animals↗

Spontaneous production of anti-mouse red blood cell autoantibodies is independent of the polyclonal activation in NZB mice.

New Zealand Black (NZB) mice spontaneously develop an autoimmune hemolytic anemia together with a markedly increased production of polyclonal antibodies. The spontaneous generation of anti-mouse red blood cells (MRBC), anti-bromelain-treated MRBC (BrMRBC) and anti-DNA autoantibodies was compared to the polyclonal antibody formation in irradiated (800 rad) 2-month-old NZB mice reconstituted with bone marrow cells (BMC) from 2- or 10-month-old NZB mice. The injection of 10-month-old NZB BMC markedly accelerated the mortality rate in parallel with the progressive increase of anti-MRBC and anti-BrMRBC autoantibody production, but the spontaneous production of polyclonal IgM antibodies and anti-DNA autoantibodies was completely abolished down to the levels of non-autoimmune mice. In contrast, mice reconstituted with 2-month-old NZB BMC exhibited neither the acceleration of anemia nor the lack of polyclonal antibody production. These results strongly suggest that the spontaneous production of anti-MRBC autoantibodies, including anti-BrMRBC autoantibodies, in the NZB mouse occurs independently of the polyclonal B cell activation, and that they result from a specific immune stimulation, while the anti-DNA autoantibody production is a consequence of polyclonal antibody formation.

Anemia, Hemolytic, Autoimmune↗

Cryoglobulinemia induced by a murine IgG3 rheumatoid factor: skin vasculitis and glomerulonephritis arise from distinct pathogenic mechanisms.

MRL-lpr/lpr mice spontaneously develop a lupus-like syndrome characterized by immunopathological manifestations such as necrotizing vascular lesions of ear tips and severe glomerulonephritis. Similar skin vascular and glomerular lesions associated with cryoglobulinemia can be induced in normal mice by injection of a monoclonal antibody (mAb)--6-19 (gamma 3 heavy chain and kappa light chain), exhibiting both cryoglobulin and anti-IgG2a rheumatoid factor (RF) activities--derived from the MRL-lpr/lpr autoimmune mouse. To determine the role of RF and/or IgG3 Fc fragment-associated cryoglobulin activities in 6-19 mAb-induced tissue lesions, a 6-19-J558L hybrid mAb (gamma 3 heavy chain and lambda 1 light chain) was produced by fusion between the 6-19 hybridoma and the J558L myeloma. Here we report that the 6-19-J558L hybrid mAb, which loses the RF activity but retains the cryoglobulin activity, fails to induce skin vascular lesions. However, it is still able to provoke glomerular lesions identical to those caused by the 6-19 mAb. Further, we have observed that the depletion of the corresponding autoantigen, IgG2a, in mice by treatment with anti-IgM antisera from birth also prevents the development of skin but not glomerular lesions. Our results indicate that both RF and cryoglobulin activities of the 6-19 mAb are required for the development of skin vasculitis, but its cryoglobulin activity alone is sufficient to cause glomerular lesions. In addition, cDNA cloning and sequencing of the 6-19 mAb has revealed that the 6-19 kappa light chain variable region amino acid sequence is encoded in a germ-line configuration, suggesting that immunoglobulin variable region germ-line genes could contribute to the generation of pathogenic autoantibodies.

Animals↗

Monoclonal anti-erythrocyte autoantibodies derived from NZB mice cause autoimmune hemolytic anemia by two distinct pathogenic mechanisms.

In vivo pathological manifestations of eight monoclonal anti-mouse red blood cell (MRBC) autoantibodies obtained from unmanipulated NZB mice were determined in BALB/c mice. Three (two IgG1 and one IgG2a) of four IgG monoclonal antibodies (mAb) and two of four IgM mAb were able to induce anemia following their i.p. injection. All five pathogenic anti-MRBC mAbs reacted only with MRBC, whereas non-pathogenic anti-MRBC mAbs showed binding to different species of RBC. Competition studies suggested the presence of at least two distinct epitopes recognized by our pathogenic anti-MRBC mAb. Histological examinations revealed that anemia resulted from either marked sequestration of agglutinated MRBC in spleens and livers or erythrophagocytosis, most remarkably by Kupffer cells in livers. This difference was correlated with the ability of each mAb to mediate Fc receptor-dependent phagocytosis by macrophages. The absence of complement-mediated hemolysis in vitro and the development of anemia in C5-deficient or C3-depleted mice indicated a minor role, if any, for complement-mediated lysis in the anemia induced by our anti-MRBC mAb. Our results suggest that (i) at least two different pathogenic epitopes are implicated in autoimmune hemolytic anemia; and (ii) sequestration of agglutinated MRBC in spleens and livers and Fc receptor-dependent phagocytosis, but not complement-mediated hemolysis, are the major mechanisms for the development of autoimmune hemolytic anemia.

Anemia, Hemolytic, Autoimmune↗

CD4+ T cells play a major role for IgM and IgG anti-DNA production in mice infected with Plasmodium yoelii.

The infection by a non-lethal strain of Plasmodium yoelii induces the formation of autoantibodies such as anti-DNA and anti-Sm antibodies in mice. The extent of the relative increase in serum levels of IgM and IgG anti-DNA and anti-Sm antibodies and their kinetics were found to be similar to those of anti-hapten antibodies and of total IgM and IgG levels. This strongly suggested that anti-DNA and anti-Sm autoantibody responses observed in malaria-infected mice are a result of polyclonal activation of B cells. The analysis of the IgG subclasses reacting with DNA antigen showed significant levels of the T cell-dependent isotypes, IgG1 and IgG2. The role of T cells in the activation of autoreactive B cells was confirmed by using athymic nude mice. Indeed, BALB/c-nu/nu and C57BL/6-nu/nu mice failed to produce IgG anti-DNA antibodies after infection with P. yoelii. Moreover, the reconstitution of BALB/c nude mice with lymph node cells from congenic euthymic BALB-Igb mice showed the activation of autoreactive B cells in nude mice by T cells from euthymic mice. Studies in mice depleted of CD4+ T cells strongly suggested that malaria-induced anti-DNA antibodies were almost entirely dependent on the presence of CD4+ T cells, as this depletion significantly decreased IgM anti-DNA antibodies and completely abolished the IgG anti-DNA production, including the IgG3 subclass in infected mice. In contrast, depletion of the CD8+ T cell subset had no effect on the production of autoantibody in malaria-infected mice. Our results indicate that CD4+ T cells play a major role for both IgM and IgG anti-DNA production during the course of malaria infection.

Animals↗

Prevention of murine cryoglobulinemia and associated pathology by monoclonal anti-idiotypic antibody.

A murine IgG3 mAb, clone 6-19, derived from non-manipulated autoimmune MRL/MpJ-lpr/lpr mice is a rheumatoid factor specific for IgG2a and is able to generate cryoglobulins via nonspecific IgG3 Fc-Fc interaction. Intraperitoneal passive transfer of ascites containing the 6-19 mAb into BALB/c mice induces, within 18 h, remarkable pathology characterized by skin vasculitis and acute glomerulonephritis associated with cryoglobulinemia. In order to evaluate the possibility of modulating the development of tissue lesions by an anti-Id antibody, we have raised an IgG2b anti-Id mAb specific to the 6-19 mAb. The cryoprecipitation of 6-19 mAb was completely inhibited in the presence of excess amounts of anti-Id mAb in vitro. In vivo, pretreatment of BALB/c mice with anti-6-19 anti-Id mAb inhibited development of skin vasculitis and glomerulonephritis induced by the 6-19 mAb. The cryoglobulin formation was markedly diminished due to enhanced elimination of the 6-19 mAb from the circulation. In contrast, pretreatment with an IgM anti-IgG3 rheumatoid factor mAb neither protected nor aggravated the development of tissue lesions. These results suggest possible implications in the anti-Id treatment of similar vascular diseases in man.

Adjuvants, Immunologic↗

Autoimmune syndrome after induction of neonatal tolerance to alloantigens. CD4+ T cells from the tolerant host activate autoreactive F1 B cells.

The induction of transplantation tolerance to H-2b alloantigens in BALB/c (H-2d) mice by neonatal injection of (C57BL/6 x BALB/c)F1 spleen cells, produces an autoimmune lupus-like syndrome due to an activation of persisting F1 donor B cells. This syndrome is characterized by hypergammaglobulinaemia, high levels of anti-DNA antibodies, as well as by circulating immune complexes and glomerular deposits of Ig. The role of host T cells in this model was investigated by using athymic BALB/c nu/nu mice as recipients of normal (C57BL/6 x BALB.Igb)F1 spleen cells. In these "tolerized" BALB/c nu/nu mice, there was a persistence of F1 donor B cells but none of the autoimmune features were expressed, conversely to tolerized BALB/c nu/+ littermates. The injection of CD4+CD8- T lymphocytes from adult normal BALB/c mice in 3-wk-old tolerized BALB/c nu/nu mice triggered the appearance of all the autoimmune findings observed in euthymic tolerant mice. The autoantibodies were produced by persisting F1 donor B cells as shown by allotype analysis. More strikingly, a similar triggering of the autoimmune syndrome, including high titers of anti-DNA IgG antibodies and circulating immune complexes, was observed after injection of CD4+CD8- T cells from 2-wk-old tolerant BALB/c mice into "tolerized" BALB/c nu/nu mice. The anti-ssDNA antibodies were shown to bear only the Ighb allotype, indicating their exclusive origin from F1 donor B cells. These results imply that CD4+ T cells from the tolerant mice are necessary for the activation of autoreactive F1 B cells and for the development of the autoimmune syndrome occurring in this model. They also suggest that, although there is a marked depletion of H-2b-specific alloreactive CTL precursors in those neonatally tolerized mice, this state of tolerance can be associated with the persistence of H-2b-specific alloreactive CD4+ cells.

Animals↗

IgG3 is the major source of cryoglobulins in mice.

A total of 20 of 23 IgG3 mAb derived from unmanipulated autoimmune MRL/MpJ-lpr/lpr mice was shown to generate cryoglobulins which were composed exclusively of IgG3. Although three IgG3 mAb failed to develop cryoglobulins, they were able to bind nonspecifically to any IgG3 molecules as efficiently as cryoprecipitable IgG did. The direct role of the gamma 3 constant region for the generation of cryoglobulins was demonstrated by the following findings: 1) the cryoglobulin activity was independent of the specificity of the IgG3 mAb, 2) no mAb other than those of the IgG3 subclass, including IgM rheumatoid factors (RF), generated cryoglobulins, and 3) the cryoglobulin activity was gained after the Ig class switch of mAb from IgM to IgG3. Analysis of Ig components in three different sources of cryoglobulins, either induced by the injection of bacterial LPS or by the infection with Plasmodium yoelii in BALB/c mice or developed spontaneously in MRL/MpJ-lpr/lpr mice, revealed the selective concentration of IgG3 in these cryoglobulins; greater than 99%, 73% and 58% of IgG recoverable from these three cryoglobulins, respectively, were IgG3. This further attests to the major role of IgG3 in the generation of cryoglobulins in mice. In addition, the enhanced formation and even induction of IgG3 cryoglobulins in the presence of IgM anti-IgG3 RF mAb, and the enrichment of IgM RF in LPS- or malaria-induced cryoglobulins indicated that IgM RF can be involved in the generation of cryoglobulins by interacting with noncryoprecipitable IgG3 as well as cryoprecipitable IgG3.

Animals↗

Inhibition of cryoprecipitation of murine IgG3 anti-dinitrophenyl (DNP) monoclonal antibodies by anionic DNP-amino acid conjugates.

Previously we have demonstrated that eight out of nine IgG3 monoclonal antibodies (mAb) obtained from autoimmune MRL-lpr/lpr mice were able to self-associate and to precipitate in the cold (Gyotoku et al., J. Immunol. 1987. 138:3785). To determine whether the cryoprecipitation of IgG3 mAb is enhanced or inhibited in the presence of specific ligand, we have established eight IgG3 mAb reactive with 2,4-dinitrophenol (DNP) hapten: four mAb were obtained from fusion of spleen cells of C57BL/6 mice immunized with 2,4,6-trinitrophenylated keyhole limpet hemocyanin, three from 129/Sv and one from BALB/c immunized with DNP-lipopolysaccharide. Five of them induced cryoglobulins composed exclusively of the IgG3 mAb. The binding of negatively charged monomeric DNP-amino acid conjugates completely inhibited the cryoprecipitation of all the five cryoprecipitating anti-DNP IgG3 mAb, while the incubation with positively charged or neutral DNP-amino acid conjugates had variable effects: increase, inhibition or no change of the cryoprecipitation. In addition, positively charged DNP-amino acid conjugates were able to induce the cryoprecipitation of one of the non-cryoprecipitating anti-DNP IgG3 mAb. Our data showed that (a) IgG3 mAb derived from non-autoimmune strains of mice, similar to IgG3 mAb derived from an autoimmune MRL-lpr/lpr strain, possessed the unique property to self-associate and were able to form cryoglobulins in most cases; (b) although the Fc-Fc interactions of IgG3 mAb play a decisive role in IgG3 cold solubility, IgG3 cryoprecipitation was markedly influenced after interacting with their specific ligand, depending on the charge of the hapten-amino acid conjugate. This suggested that even minor interferences with the electrostatic equilibrium of the IgG3 by the binding of charged hapten molecules induced dramatic changes in the solubility of the IgG3 mAb at low temperature.

Amino Acids↗