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J Ruf

Publications and source records attributed to J Ruf.

67 records · Page 4Linked to original sources

Idiotypic analysis of five xenogeneic antisera to anti-human thyroglobulin monoclonal antibodies.

Five xenogeneic anti-idiotypic antisera (anti-id) were produced against individual BALB/c-derived monoclonal antibodies (mAb) which bound to different peptidic determinants on the human thyroglobulin molecule (Tg). Idiotypic analysis performed using sensitive radioimmunoassays revealed that: (1) the anti-id highly precipitated their homologous ligands; (2) two anti-id displayed minor cross-reactivities with one or two heterologous mAb; (3) each unlabelled homologous mAb was able to inhibit the idiotype binding of the corresponding anti-id; (4) no significant inhibition of homologous idiotype binding was observed with large excess of heterologous mAb; (5) efficient inhibition of mAb binding to Tg was observed only when homologous anti-id served as inhibitor. The data support the conclusion that xenogeneic anti-id may detect on their corresponding ligands individual idiotypic specificities that can be located at the mAb-combining site. Such reagents may constitute appropriate probes for further studies on anti-Tg autoimmunity.

Animals↗

Purification of the human thyroid peroxidase and its identification as the microsomal antigen involved in autoimmune thyroid diseases.

Human thyroid peroxidase (TPO) has been purified from thyroid microsomes by immunoaffinity chromatography using a monoclonal antibody (mAb) to TPO. The eluted material had a specific activity of 381 U/mg and exhibited a peak in the Soret region. The ratio of A411 to A280 ranged from 0.20 to 0.25. Upon SDS-polyacrylamide gel electrophoresis, the purified enzyme gave two contiguous bands in the 100 kDa region. Further, it has been demonstrated that sera with anti-microsomal autoantibodies from patients presenting Graves' or Hashimoto's thyroiditis diseases were able to bind to purified TPO and to inhibit in a dose-dependent manner the mAb binding to purified TPO. This suggests that TPO is the thyroid antigen termed to date the microsomal antigen.

Antibodies, Monoclonal↗

Cell membrane coating with glutaraldehyde: application to a versatile solid-phase assay for thyroid membrane proteins and molecules interacting with thyroid membranes.

In defined conditions, glutaraldehyde was shown to tightly bind cell membranes to flexible microtiter plates without significant alteration of the antigenic and functional properties of membrane proteins. In the presence of 0.06% glutaraldehyde, human thyroid membranes were bound to plastic firmly enough to resist numerous washing and flicking steps; the coated membranes remained almost unaltered with regard to monoclonal antibody and thyrotropin binding as well as adenylate cyclase and peroxidase activities. Based on the use of thyroid membrane-coated microtiter plates, a versatile solid-phase assay was developed which allowed screening of anti-membrane monoclonal antibodies, detection of thyrotropin-displacing activity in hormone and antibody preparations, and monitoring of fractionation experiments of solubilized membrane antigens and thyrotropin receptor. It was concluded that the use of glutaraldehyde for coating cell membranes to flexible microtiter plates enabled the establishment of simple, rapid, and reliable assays for detection and quantitation of membrane proteins and molecules interacting with membranes.

Adenylyl Cyclases↗

Various expressions of a unique anti-human thyroglobulin antibody repertoire in normal state and autoimmune disease.

Polyclonal anti-human thyroglobulin (hTgb) antibodies (Ab) were purified from sera of rabbits immunized with human thyroglobulin, normal humans and patients suffering from Graves' disease, Hashimoto's thyroiditis and thyroid carcinoma. The avidity of the various Ab preparations for hTgb ranged from 0.3 X 10(10) -2.2 X 10(10) M-1. By using well characterized mouse monoclonal antibodies (mAb) directed against hTgb, it was shown that the fine specificities of induced anti-hTgb Ab in rabbits, natural Ab in normal subjects and autoantibodies in diseased patients were similar; however, they differed from that of rabbit anti-bovine and anti-porcine thyroglobulin Ab which were able to inhibit the hTgb binding of only a few of the mAb. Anti-hTgb in rabbits and in patients with thyroid carcinoma varied from those in normal subjects only by uniformly elevated serum titers. In contrast, patients with Graves' disease and Hashimoto's thyroiditis showed an increased concentration essentially restricted to Ab reacting with few of the antigenic determinants recognized by the mAb. Our data suggest that the repertoire of anti-hTgb Ab is similar in mouse, rabbit and human. Furthermore, the finding of identical fine specificities for anti-hTgb Ab in normal and pathological conditions implies that autoantibodies are produced in normal subjects and held to a low level by regulatory processes which fail with respect to selected epitopes in autoimmune diseases.

Animals↗

[Antigenic relation between thyroid peroxidase and the microsomal antigen implicated in auto-immune diseases of the thyroid].

Pools of sera from patients with Graves' disease or Hashimoto's thyroiditis highly inhibit the binding to human thyroid membranes of one of 19 monoclonal antibodies raised against preparations of human thyroid membranes. This monoclonal antibody reacts with human and bovine thyroid peroxidase and bovine lactoperoxidase but not with human hemoglobin, cytochrome c and other related molecules. These results indicate that the thyroid peroxidase and the microsomal antigen are antigenically related. These data taken together with those from other groups, highly suggest that thyroid peroxidase is the microsomal antigen involved in autoimmune thyroid diseases.

Adult↗

Antithyroglobulin monoclonal and autoantibodies cross-react with an orbital connective tissue membrane antigen: a possible mechanism for the association of ophthalmopathy with autoimmune thyroid disorders.

The possibility that Graves' ophthalmopathy and autoimmune thyroid disorders may be associated because of autoimmune reactions against antigens shared between human orbital and thyroid tissues was investigated using anti-thyroglobulin (Tg) monoclonal and autoantibodies. Eleven of 16 mouse monoclonal antibodies (MCAB) tested reacted, in an enzyme-linked immunosorbent assay (ELISA), with an antigen in human orbital connective tissue membranes (OCTmem), but not with the OCT soluble fraction, or with membrane or soluble fractions of human eye muscle, lacrimal gland or skin connective tissue. The anti-OCTmem activity was absorbed by OCTmem and Tg, but not by liver membranes or bovine serum albumin (BSA). In preliminary studies four out of 113 human MCAB against thyroid or orbital tissue antigens showed reactivity restricted to Tg and OCTmem. Sera from approximately 50% of patients with autoimmune thyroid disorders, with or without ophthalmopathy, also reacted with OCTmem. The autoantibody activity correlated closely with serum titres of antithyroglobulin but not with the presence, duration, or severity of the eye disease. The OCTmem reactivity was absorbed by Tg, thyroid membranes, and OCTmem but not liver membranes, membranes prepared from other orbital tissues, or BSA. The OCTmem-Tg shared antigen site appeared not to be native thyroglobulin since, (i) MCAB and serum autoantibodies did not react with the cytosol fraction of OCT, and (ii) because the membrane antigen was not solubilizable. Because not all patients with ophthalmopathy have detectable anti-Tg antibodies and, conversely, because not all patients with detectable anti-Tg antibodies develop ophthalmopathy it is unlikely that autoimmunity against a OCTmem-Tg shared antigen is the primary mechanism of Graves' ophthalmopathy, although this possibility has not been excluded. On the other hand the reaction of anti-Tg autoantibodies with OCT membranes may be a model for other autoimmune reactions against other thyroid-orbital tissue-shared antigens. While the pathogenesis of Graves' ophthalmopathy is likely to be multifactorial, humoral and cellular reactions against primary orbital antigens, thyroid-orbitol tissue shared antigens, or both, are likely to play important roles.

Adult↗

Specificity of monoclonal antibodies against human thyroglobulin; comparison with autoimmune antibodies.

Ten monoclonal antibodies (mAb) directed against human thyroglobulin (hTgb) were produced, purified and characterized. The mAb avidity for hTgb ranged from 10(-10) to 10(-6) M. The species specificity of the mAb was as follows: eight mAb reacted with monkey Tgb, three with dog Tgb and one with pig Tgb; none with bovine and ovine Tgb. The binding of mAb to hTgb was not significantly inhibited in the presence of Tgb carbohydrate moieties, tyrosine, iodotyrosines and iodothyronines. The topology of the antigenic determinants recognized by the 10 mAb on hTgb was explored by inhibition of Tgb binding of radiolabeled mAb by the other antibodies. Six distinct clusters of reactivity were described. Localization of the antigenic determinants recognized by mAb on hTgb was attempted using tryptic fragments of hTgb to inhibit the binding of mAb to hTgb. The inhibitory effect of hydrolysis products was different for each mAb but exhibited partial analogies between mAb of the same cluster of reactivity. Anti-hTgb autoimmune antibodies (aAb) purified from sera of Graves patients cross-reacted essentially with mAb of one out of the six clusters. These results demonstrate that the large number of antigenic determinants presented by the hTgb are not disseminated on the molecule but are clustered in antigenic regions. Furthermore, from the six antigenic regions evidenced in this paper, only one is involved in autoimmune antibody production in Grave's disease.

Animals↗

Structural bases for public idiotypic specificities of monoclonal antibodies directed against poly(Glu60Ala30Tyr10) and poly(Glu60Ala40) random copolymers.

NH2-terminal amino acid sequences of heavy and light chains of seven poly(Glu60Ala30Tyr10) (GAT) specific hybridoma products derived from DBA/2 and (DBA/2 X BALB/c)F1 hybrid mice and those of BALB/B polyclonal antibodies have been determined over the first 40 residues. Comparison of these sequences with those of nine other GAT or poly(Glu60Ala40) (GA) specific hybridoma products previously reported allowed the following conclusions. (i) Sequences of hybridoma H and L chains are present in the pool of polyclonal antibodies. (ii) The public CGAT (or pGAT) idiotypic specificities are strictly confined to antibodies exhibiting limited heterogeneity with regard to both the variable heavy (VH) and the variable kappa (V kappa) sequences that may be accounted for by one and two germ-line genes, respectively. (iii) The public idiotypic specificities GA-1, expressed by some anti-GAT and most anti-GA antibodies, make use of the same (or similar) VH germ-line genes as the CGAT or pGAT antibodies but possess a distinctive V kappa sequence. (iv) Antibodies expressing neither of the alternative public specificities mentioned above appear to be more heterogeneous and express VH and V kappa sequences that were found to differ from the basic structures defining the CGAT (pGAT) or GA-1 correlates. It is concluded that CGAT (or pGAT) and GA-1 public idiotypic specificities are germ-line markers of both VH and V kappa regions, an observation in agreement with previously reported serological data.

Animals↗

Comparison of measurements of in vitro production of antithyroid microsomal antibody versus antithyroid peroxidase antibody.

In vitro production of antithyroid microsomal antibody (AMA) and antithyroid peroxidase antibody (APA) by peripheral blood lymphocytes from patients with autoimmune thyroid disease (AITD) has been studied and compared, in view of the evidence for identity of the two differently measured antibodies. Peripheral non-T cells (2 x 10(5)) and autologous CD4 (helper/inducer) cells (2 x 10(5)) from patients with positive serum AMA were cultured for 7 days with pokeweed mitogen (PWM). B cells secreting AMA or APA were detected by the enzyme-linked immunosorbent assay (ELISA) spot assay. AMA or APA in the culture supernatants of these cells was also measured by ELISA. There was a significant correlation between the number of AMA- (IgG class) secreting cells and APA- (IgG class) secreting cells (r = 0.89 p less than 0.001). There was also a significant correlation between AMA- and APA-ELISA indices (r = 0.86, p less than 0.001). Furthermore, the number of AMA- or APA-secreting cells significantly correlated with AMA or APA secreted in the culture supernatants (r = 0.91, r = 0.92), respectively. These data show that peripheral blood lymphocytes from patients with AITD were able to produce antibodies against thyroid peroxidase (TPO) in vitro, as well as antibodies against thyroid microsomal antigen, after PWM stimulation. The significant correlation between in vitro AMA versus APA production, or the number of AMA- versus APA-secreting cells, accords with the evidence that TPO is identical to, or at least the major antigenic protein component of, thyroid microsomal antigen.

Adult↗