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M Ludgate

Publications and source records attributed to M Ludgate.

At least 37 records · Page 2Linked to original sources

Thyrotropin receptor transcripts in human adipose tissue.

Thyroid associated ophthalmopathy (TAO) is generally considered to have an autoimmune pathogenesis but the target antigen has yet to be identified. It is most frequently associated with Graves' disease and there is some logic in assuming that the same antigen, the thyrotropin receptor (TSHR), is the common link. Previous studies, mostly PCR based, aimed at investigating TSHR transcripts in the orbit, have yielded conflicting results, although there is circumstantial evidence for their presence in orbital fat. In this study, we have examined adult human adipose and muscle tissues from various locations, initially by PCR and subsequently by northern blot. We obtained the expected 610bp product in normal intestinal and orbital fat but not skeletal muscle, following two rounds of PCR amplification but only when reverse transcription used a TSHR specific primer. In northern blots, despite loading all of the RNA obtained from total normal orbital fat contents, TSHR transcripts were at the limit of detection and similarly for large samples of intestinal fat. The exception was RNA obtained from TAO orbital fat, in which TSHR transcripts of 4.6 and 1.7kb were clearly visible, as in the thyroid. We conclude that normal adult adipose tissues contain low levels of TSHR transcripts. In TAO, TSHR transcripts are elevated probably due to an increased number of cells, in particular of preadipocytes in orbital adipose tissue.

Abdomen↗

[Basedow disease following metastatic thyroid cancer].

OBJECTIVES: Metastatic thyroid carcinoma rarely provokes hyperthyroidism. We describe here the main characteristics of this association observed in a 48-year-old woman. CASE REPORT: The patient had presented signs of hyperthyroidism for one year. Clinical examination revealed severe Graves' disease with nodular goiter. Presurgery investigations demonstrated thyroid carcinoma and lung metastasis. Thyroid stimulating immunoglobulins were elevated. After total thyroidectomy, hyperthyroidism persisted, indicating the functional nature of the lung metastases. DISCUSSION: The effect of thyroid stimulating immunoglobulins on the clinical course of thyroid carcinoma and distant metastases remains unknown.

Female↗

Self-reactive cytotoxic gamma delta T lymphocytes in Graves' disease specifically recognize thyroid epithelial cells.

In this paper we report the isolation of a self-reactive cytotoxic gamma delta T cell line, 158RE.2, that originates from the T lymphocyte population infiltrating the thyroid gland of a patient with Graves' disease. Functional data using this cell line demonstrate that gamma delta T cells expanded in the thyroid tissue specifically recognize a ligand expressed by thyroid epithelial cells and cell lines of endocrine epithelial origin. The TCR expressed by these gamma delta T cells--V gamma I/V delta 5--is unusual in peripheral blood lymphocytes, and its specificity is clearly different from that observed in a high percentage of gamma delta T cells from PBL, which express the common TCR V gamma 9/V delta 2. The V gamma I/V delta 5 receptor is involved in the recognition of the ligand expressed by the thyroid cells, but not in the NK-like activity also displayed by 158RE.2. These cells express CD8 alpha alpha dimers, which participate in the thyroid ligand recognition but not in the NK-like activity. The epithelial cell recognition is not restricted by classical MHC class I or class II molecules, although the CD8 alpha alpha participation in the recognition suggests the involvement of nonclassical MHC molecules. These are the first data to be presented on self-reacting gamma delta T cells in human epithelium.

Animals↗

Cloning of candidate autoantigen carboxypeptidase H from a human islet library: sequence identity with human brain CPH.

A number of proteins, many of them enzymes, i.e. glutamic acid decarboxylase (GAD), carboxypeptidase H, 37-40 K tyrosine phosphatase (ICA512, IA2/IA2 beta), have been proposed as islet autoantigens involved in the pathogenesis of IDDM. Until recently, progress in their characterization has been impeded by the inaccessibility of the human pancreas, resulting in many of them being cloned from animal or non-islet sources. Carboxypeptidase H, one of these enzymes, has been cloned and sequenced from human brain and from rat islets but not from human islets. In this study, we describe the production of a human islet cDNA library and the cloning of islet CPH from it. Since CPH clones were also detected in a human thyroid library, we have sequenced CPH from these two endocrine tissue libraries and compared them to the known brain sequence. The sequences from islets and thyroid were identical and differed from brain only in the absence of a second ATG in the predicted 5'non-coding region. Northern blot analysis revealed the presence of an identical 2.5 kb transcript in human islets, thyroid and brain. The confirmation of the existence of a single isoform of CPH expressed in brain and endocrine tissues simplifies future experiments to elucidate the role of CPH as autoantigen.

Animals↗

Transfer of thyroiditis, with syngeneic spleen cells sensitized with the human thyrotropin receptor, to naive BALB/c and NOD mice.

In previous studies we have induced TSH binding-inhibiting Igs and thyroiditis in BALB/c mice and thyroiditis alone in NOD mice immunized with the extracellular domain of the human TSH receptor produced as a maltose-binding protein fusion in bacteria (MBP-ECD). In this study, our aim was to determine whether thyroiditis can be transferred to syngeneic naive recipients with in vivo and in vitro primed spleen cells. Groups of 6-week-old female BALB/c and NOD mice were immunized ip with MBP-ECD in an adjuvant of alum plus attenuated Bordetella pertussis toxin, on days 0 (100 micrograms), 14, 28, and 35 (50 micrograms). These mice (in vivo primed) and nontreated age- and sex-matched controls were killed on day 43, and their spleens and thyroids were removed, the latter to verify the induction of thyroiditis in the antigen-treated mice. Splenocytes were disrupted mechanically and cultured at 3 x 10(6)/ml in RPMI supplemented with 20 micrograms/ml MBP-ECD for 48-64 h. After this in vitro priming, some of the splenocytes received no further treatment, but a portion was fractionated into a CD4+-enriched population. Groups of 6-week-old female BALB/c and NOD mice were immunized into the tail vein with 100-200 microliters PBS containing approximately 10(5)-10(7) unfractionated T cells (both in vivo primed and not) and CD4+-enriched (in vivo primed) splenocyte populations. The animals were killed 16 days later, and their thyroids were examined histologically and by immunohistochemistry. In addition, levels of antibody to the MBP-ECD priming antigen were assessed by enzyme-linked immunosorbent assay in the antigen- and spleen-treated mice. In the donor animals, in vivo priming resulted in an extensive lymphocytic infiltration of the thyroids in both BALB/c and NOD mice and follicular destruction in the latter. There was no evidence of thyroiditis in all 9 BALB/c mice and all 4 NOD mice who received unfractionated T cells from mice that had not been primed in vivo. In contrast, transfer of MBP-ECD in vivo primed unfractionated T cells resulted in thyroiditis in 9 of 13 BALB/c mice and 5 of 6 NOD mice; similarly, the equivalent CD4+-enriched population produced extensive thyroiditis in 2 of 3 BALB/c mice and all three NOD mice. The most striking difference between the antigen- and spleen-treated mice was in the quantity of the infiltrate, which was much greater in the latter and extended throughout the thyroid glands of these animals. In common with mice treated directly with the MBP-ECD antigen, the infiltrates of both BALB/c and NOD recipient mice contained large numbers of activated T cells expressing the receptor for interleukin-2, and macrophages and dendritic cells were plentiful, particularly in the BALB/c mice, in which B cells and interleukin-10-positive T cells were also present. The most abundant infiltrates, containing numerous CD8+ T cells and follicular destruction, were observed in NOD mice receiving primed unfractionated T cells or CD4+-enriched T cells. In contrast to the donors, none of the recipient animals had circulating antibodies to the MBP-ECD antigen. In conclusion, we have shown that it is possible to transfer thyroiditis with spleen cells from mice primed in vivo with a human TSH receptor preparation. Furthermore, the thyroiditogenic activity appears to reside in the CD4+ population.

Animals↗

Patient with monoclonal gammopathy, thyrotoxicosis, pretibial myxedema and thyroid-associated ophthalmopathy; demonstration of direct binding of autoantibodies to the thyrotropin receptor.

We describe a patient with monoclonal gammopathy who subsequently developed thyrotoxicosis, pretibial myxedema and thyroid-associated ophthalmopathy. The pathogenesis of thyrotoxicosis in Graves' disease is due to the presence of autoantibodies that mimic the action of thyrotropin (TSH), called thyroid-stimulating antibodies (TS-ab); these antibodies may or may not inhibit the binding of TSH to the receptor (thyroid-binding inhibiting immunoglobulin, TBII). The patient's immunoglobulins were TS-ab positive and TBII negative when measured on CHO cells expressing the human TSH receptor. The pathogenetic link between the thyroid, orbit and skin is yet to be established but several candidate shared antigens have been proposed, including the TSH receptor itself. The monoclonal immunoglobulins were in evidence before the symptoms of pretibial myxedema, thyrotoxicosis and ophthalmopathy. In addition, the patient had no autoantibodies to thyroglobulin or thyroperoxidase, which are classic markers of thyroid autoimmunity. This combination led us to postulate that the monoclonal gammopathy could be the cause of all the observed pathology. One method to test this hypothesis would be to show that the monoclonal immunoglobulin is a TS-ab. Various methods were used to separate the monoclonal from the polyclonal components of the patient's serum. Preparative isoelectric focusing enabled us to obtain fractions containing only the monoclonal (as revealed by polyacrylamide gel electrophoresis), which were devoid of TS-ab activity (measured as cAMP accumulation in CHO cells expressing the human TSH receptor in a hypotonic bioassay). Subsequently, different oligoclonal fractions were shown to have varying degrees of TS-ab activity, with one fraction having faint biological activity and able to recognize a recombinant TSH receptor preparation in a Western blot. In conclusion, the monoclonal antibody does not seem to be responsible for the thyrotoxicosis, pretibial myxedema and ophthalmopathy. We confirm previous data showing that TSH receptor antibodies in patients with Graves' disease are heterogeneous in nature and we present the first demonstration of autoantibodies capable of binding the TSH receptor but devoid of TBII activity.

Adult↗

The thyroperoxidase doublet is not produced by alternative splicing.

Thyroperoxidase is a membrane-bound, heme-containing enzyme which catalyses iodination of thyroglobulin and coupling of resulting iodotyrosines to produce thyroid hormone. In addition to the full length molecule of 933 amino acids (TPO1), Northern blotting and sequencing have revealed several shorter transcripts. The most abundant is a species lacking 171 nucleotides in which the alternative splicing results in the deletion of codons 533-590 in exon 10 (TPO2). Evidence for TPO2 transcripts being translated into a protein is lacking, but in Western blots TPO invariably appears as a doublet of 110 and 105 kDa. In the present study we have produced two recombinant fusion proteins for: (i) the 57 amino acids which are spliced out in TPO2 and (ii) for the 20 amino acids which bridge the splice site (10 amino acids on both sides). Both recombinant fragments have been produced in the pMAL-cRI vector as a maltose-binding protein (MBP) fusion, permitting their purification from a bacterial lysate on an amylose column. Rabbits have been immunized by intradermal injection of 500 micrograms of fusion protein, initially in complete Freund's adjuvant followed by two boosts, at 2-week intervals, in incomplete Freund's adjuvant. The resulting high titre immune sera (IS) were reactive with the relevant immunising antigens, when tested by ELISA. Depletion of each serum by passage through an MBP-CNBr Sepharose column allowed purification of antibodies against the relevant peptides, as demonstrated by ELISA with the appropriate fusion protein and MBP. This demonstrates that we have produced specific polyclonal antibodies for the 57 amino acids unique to TPO1 and for the amino acid segment bridging the splice site, found in TPO2. These polyclonal antibodies were used in Western blotting experiments with normal and Graves' thyroid membranes, in reducing and non-reducing conditions. Monoclonal 47/C21 which recognises a linear epitope (amino acids residues 710-722) common to TPO1 and TPO2 was used as a control. In non-reducing conditions, we observed a broad signal at 105-110 kDa, which appeared to comprise two bands, with both polyclonal antibodies and the monoclonal. There was no difference in the image between the normal and the Graves' thyroid. In reducing conditions, the broad signal resolved clearly into two distinct bands, one at 105 and the other at 110 kDa. Once again we observed exactly the same pattern of reactivity with all three antibodies both in normal and Graves' glands. We conclude that the TPO doublet is not the consequence of translation of TPO2.

Alternative Splicing↗

The autoimmune response induced by immunising female mice with recombinant human thyrotropin receptor varies with the genetic background.

In a previous study, we have described the induction of thyroid blocking (TBAB) and thyrotropin binding inhibiting antibodies accompanied by thyroiditis in female BALBc mice (H2d) immunised with the extra-cellular domain (ECD) of the human thyrotropin receptor (TSHR) expressed as a maltose binding protein (MBP) fusion. In the present study we have investigated the response induced in mice of varying MHC haplotype. Two groups of female NOD (H2g), CBA (H2k) and C57 (H2b) mice were immunised intra-peritoneally with MBP-ECD or MBP on days 0 (100 micrograms), 15, 30 and 43 (50 micrograms). Blood samples from individual mice were obtained on days 0, 22, 36 and 50 and assessed for thyroid binding inhibiting immunoglobulins (TBII), thyroid stimulating (TSAB) and TBAB. On day 50 the treated mice and five age/sex matched NOD mice were sacrificed, their thyroids removed, examined histologically and any infiltrate characterised. Induction of antibodies to the ECD was tested by ELISA in which plates had been coated with either MBP-ECD or an ECD-protein A fusion. All of the mice developed a strong antibody response to the relevant immunogen but none of them contained TBII, TSAB or TBAB activities. No lymphocytic infiltration of the thyroid glands of the CBA or C57 mice was observed. In contrast, all of the NOD mice displayed severe thyroiditis, whilst one of seven MBP-treated mice had moderate infiltration and none of five untreated controls. Immunohistochemical analysis revealed that the infiltrate was predominantly activated T helper cells with little evidence of B cells or the cytokines IL-10 or IL-4, indicating that a Th1 response had been induced, contrary to our findings in BALBc mice which mount a Th2 response. In conclusion we have shown that the type and extent of response induced by immunising with the TSHR varies in mice of differing genetic background. H2d mice develop thyroiditis and TBAB/TBII, H2g mice develop thyroiditis in the absence of functional TSHR antibodies, whilst H2b and H2k mice are resistant.

Animals↗

Mapping thyroid peroxidase epitopes using recombinant protein fragments.

The identification of autoantibody epitopes is important to the understanding of autoimmune thyroid diseases. In the case of thyroid peroxidase antibodies (TPO-ab), recent reports have disagreed about the number and type of autoantibody epitopes found in human TPO. In order to clarify the nature of these epitopes, we used an approach that provides recombinant human TPO produced by bacterial cells. The cDNA of four slightly overlapping fragments of human TPO-TPO 1(Glu 17-Ser 227), TPO 2(Tyr 226-Thr 476), TPO 3(Glu 471-Ser 720) and TPO 4(Phe 709-Leu 993)--were amplified by polymerase chain reaction and subcloned into the expression vector pMAL. In addition, a TPO 3 species for an alternatively spliced form of TPO of 876 amino acids was constructed (TPO 3M). Each of these constructs encodes a fusion protein, in which the amino terminal portion is maltose-binding protein, followed by the sequence of the fragment of human TPO. The plasmid constructs were transformed in Escherichia coli and, after growth, bacterial cells were harvested, lysed and the lysate was passed over an amylose affinity column and eluted with maltose. Western blots were performed using 33 sera from patients with autoimmune thyroid disease (group 1) and 17 sera from patients with nodular goiter and focal thyroiditis (group 2), all positive for TPO-ab measured by radio-immunoassay; sera from 10 healthy people with no clinical evidence of thyroiditis and positive for TPO-ab measured by radioimmunoassay (group 3) and sera from 30 patients with antigastric parietal cell antibodies without signs or symptoms of thyroiditis, 16 negative for TPO-ab (group 4a) and 14 positive for TPO-ab (group 4b), were included in the study.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Identification of the thyroid Na+/I- cotransporter as a potential autoantigen in thyroid autoimmune disease.

The thyroid gland is the target of several autoimmune diseases. Specific thyroid proteins have been identified as autoantigens associated with these diseases (e.g. thyroperoxidase, thyroglobulin and the thyrotrophin (TSH) receptor). In this paper, we report that the serum of a patient suffering from Hashimoto's thyroiditis, autoimmune gastritis and rheumatoid arthritis was able to inhibit the chronic TSH-induced I- uptake of dog thyrocytes in culture, even at a 1:1000-fold dilution, without affecting their 86Rb+ uptake. This blocking activity is rare as 147 sera (from patients positive for antibodies to the thyroid microsomes and the gastric parietal cell antigen, patients with Sjögren's syndrome, patients with a high titre of microsomal antibodies and low or negative for antibodies to thyroperoxidase, and patients with a high titre of microsomal antibodies and frank hypothyroidism) were negative when tested for their ability to inhibit I- uptake. Subsequently we tested 20 murine monoclonal antibodies previously obtained by immunizing mice with a crude human thyroid membrane preparation, which were all negative when tested against thyroglobulin and thyroperoxidase. One of the monoclonal antibodies displayed a 50% inhibition of the chronic TSH-induced 125I- uptake of dog thyrocytes without affecting the 86Rb+ uptake of the cells. Immunoglobulins purified from the ascite fluid by affinity chromatography on a protein A cellulose column had the same characteristics. Taken together, the data suggest that thyroidal 125I- uptake can be inhibited by antibodies, that autoantibodies in the patient's serum are most probably responsible for the observed inhibition and therefore that the Na+/I- cotransporter is probably an autoantigen.

Animals↗

Western blot analysis of thyrotropin receptor expression in human thyroid tumours and correlation with TSH-binding.

Expression of thyrotropin receptor (TSHr) was analyzed in normal human thyroids and differentiated thyroid tumours by Northern blotting of total RNA and by Western blotting of detergent-solubilized membrane proteins with an antibody specific for the extracellular domain of TSHr. Under nonreducing conditions TSHr stained as a 90-kDa protein in normal thyroid tissue. Expression varied in differentiated carcinomas from normal to not detectable in parallel to steady state TSHr mRNA levels and TSH binding in a TSH binding assay. The negative expression of TSHr in some patients with differentiated carcinomas may have consequences for the TSH suppressive treatments of these patients.

Binding Sites↗

Induction of thyrotropin receptor (TSH-R) autoantibodies and thyroiditis in mice immunised with the recombinant TSH-R.

Two groups of 10 Balbc by Jico male mice were immunised on days 0, 15 and 35, with the extra cellular domain (ECD) of the human thyrotropin receptor (TSH-R) expressed as a fusion protein in bacteria (group 1) or with the maltose binding protein (MBP) fusion partner alone (group 2). Blood was obtained on days 0, 22, 32, 42 and 49 and samples from the individual animals pooled for each group. Serum and immunoglobulin (IgG) preparations were tested, using CHO cells expressing the human TSH-R (JP26 and JP09) for thyroid stimulating (TSAb); thyroid blocking (TBAb) and thyrotropin binding inhibiting (TBII) activities. Neither serum nor IgGs were found to contain TSAb at any time point. TBII activity was present in the serum of both groups on day 32 and in group 1 only on day 49; when the test was performed on IgGs, only the MBP-ECD day 49 preparation remained significantly positive for TBII (p < 0.005). Significant TBAb activity was present in both the serum and IgG of group 1 day 49 (p < 0.005) and to a lesser extent on 42 (p < 0.02). Following the second immunisation (day 15) both groups and had decreased circulating T4 levels (p < 0.05) when compared with day 0 in each case. Group 2 were unaffected by the third immunisation on day 35 but the MBP-ECD group again had significantly decreased T4 levels (p < 0.02) compared with MBP day 49 and (p < 0.03) when compared with MBP-ECD day 0. Histological examination of thyroids from group 1 animals revealed extensive vascularisation and an atypical lymphoblastoid infiltration which was not observed in control mice. These preliminary results indicate that care is required in interpreting data since a non-receptor antigen was shown to decrease circulating thyroxine and serum from these animals had apparent TBII like activity. However, the results obtained with the IgGs suggest that receptor autoantibodies can be induced by immunising with the human TSH-R, in addition, the immunised mice show histological evidence for the development of thyroiditis.

Animals↗

Antibodies against 1D, a recombinant 64-kDa membrane protein, are associated with ophthalmopathy in patients with thyroid autoimmunity.

We have tested for serum antibodies reactive with 1D, a recombinant 65-kDa human thyroid protein which is also expressed in eye muscle, in patients with thyroid autoimmunity and ophthalmopathy by immunofluorescence and SDS-polyacrylamide gel electrophoresis (SDS-PAGE) and Western blotting. We also measured antibodies to a 64-kDa pig eye muscle membrane protein which is identified by SDS-PAGE and Western blotting, correlating the two reactivities. While antibodies to 1D, expressed in Chinese hamster ovary (CHO) cell membrane, were detected in approximately 40% of patients with ophthalmopathy, in both tests the greatest prevalence, by immunofluorescence, 73%, was demonstrated in patients with Graves' hyperthyroidism without clinically evident eye disease, although only 50% of these patients were positive in immunoblotting. When the two tests for anti-1D antibodies were compared, immunofluorescence appeared to be the more specific and immunoblotting appeared to be the more sensitive. The greatest prevalence of antibodies reactive with a 64-kDa pig eye muscle protein, 71%, was in patients with TAO of less than 1 year duration; tests were positive in 49% of patients with more chronic ophthalmopathy and in 50% of patients with Graves' hyperthyroidism without evident eye disease. Antibodies reactive with 1D were detected in 17% of normals by immunofluorescence and 24% by immunoblots, while antibodies reactive with the 64-kDa pig eye muscle protein were detected in only 10% of the normal subjects tested. Lesser prevalences of antibodies to the two 64-kDa proteins in patients with established eye disease suggest that such antibodies may be an early abnormality in patients with Graves' hyperthyroidism who are predisposed to develop ophthalmopathy. Although the association was not close, reactivity against 1D by immunoblotting, but not immunofluorescence, was significantly correlated with reactivity to a 64-kDa eye muscle membrane protein by immunoblotting. On the other hand, when sera containing antibodies reactive with both 1D and the 64-kDa eye muscle protein were incubated with CHO (1D) cell membrane, reactivity against 1D was absorbed while that against the eye muscle protein was not. The precise relationship between the two 64-kDa proteins can only be clarified by cloning the 64-kDa protein from an eye muscle expression library and comparing the sequences with those of 1D.

Adolescent↗

Detection of antibodies blocking thyrotropin effect using Chinese hamster ovary cells transfected with the cloned human TSH receptor.

Chinese hamster ovary (CHO) cells transfected with the cloned human TSH receptor (CHO-R) were used to develop an assay to detect thyroid autoantibodies blocking the TSH-dependent cAMP production (TSHBAb). The study group included 38 patients with goitrous Hashimoto's thyroiditis (HT) and 47 subjects with atrophic thyroiditis (AT). In the HT group, 8 patients had subclinical hypothyroidism (HT-SH) and 30 had overt hypothyroidism (HT-H). Thirty normal subjects served as controls. Immunoglobulin G (IgG) was prepared from serum by double chromatography on DEAE-Sephadex. CHO-R cells were seeded in 96-well plates and were cultured for 48 h before the assay in RPMI-1640 medium plus 1 mmol/L glutamine, 10% fetal calf serum, and 0.4 g/L geneticin. In the assay for TSHBAb, CHO-R cells were incubated with IgG alone (0.5-2 mg/ml), TSH alone (0.2-625 mU/L), or IgG plus TSH; all samples were diluted in hypotonic medium containing 0.5 mmol/L isobutylmethylxanthine (IBMX). After 2 h of incubation at 37 degrees C in 5% CO2-95% air atmosphere, TSH-stimulation was quantified by measuring extracellular cAMP by a RIA. IgGs from normal subjects did not significantly modify the stimulation of adenylate cyclase produced by TSH, the results obtained ranging between -30% and +18% (mean +/- SD = -3 +/- 14%). All IgGs producing an inhibition greater than 2SD from the mean of controls (> 25%) were considered positive for blocking antibodies. TSHABAb were detected in 1/8 (12.5%) patients with HT-SH, in 7/30 (23.3%) with HT-H and 16/47 (34.0%) patients with AT.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Identification of high molecular weight forms of inositol 1,4,5-trisphosphate 3-kinase in rat thymus and human lymphocytes.

A soluble inositol 1,4,5-trisphosphate 3-kinase (InsP3 3-kinase) has been characterized from extracts of rat thymus. The enzyme was shown to have a molecular weight within the range 98,000-114,000 M(r) as determined by regeneration of enzyme activity from sodium dodecyl sulphate polyacrylamide gels. The enzyme phosphorylates inositol 1,4,5-trisphosphate (InsP3) to inositol 1,3,4,5-tetrakisphosphate (InsP4) with an apparent Km of 3.1 +/- 0.4 microM. The enzyme is stimulated 4-6-fold by Ca2+/calmodulin and is not recognised by polyclonal antisera raised against rat brain InsP3 3-kinase A. High levels of InsP3 3-kinase activity were also detected in soluble extracts of human lymphocyte preparations. The human lymphocyte enzyme was shown to have a molecular weight between 61,000 and 70,000 M(r) as judged by SDS-PAGE, and was stimulated approximately 10-fold in the presence of Ca2+/calmodulin. These results establish that InsP3 3-kinase from rat thymus and human lymphocyte preparations represent high molecular weight isoenzymes of the InsP3 3-kinase family.

Animals↗

T cell responses to orbital antigens in thyroid-associated ophthalmopathy.

Thyroid-associated ophthalmopathy (TAO) is most likely to be a T cell-mediated disease, in which cytokines released in the extraocular muscles activate fibroblasts, increasing glycosaminoglycan production. The nature of the orbital antigen recognized by the infiltrating T cells is unclear, although it is possible that there is cross-reactivity between this and a thyroid autoantigen to explain the close association with thyroid autoimmunity. We have tested the ability of human and porcine eye muscle antigen preparations to stimulate proliferation of circulating T cells from healthy subjects and patients with TAO or Graves' disease without clinical TAO. Occasional responses were seen, particularly after depletion of CD8+ T cells, and two out of 10 TAO patients responded to eye muscle proteins of 25-50 kD after fractionation of antigens on gels and subsequent elution. There was no disease-specific response of T cells to R1, R14, D1 and 1D3, recombinant proteins identified from screening an eye muscle cDNA library with sera from patients with autoimmune thyroid disease. We have also found that interferon-gamma (IFN-gamma) production by T cells from TAO patients was not stimulated by eye muscle membrane antigens or by 1D3. These results suggest that the frequency of circulating T cells responding to eye muscle antigens in TAO is low, and that several candidate orbital antigens, including the 64-kD protein 1D3, are unlikely to be important T cell autoantigens in this condition.

Animals↗

Recombinant thyrotropin receptor and the induction of autoimmune thyroid disease in BALB/c mice: a new animal model.

In a preliminary study, we observed the production of TSH binding-inhibiting (TBII) and thyroid-blocking (TBAb) antibodies accompanied by lymphocytic infiltration of the thyroid in a pool of male BALB/c mice immunized with the extracellular domain (ECD) of the human TSH receptor (TSHR) expressed as a maltose-binding protein (MBP) fusion in bacteria. In the present study we evaluated the humoral response to the same antigenic preparation in a new series of individual male and female BALB/c mice immunized ip on day 0 with 100 micrograms MBP-ECD and days 25, 39, and 53 with 50 micrograms MBP-ECD in an adjuvant composed of aluminum oxide, magnesium hydroxide, and Bordetella pertussis vaccine. Mice immunized with MBP served as control. Individual sera and immunoglobulins were tested for TBII, TBAb, and thyroid-stimulating antibodies (TSAb) on days 0, 32, 46, and 60, and total circulating T4 levels were measured by RIA. Animals were killed on day 120, their thyroids were examined histologically, the infiltrates were characterized using monoclonal antibodies specific for T-cells (total, activated, helper, and suppressor), B-cells, and macrophages. Sera and immunoglobulins G of the MBP-treated control group were all negative for TSAb, TBAb, and TBII activity. The receptor-immunized mice, despite having high titers of antibodies to the immunogen in an enzyme-linked immunosorbent assay, displayed a heterogeneous response in terms of biological activity, with 3 of 7 female and 4 of 8 male mice having TBAb/TBII activities that persisted and whose activity increased throughout the experiment. No significant TSAb antibody activity was observed. Total T4 levels were also heterogeneous even before immunization, but 9 of 15 MBP-ECD-treated mice had levels below the normal range after immunization, and 7 of these also had TBII/TBAb activities. At the end of the experiment, only 4 of the MBP-ECD-treated female mice survived, but all of them had a severe lymphocytic infiltration of their thyroid, composed mostly of activated T-cells, although B-cells and macrophages were also present. A similar infiltrate was seen in 4 of 8 male MBP-ECD-treated mice. No infiltrate was observed in male or female MBP-treated mice. The model described demonstrates the feasibility of using the TSHR as an immunogen to overcome tolerance and mimics some characteristics of human autoimmune disease of the thyroid.

Animals↗