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M Ludgate

Publications and source records attributed to M Ludgate.

At least 37 records · Page 2Linked to original sources

Unlike thyrotropin, thyroid-stimulating antibodies do not activate phospholipase C in human thyroid slices.

The effects of thyroid-stimulating antibodies (TSAb) and of thyrotropin (TSH) were compared, on the generation of cyclic AMP and inositol phosphates (InsP), in human thyroid slices incubated in vitro, and on the Rapoport cyclic AMP bioassay. The TSAb positive sera were obtained from 19 patients with Graves' disease. In 14 experiments with the slices system, TSH significantly increased cyclic AMP accumulation (TSH, 0.03-10 mU/ml) as well as the cyclic AMP-independent inositol trisphosphate (InsP3) generation (TSH, 1-10 mU/ml). In the same 14 experiments, TSAb (0.10-28 mg/ml) enhanced cyclic AMP intracellular levels as expected while they did not induce any InsP accumulation. Even when TSAb increased cyclic AMP levels to the same or higher values as those obtained with TSH concentrations allowing InsP3 generation. TSAb were still unable to activate the phosphatidylinositol-Ca2+ cascade. The patterns of the response curves of TSAb and TSH on cyclic AMP accumulation were different, suggesting that different mechanisms may be involved. In addition, unlike TSH, TSAb were not able to stimulate H2O2 generation, which in human tissue mainly depends on the activation of the phosphatidylinositol-Ca2+ cascade. Immunoglobulins from six additional Graves' patients lacking measurable cyclic AMP-stimulating activity in both slices and cells systems did not activate phospholipase C either. In conclusion, our results show that TSAb do not share all the metabolic actions of TSH on human thyroid tissue. The data provide support for the concept that the pathogenesis of Graves' disease can be fully accounted for by the ability of TSAb to stimulate adenylate cyclase. This work also confirms that TSH activates the cyclic AMP and the phosphatidylinositol cascade by independent pathways in the human thyroid.

Adolescent

Demonstration of the existence of the alternatively spliced form of thyroid peroxidase in normal thyroid.

We have investigated whether the alternatively spliced form of thyroid peroxidase (TPO), which has been shown clearly to occur in Graves' thyroid, is present in normal thyroid. We have performed a polymerase chain reaction on cDNAs prepared from normal thyroid mRNAs using primers 100 bases up-stream and down-stream from the 171 nucleotides that have been shown to be spliced out. Size analysis of the polymerase chain reaction products by agarose gel electrophoresis revealed bands at 0.2 and 0.37 kilobases (kb), sizes predicted to be obtained when the two forms of TPO cDNA are present. This was confirmed by hybridization with a 32P-labeled probe corresponding to the 20 nucleotides of the junction site. After stringent washing, the 0.2-kb band gave a clear positive signal, which was stronger than that of the 0.37-kb band despite the latter cDNA being more abundant. This demonstrates clearly that the alternatively spliced form of TPO exists in normal thyroid. Its significance is discussed.

Base Sequence

Cloning and sequencing of a novel 64-kDa autoantigen recognized by patients with autoimmune thyroid disease.

Screening 10(6) plaque-forming units from a lambda gt11 human thyroid cDNA library with a pool of 10 sera from patients with Hashimoto's thyroiditis resulted in the isolation of a clone, D1, of 292 basepairs with an open reading frame of 97 amino acids which did not share significant similarity with any known protein. Rescreening the library using D1 as a probe led to the full-length cDNA being cloned and sequenced which has the potential to encode a 572-amino acid polypeptide. This would correspond to a 63-kDa nonglycosylated protein which is probably membrane bound. The recombinant fusion protein from the original D1 clone was recognized in dot blot or Western blot assays by 4 of 19 patients with Hashimoto's thyroiditis, 3 of 9 patients with Graves' disease, and 1 of 6 patients with idiopathic myxedema; all other sera (12), including that from normal subjects, were negative. Clone affinity-purified autoantibodies bound to a protein of 64 kDa in a Western blot of human thyroid tissue. Using D1 as a probe in a Northern blot revealed 3.9-kilobase (kb) transcripts in poly(A)+ RNA from normal human thyroid and extraocular muscle, but not skeletal muscle. The dog equivalent of D1 cDNA was isolated by screening 10(6) plaque-forming units from a dog thyroid cDNA library using clone D1. A fragment of dog cDNA was, in turn, used as a probe in a Northern blot of dog poly(A)+ RNAs from thyroid, brain, lung, heart, liver, kidney, spleen, and stomach; a faint signal at 3.9 kb was observed in all tissues except the thyroid, which displayed a strong transcript of 2.6 kb. It is concluded that the D1 cDNA clone encodes an autoantigen shared by the thyroid and eye muscle. Its possible relevance to autoimmune ophthalmopathy is discussed.

Animals

Thyroperoxidase, but not the thyrotropin receptor, contains sequential epitopes recognized by autoantibodies in recombinant peptides expressed in the pUEX vector.

The sequential epitopes on the human thyroperoxidase (TPO) recognized by antibodies in the sera of patients with autoimmune thyroid disease were investigated using a recombinant DNA technique. Previous studies led to the isolation of two overlapping cDNA clones that encode polypeptides of TPO (85 residues, C2; 100 residues, C21) recognized by sera from several patients with autoimmune disease that contained antimicrosomal autoantibodies. In this report the vector pUEX1 was used to clone and express small random fragments of TPO cDNA in Escherichia coli as a beta-galactosidase fusion protein. Colonies were screened with a serum from a patient with Hashimoto's thyroiditis, and immunoreactive peptides were identified by sequencing the corresponding DNA inserts. Two linear epitopes of human TPO (amino acids 590-622 and 710-722) were recognized by the autoantibodies. This confirmed our previous results and provide a more precise localization of the antigenic determinants involved. The same approach has been applied in an attempt to identify the binding site(s) for autoantibodies on the human TSH receptor. In contrast to the data obtained with TPO, sera from patients with blocking (from idiopathic myxoedema) or stimulating (from Graves' disease) activity did not recognize the linear TSH receptor peptide fragments generated in our libraries.

Amino Acid Sequence

Use of the recombinant human thyrotropin receptor (TSH-R) expressed in mammalian cell lines to assay TSH-R autoantibodies.

We report on two assays for autoantibodies to the TSH-R which have been developed using materials from mammalian cells transfected with the cDNA for the human TSH-R. In the first, a particulate fraction has been prepared from COS cells, transiently expressing the human TSH-R and used in a radioreceptor assay in conjunction with bovine 125I-TSH. Immunoglobulins (IgGs) from patients with Graves' disease (n = 11) and idiopathic myxoedema (n = 2) have been used as competitors of 125I-TSH binding to the COS TSH-R membranes and the results have been compared with those obtained with a commercially available kit for measuring TSH-R autoantibodies, which uses solubilised porcine TSH-R. Both assays showed similar performance, being particularly sensitive to antibodies from patients with idiopathic myxoedema. In the second assay system we have used a CHO cloned cell line (JP26) stably transfected with the human TSH-R. A selection of IgG preparations from patients with Graves' disease and of six normal controls was used to test the ability of this cell line to detect thyroid stimulating immunoglobulins (TSAb) by increasing its cAMP production. The assay was performed under two conditions: in standard (isotonic) medium or in hypotonic medium. Freshly thawed human thyrocytes incubated in hypotonic medium served as a reference method. Only five patients scored positive when tested in the JP26 cell line under isotonic conditions. When the assay was performed in a hypotonic medium, a significant positive correlation was observed between the results given by JP26 cells and human thyrocytes.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Stable expression of the human TSH receptor in CHO cells and characterization of differentially expressing clones.

The human thyrotropin receptor cDNA was transfected in CHO cells and individual clones were isolated. They were tested for their response to thyrotropin, forskolin and antibodies from a patient with high levels of thyroid stimulating antibodies. Several clones were characterized extensively with respect to membrane binding of labeled thyrotropin, cAMP accumulation in response to thyrotropin and kinetics of cAMP production. Data for three representative clones are presented. Receptor number as assessed by membrane binding of labeled thyrotropin, and cAMP production, measured in a thyrotropin response bioassay, are correlated. The Kd value for the human thyrotropin receptor expressed in CHO was estimated to be 50 pM.

Animals

Studies with recombinant autoepitopes of thyroid peroxidase: evidence suggesting an epitope shared between the thyroid and the gastric parietal cell.

In a previous work we characterized a major epitope of thyroid peroxidase (TPO), which was recognised by 66% of 157 patients with autoimmune thyroid disease (AITD) and 9 out of 50 patients with non-thyroidal autoimmune disease (NTAID) 6 of whom had antibodies to the gastric parietal cell antigen (PCA). In the present study we have affinity purified C2 antibodies and demonstrated that they bind to the native TPO enzyme in a radioimmunoassay (RIA). We have measured antibodies to the C2 peptide and a second TPO peptide, C21, in enzyme-linked immunosorbent assays (ELISA) in 30 patients with NTAID all of whom have antibodies to the gastric PCA, having first determined the incidence of antibodies to C21 in 98 patients with AITD who do not have antibodies to the gastric PCA. 58% of patients with AITD have antibodies to C21, a peptide of TPO which overlaps C2 by 21 amino acids in the region containing an 11 residue fragment which is very similar to a fragment of the H+ K+ ATPase, which has recently been shown to be a major component of the gastric PCA. In patients having NTAID and antibodies to the gastric PCA, 60% are positive for C2 Ab and 100% for C21 Ab, which is suggestive of an epitope shared by TPO and H+ K+ ATPase, corresponding to TPO 659----669 and H+ K+ ATPase 177----187. We conclude that C2 antibodies are heterogenous and comprise activities which bind to the intact enzyme and activities binding to an epitope which may be common to TPO and H+ K+ ATPase.

Amino Acid Sequence

Cloning, sequencing and expression of the human thyrotropin (TSH) receptor: evidence for binding of autoantibodies.

A human thyroid cDNA library was screened by hybridization with a dog thyrotropin receptor (TSHr) cDNA. Sequencing of the resulting clones identified a 2292 residue open reading frame encoding a 744 amino acid mature polypeptide presenting 90.3% similarity with the dog TSHr. Two major transcripts (4.6 and 4.4 kilobases) were identified in the human thyroid which suggests that alternative splicing could generate multiple forms of human TSHr. Transfection of the coding sequence in COS-7 cells conferred to a membrane preparation of these cells the ability to bind specifically TSH. TSH binding was completely displaced by immunoglobulin preparations from patients with idiopathic myxoedema.

Amino Acid Sequence

Antibodies to human thyroid peroxidase in autoimmune thyroid disease: studies with a cloned recombinant complementary deoxyribonucleic acid epitope.

Previous studies carried out by screening a lambda gt11 human thyroid cDNA library with serum samples from selected patients with Hashimoto's thyroiditis and a polyclonal antibody to porcine thyroid peroxidase (TPO) confirmed, at the molecular level, that TPO is a major component of the thyroid microsomal antigen (M). That investigation led to the isolation of a clone (C2) which encodes an 85-amino acid segment of TPO and harbors a major epitope recognized by serum from several patients with autoimmune thyroid disease that contained anti-M autoantibodies (MAb). In this study, C2 antigen that was produced as a beta-galactosidase fusion protein was used to establish an enzyme-linked immunoabsorbent assay for the detection of anti-C2 autoantibodies (C2Ab). C2Ab then were assayed in 191 patients with different autoimmune and nonautoimmune thyroid disorders, and 50 patients with nonthyroidal autoimmune diseases. The results were compared with the titers of anti-TPO antibodies (TPOAb; as detected by monoclonal antibody-assisted RIA) and MAb (as detected by passive hemagglutination). Positive C2Ab was found in the serum of 85 of 136 (63%) patients whose serum contained TPOAb and/or MAb. A significant positive correlation was found between the levels of C2Ab and those of TPOAb (r = 0.76; P less than 0.001) or MAb (r = 0.69; P less than 0.001), which was independent of the type of underlying autoimmune thyroid disorder. Low levels of C2Ab also were found in 10 of 105 (9%) serum samples that did not contain TPOAb. Western blot analysis carried out on the latter samples showed that in 2 samples the apparent C2Ab reactivity was due to the presence of antibodies reacting with beta-galactosidase. In conclusion, we confirmed the validity of screening lambda gt11 cDNA human thyroid libraries to better characterize thyroid autoantigens and demonstrated the feasibility of using recombinant proteins to establish diagnostic assays for autoantibodies.

Antibodies

Towards an antigenic map of human thyroglobulin: identification of ten epitope-bearing sequences within the primary structure of thyroglobulin.

The aim of this study was to define, at the molecular level, epitopes of thyroglobulin recognized by heterologous antibodies and autoantisera. One hundred thousand clones from a lambda gt 11 human thyroid cDNA library were screened using a rabbit antibody to human thyroglobulin at a 1:2000 dilution. Twenty clones were plaque-purified to homogeneity, and characterization and sequencing of their cDNA inserts showed that they represented four distinct regions of the thyroglobulin molecule, one of them being the 22 carboxyl-terminal amino acids. Rescreening of the library with the same rabbit antibody to human thyroglobulin absorbed with peptides encoded by the carboxyl-terminal clone, led to the definition of six further epitope-bearing fragments of thyroglobulin. The ten regions that we have identified were recognized by ten further rabbit antibodies to human thyroglobulin, showing that they are representative of the repertoire of heterologous epitopes. In contrast, none of the ten heteroepitope-bearing fragments was recognized by sera from ten patients with autoimmune thyroid disease with various titres of thyroglobulin antibodies. Screening of 2 x 10(6) clones from the library using a pool of ten autoantisera (individual sera diluted to 1:1000), and of 1 x 10(6) clones using a single autoantiserum of very high antithyroglobulin titre (diluted 1:400) resulted in no thyroglobulin clones being isolated. The significance of these results to the immune process is discussed.

Amino Acid Sequence

Definition, at the molecular level, of a thyroglobulin-acetylcholinesterase shared epitope: study of its pathophysiological significance in patients with Graves' ophthalmopathy.

The nature of the putative autoantigen in Graves' ophthalmopathy (Go) remains an enigma but the sequence similarity between thyroglobulin (Tg) and acetylcholinesterase (ACHE) provides a rationale for epitopes which are common to the thyroid gland and the eye orbit. In an attempt to define the shared epitope, we have screened a lambda gt 11 human thyroid cDNA library using a polyclonal antibody to Torpedo ACHE and isolated two clones, which upon sequencing, were shown to contain Tg segments, corresponding to portions of the C terminal part of the molecule which has a high similarity with ACHE. Having demonstrated the existence of an epitope common to Tg and ACHE, the clones have been further tested and found to be positive in lysis plaque assays with 1/10 sera from patients with Hashimoto's thyroiditis (HT), 8/8 from patients with Graves' ophthalmopathy and 0/8 normal sera. We have investigated the physiological significance of this common epitope by in situ immunolocalization studies in which the polyclonal antibody to Torpedo ACHE (which was used for screening the library) and immunoglobulins (Igs) from 6 Go patients tested were shown to bind to end plate regions of human foetal muscle fibres which were concurrently shown to be rich in cholinesterase activity: Igs from 3 normal individuals and 2 patients with Hashimoto's thyroiditis did not bind. The results demonstrate and characterize an epitope which is common to Tg and ACHE and show that Go patients Igs contain antibodies which bind to muscle end plates rich in cholinesterase. The significance of these findings to the pathogenesis of Go is discussed.

Acetylcholinesterase

Thyroperoxidase, an auto-antigen with a mosaic structure made of nuclear and mitochondrial gene modules.

A lambda gt11 cDNA library was constructed from a normal human thyroid and screened with a rabbit anti-porcine thyroperoxidase antibody. A series of thyroperoxidase (TPO) clones were obtained which allowed determination of the complete primary structure of the protein. The library was also screened with serum from a patient with Hashimoto's thyroiditis, an autoimmune disease characterized by the presence in the serum of high titers of autoantibodies directed against the 'microsomal antigen' (McAg). Comparison of the cDNA sequences from TPO clones and McAg clones provides definite proof that the McAg is TPO. A short segment of TPO was characterized as bearing a major epitope involved in autoimmunity. The primary structure of TPO was 42% homologous to myeloperoxidase (MPO). It contains, in addition, a C-terminal extension with a membrane anchor region contiguous to two domains encoded by modules belonging to the EGF and C4b gene families. The existence in TPO of still another domain presenting a significant homology with a putative heme-binding region of cytochrome C oxidase polypeptide I raises the possibility that a mitochondrial gene module has contributed a piece to the evolution of a typical nuclear mosaic gene.

Amino Acid Sequence

Normal and defective expression of the thyroglobulin gene.

Molecular studies of the thyroglobulin (Tg) gene have progressed significantly in recent years. Cloning and sequencing the complete bovine Tg cDNA led to the knowledge of the primary structure of the Tg subunit. This large polypeptidic chain displays a repetitive structure, especially in its amino-terminal half, and bears a striking homology with the acetylcholinesterase molecule of Torpedo californica in its carboxy-terminal portion. The four specific domains known to be involved in the formation of the thyroid hormones have been assigned to both terminal parts of the polypeptide, a location which could play a role in the process leading to hormone release. The very large (greater than 250 kb) Tg gene has been localized on the long arm of chromosome 8 in man, in close linkage with the c-myc oncogene. The study of its structure allowed the characterization of the molecular defect responsible for a congenital flaw in Tg gene expression in a herd of South-African cattle. This work led to the unexpected finding that the Tg pre-mRNA undergoes alternative splicing in normal animals, too. A DNA segment involved in the transcriptional control of Tg gene expression by cAMP has been identified by transfecting primary cultured thyrocytes with recombinant genes.

Animals