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W Northemann

Publications and source records attributed to W Northemann.

At least 19 recordsLinked to original sources

Epitope mapping of a recombinant human TSH receptor extracellular domain: identification of a predominant epitope using animal sera.

The extracellular domain of the TSH receptor (TSHR-561, amino acids #78-389) was expressed as a hexa-histidine fusion protein in bacteria. The recombinant protein was purified to homogeneity and used to immunize porcine and ovine species. High titre antibodies were obtained from both species that recognized the recombinant protein in Western blot analysis but failed to interfere with the TSH radio receptor assay. An epitope library was constructed and screened with affinity purified ovine and porcine antisera and detected a number of positive clones. Sequence analysis revealed that all of the epitopes contained sequences derived from the carboxyl terminus of the recombinant immunogen. One clone defined an epitope covering 16 amino acids from the carboxyl terminus and was the common epitope found in all of the other clones. Western blot screening of a large panel of Graves' sera with recombinant TSH receptor protein identified one patient sera that also recognized linear epitopes in the TSHR-561 protein. Experimentation demonstrated that the linear epitope recognized by this human sera was identical to the sequence recognised by the animal antisera. This sequence is unique to the TSH receptor and will be useful in further studies to analyze the TSH receptor protein.

Amino Acid Sequence↗

Vector-derived expression of recombinant rat interleukin-6.

Rat interleukin-6 (IL-6) cDNA, coding for an important inflammation- and immune-regulatory polypeptide cytokine, was cloned into the novel expression vector pH6EX3 which directs the synthesis of inserted genes as a fusion protein with histidine hexapeptide (HH). The resultant vector (pRIL6.992) was shown to produce significant amounts of recombinant rat IL-6 fusion protein with HH at its N-terminus in various strains of Escherichia coli. The expression of the HH-IL-6 fusion protein was demonstrated to be under the control of the tac promoter and could be induced by IPTG. This protein was isolated from bacterial inclusion bodies and purified to homogeneity in a one-step procedure by affinity chromatography using a nickel-chelating column. The HH-IL-6 fusion protein isolated in this manner was biologically active as determined by hepatocyte stimulation and B9 hybridoma growth assays. Further, this activity was neutralized with a polyclonal antiserum raised against rat IL-6 protein generated in a novel fashion from rabbits infected with a recombinant human type-5 adenovirus vector expressing rat IL-6 protein (Ad5E3rIL6). The recombinant HH-IL-6 protein was then used to boost Ad5E3rIL6-immunized rabbits. This resulting antiserum was shown to neutralize recombinant and natural rat and murine IL-6 bioactivity in vitro and was useful in Western blot analysis and immunohistochemistry of rat IL-6.

Adenoviruses, Human↗

Murine monoclonal glutamic acid decarboxylase (GAD)65 antibodies recognize autoimmune-associated GAD epitope regions targeted in patients with type 1 diabetes mellitus and stiff-man syndrome.

To study the immune response to glutamic acid decarboxylase (GAD) in insulin-dependent diabetes mellitus, monoclonal GAD antibodies after fusion of splenocytes from a nondiabetes-susceptible BALB/c mouse immunized with human recombinant GAD65 were generated. Of the 44 monoclonals, 35 are specific for the GAD65 isoform, whereas 9 also react with GAD67. Some 37 monoclonals, including all GAD65/67 reactive antibodies, react with GAD by Western blot analysis. The remaining 7 GAD65 monoclonals bind GAD only in an immunoprecipitation assay, which implies that they target epitopes dependent on the conformation of the GAD molecule. The 125I-GAD binding of the GAD65 monoclonals reactive on Western blotting was significantly diminished by all 3 sera from Stiff-man syndrome patients but only by 3/30 (10%) sera from type 1 diabetic patients. In contrast, the 7 monoclonal antibodies reactive with a conformation-dependent GAD epitope were competitive with 83% of GAD-autoantibody-positive sera from these diabetic patients. Using chimeric GAD65/67 proteins, the epitope region targeted by these monoclonals was mapped to the middle of GAD65 (amino acids 221-442). This central conformation-dependent GAD region was also targeted by sera from patients with type 1 diabetes. In conclusion, our data show that even after common immunization of a nondiabetes-susceptible mouse strain, monoclonal were obtained which preferentially react with the GAD65 linear amino-terminus (amino acids 4-17) and a conformation-dependent region located in the middle of GAD targeted by autoantibodies, indicating that this GAD region is not restricted to the autoimmune response associated with the Stiff-man syndrome and the beta-cell destruction in type 1 diabetes mellitus.

Animals↗

Mapping of an autoreactive epitope within glutamate decarboxylase using a diabetes-associated human monoclonal autoantibody and an epitope cDNA library.

Glutamate decarboxylase (GAD65) is a major autoantigen in insulin-dependent diabetes (IDDM) and the neurological disorder Stiff-Man-Syndrome (SMS). We derived a human monoclonal autoantibody (MICA 2) from peripheral blood of a patient newly diagnosed with IDDM, which reacted with GAD65 in Western blots. This indicated that a linear epitope is recognized by MICA 2. Using an epitope cDNA library we mapped the MICA 2 epitope to a contiguous stretch of 26 amino acids (506-531) in the C-terminus of GAD65. Neither blocking experiments with synthetic peptides nor analysis of overlapping decapeptides expressed as fusion proteins allowed us to further narrow down the epitope to the typical size of linear epitopes of 6-8 amino acids. We suggest that a miniconformational epitope provided by amino acids 506-531 is recognized by MICA 2, which withstands SDS gel electrophoresis without destruction or partially refolds during the Western blot procedure. A sequence homology with human heat shock protein 60 (HSP60) maps to this region of GAD65 but no cross-reactivity of MICA 2 with HSP60 occurred. Our data demonstrate that reactivity of an antibody in Western blots does not necessarily define a classic linear epitope of 6-8 amino acids and describe a new autoreactive epitope in GAD65 different from those reported for sera from patients with SMS.

Amino Acid Sequence↗

Identification of an inhibitory element within the human 68-kDa (U1) ribonucleoprotein antigen.

Various nuclear proteins are the major targets of autoimmune responses in various rheumatic disorders. In particular, autoantibodies directed against a 68-kDa protein associated with the (U1) RNA-containing small nuclear ribonucleoprotein complexes typically occur in sera of patients with mixed connective tissue disease and related rheumatic disorders, such as systemic lupus erythematosus, and therefore are very useful as a serological marker. For establishing powerful immunoassays, it was necessary to generate recombinant human P68 antigen as the antigenic target. In this study we demonstrated that the cDNA coding for the full-length human P68 antigen could not be expressed by a traditional bacterial vector system due to a putative inhibitory sequence designated as inhibitory sequence X which is located between the autoreactive domains C' and D' of the human P68 antigen. The construction of corresponding hybrid plasmids carrying two functional and independent gene blocks indicated the trans-active function of the inhibitory sequence X, which could be localized by expression studies of various deletion constructs. Comparable Northern blot analysis clearly demonstrated that the inhibitory sequence X could act on the translation of the P68 mRNA. After excision of the inhibitory sequence X a dramatic increase in the production of recombinant human P68 antigen was observed.

Amino Acid Sequence↗

Autoreactive epitopes within the human alpha-enolase and their recognition by sera from patients with endometriosis.

Patients with endometriosis significantly develop autoantibodies directed against endometrial proteins, which may be involved in the aetiology of this gynaecological disease. Based on standard Western blot analysis, a 48 kDa protein was localized in the soluble protein extract of endometrial adenocarcinoma cells using sera from patients with clinically staged endometriosis and identified as the glycolytic enzyme alpha-enolase. The corresponding cDNA coding for the human alpha-enolase was isolated from a human endometrial cDNA library and cloned into the vector pH6EX3, allowing the efficient expression of recombinant human alpha-enolase with an N-terminal histidine-hexapeptide as affinity ligand in Escherichia coli. The purified recombinant human alpha-enolase was evaluated as a specific antigenic tool for the diagnostic measurement of antiendometrial antibodies in sera from patients with endometriosis. With selected endometriosis sera, two linear autoreactive epitopes were localized within the recombinant human alpha-enolase using epitope mapping techniques, and they were characterized.

Adenocarcinoma↗

T cell lines recognizing the 70-kD protein of U1 small nuclear ribonucleoprotein (U1snRNP).

In sera of patients with mixed connective tissue disease (MCTD) high titres of IgG autoantibodies to U1snRNP-specific proteins (70 kD, A, C) are found, suggesting an antigen-driven and T-cell-dependent process. In order to establish U1snRNP-specific T cell lines we cultured under various culture conditions mononuclear cells from MCTD patients and healthy donors with a highly purified UsnRNP preparation from HeLa cells. Nine T cell lines were established by limiting dilution cloning from two MCTD patients and five T cell lines from a healthy individual. All T cell lines expressed the TCR alpha beta/CD3 complex. Surprisingly, most of the T cells lines exhibited the CD8 phenotype. Irrespective of this phenotype, all T cell lines showed a proliferative response to an N-terminal part (aa 51-195) of recombinant U1-specific 70-kD protein. One CD8+ T cell clone exhibited cytotoxic activity against an autologous B cell line pulsed with snRNP or recombinant fragments (aa 51-95 and aa 51-88). Interestingly, two T cell lines proliferated in response to four recombinant polypeptides representing different parts of the U1snRNP 70-kD protein. Since regions of sequence homology are distributed over the 70-kD molecule, it is suggested that conserved motifs may be recognized by the T cell lines.

Adult↗

Mapping of antigenic epitopes within the recombinant human preproinsulin related to insulin-dependent diabetes mellitus.

The human insulin domains, signal peptide, B-chain, C-peptide, and A-chain, were highly expressed in Escherichia coli as recombinant proteins N-terminally fused to glutathione-S-transferase and a histidine-hexapeptide. The recombinant proteins were purified from insoluble cell fraction by affinity chromatography using metal chelating matrix, which was charged with Ni+2 ions. ELISA screening for autoantibodies directed to preproinsulin were performed with sera from patients with recently diagnosed insulin-dependent diabetes mellitus in order to localize the antigenic epitopes within the human preproinsulin. Of the patients, 14% had developed autoantibodies that recognized either the recombinant C-peptide or the signal peptide. No reaction was observed with the A-chain or B-chain.

Autoantibodies↗

Eukaryotic expression of recombinant human centromere autoantigen and its use in a novel ELISA for diagnosis of CREST syndrome.

The cDNA coding for the human full-length centromere protein B (CENP-B) was isolated from a liver cDNA library by oligonucleotide screening and extended at the 5' and 3' ends by linker addition. The cDNA was inserted into a modified baculovirus transfer vector which mediated high-level expression of recombinant human CENP-B with a histidine-hexapeptide as affinity ligand at its N-terminus in infected Spodoptera frugiperda (Sf9) insect cells. Based on the histidine-hexapeptide moiety, the recombinant CENP-B was purified to homogeneity by single-step affinity chromatography using metal chelating matrix. An ELISA established with the eukaryotically expressed and purified recombinant human full-length CENP-B demonstrated its excellent specificity, sensitivity and reproducibility for the measurement of autoantibodies directed to the human CENP-B (ACA-B) representing a diagnostic marker for CREST syndrome, an autoimmune rheumatic disease. In this study, all pathological sera from patients (n = 80) with serologically and clinically diagnosed CREST were positively assayed for ACA-B, whereas 399 sera obtained from blood donors and 82 out of 84 sera from patients with autoimmune rheumatic disorders which were unrelated to CREST were negative in the ELISA.

Animals↗

GAD65 is recognized by T-cells, but not by antibodies from NOD-mice.

Since the 64kDa-protein glutamic acid decarboxylase (GAD) is one of the major autoantigens in T-cell mediated Type 1 diabetes, its relevance as a T-cell antigen needs to be clarified. After isolation of splenic T-cells from non-obese diabetic (NOD) mice, a useful model for human Type 1 diabetes, we found that these T-cells proliferate spontaneously when incubated with human GAD65, but only marginally after incubation with GAD67, both recombinated in the baculovirus system. No effect was observed with non-diabetic NOD mice or with T-cells from H-2 identical NON-NOD-H-2g7 control mice. It has been published previously that NOD mice develop autoantibodies against a 64kDa protein detected with mouse beta cells. In immunoprecipitation experiments with sera from the same NOD mice and 35S-methionine-labelled GAD, no autoantibody binding could be detected. We conclude firstly that GAD65 is an important T-cell antigen which is relevant early in the development of Type 1 diabetes and secondly that there is an antigenic epitope in the human GAD65 molecule recognized by NOD T-cells, but not by NOD autoantibodies precipitating conformational epitopes. Our results therefore provide further evidence that GAD65 is a T-cell antigen in NOD mice, being possibly also involved in very early processes leading to the development of human Type 1 diabetes.

Animals↗

Association between antibodies to the MR 67,000 isoform of glutamate decarboxylase (GAD) and type 1 (insulin-dependent) diabetes mellitus with coexisting autoimmune polyendocrine syndrome type II.

By using an immunoprecipitation assay, we analysed reactivity of autoantibodies to human recombinant GAD65 and GAD67 in sera from patients with autoimmune polyendocrine syndrome Type II (APS II) with and without Type 1 (insulin-dependent) diabetes mellitus (IDDM) compared to patients with organ-specific autoimmunity. Overall antibodies to GAD65 were correlated with IDDM in all study groups, whereas GAD67 antibodies were associated with IDDM when APS II coexists. Antibodies to GAD65 and GAD67 were detected in 13 (44.8%) and 7 (24.1%) out of 29 APS II patients with IDDM, but in only 4 (13.8%) and 2 (6.9%) out of 29 APS II patients without IDDM, respectively (p < 0.05). In short-standing IDDM (< 1 year), antibodies to GAD67 were significantly more frequent in patients with APS II (5 of 9 [55.6%] subjects) compared to matched diabetic patients without coexisting polyendocrinopathy (1 of 18 [5.6%] subjects) (p < 0.02). The levels of GAD65 (142 +/- 90 AU) and GAD67 antibodies (178 +/- 95 AU) were significantly higher in patients with polyglandular disease than in patients with isolated IDDM (91 +/- 85 AU and 93 +/- 57 AU) (p < 0.02). Interestingly, all 11 GAD67 antibody positive subjects also had GAD65 antibodies (p < 0.0001), and in 10 of 11 anti-GAD67 positive sera the GAD67 antibodies could be blocked by either GAD67 or GAD65, suggesting the presence of cross-reactive autoantibodies. No correlation was observed between GAD antibodies and age, sex or any particular associated autoimmune disease, besides IDDM.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Monoclonal antibodies specific to the glutamic acid decarboxylase 65 kDa isoform derived from a non-obese diabetic (NOD) mouse.

Two monoclonal antibodies specifically recognizing the 65 kDa isoform of the enzyme glutamic acid decarboxylase (GAD) were generated by fusion of spleen cells of a non-obese diabetic (NOD) mouse which had received a single intraperitoneal injection of 0.2 ml complete Freund's adjuvant followed three days later by one administration of a subdiabetogenic dose of streptozotocin (80 mg/kg body weight) three days before the fusion experiment was performed. Both monoclonals belong to the IgG1 isotype and were screened with an enzyme-linked immunosorbent assay using rat brain extract as a natural source of GAD and additionally with a capture assay by means of immunoglobulins of a patient with Stiff-man syndrome. The specific binding to the 65 kDa isoform of the enzyme was detected by a radioligand and an enzyme-linked immunosorbent assay using recombinant human glutamic acid decarboxylase specific for both the 67 and 65 kDa isoforms. Both monoclonal antibodies recognize the same antigenic epitope, which is located in the N-terminal region of the first 17 amino acids detected by fragments of human pancreatic 65 kDa GAD. Three out of 30 sera from Type 1 diabetic patients specifically displaced the binding of the monoclonals from 125I-labelled GAD65 measured by radio-immunoassay. A striking binding of both monoclonals M61/8F9 and M61/7E11 to the islets of cryosections of human, monkey, pig and rat pancreas but not to mouse pancreas was detectable. The antibodies failed to bind on the cell surface of viable rat islet cells. It is concluded that also in the diabetes-prone NOD mice GAD65 autoantibodies occur although GAD65 was not detectable in the mouse islets.

Animals↗

Recombinant human preproinsulin. Expression, purification and reaction with insulin autoantibodies in sera from patients with insulin-dependent diabetes mellitus.

A novel prokaryotic expression vector pGEX-6T was designed for high-level expression of recombinant fusion protein with a histidine-hexapeptide and glutathione-S-transferase at its N-terminus and the recombinant human preproinsulin at its C-terminus. Efficiency of expression was investigated in the Escherichia coli strain CAG456. The synthesized protein was sequestered in an insoluble form in inclusion bodies and was purified to homogeneity by one-step affinity chromatography based on the specific complex formation of the histidine-hexapeptide and a chelating matrix which was charged with Ni2+ ions. The antigenic nature of the purified recombinant preproinsulin fusion protein was evaluated by ELISA screening for insulin autoantibodies in selected sera from patients with recent-onset type 1 (insulin-dependent) diabetes mellitus classified by the existence of additional autoantibodies reactive against glutamic acid decarboxylase. 14% of the tested sera (n = 43) contained insulin autoantibodies which strongly recognized the recombinant human preproinsulin. Comparable measurements with both recombinant human preproinsulin and mature insulin suggested that the observed autoantigenicity of preproinsulin was mediated by the C-peptide or/and signal peptide.

Amino Acid Sequence↗

Characterization of a linear epitope within the human pancreatic 64-kDa glutamic acid decarboxylase and its autoimmune recognition by sera from insulin-dependent diabetes mellitus patients.

A 2.0-kb cDNA coding for the full-length 64-kDa human glutamic acid decarboxylase (GAD64) was isolated from a pancreatic carcinoma cDNA library by oligonucleotide screening, polymerase-chain-reaction amplification and subsequently characterized by sequence analysis. Five overlapping fragments of GAD64 cDNA were constructed into the vector pH6EX3, allowing the highly efficient expression of corresponding fusion proteins with a histidine hexapeptide as an affinity ligand at their N-termini in Escherichia coli. The recombinant GAD64 fragments were analysed by Western blotting using sera from patients with early onset of insulin-dependent diabetes mellitus (IDDM). We found that at least 20% of the patients with an onset of IDDM have developed autoantibodies which can specifically recognize a linear antigenic epitope within the GAD64. With a selected IDDM serum, an antigenic epitope was localized in a region of 31 amino acids located at the C-terminus of GAD64, using epitope mapping techniques, and it was characterized. The possibility of using recombinant GAD64 for the development of an immunoassay for a predictive diagnosis of IDDM is discussed.

Amino Acid Sequence↗

Human thyroid peroxidase: autoantibody recognition depends on the natural conformation.

Thyroid peroxidase (TPO) purified from human thyroid glands was used to study the correlation relation between natural conformation and its ability for binding of autoantibodies in sera from patients with autoimmune lymphocytic thyroiditis (Hashimoto's thyroiditis). Treatment with heat (60 degrees C), urea, sodium dodecylsulfate (SDS), and dithiothreitol (DTT) decreased the autoantigenicity of TPO on average by 73.3%, 74.1%, 86.3%, and 91.8% measured by enzyme-linked immunosorbent assay (ELISA), respectively. These data demonstrate, that the binding of the majority of autoantibodies to human TPO depends on its natural conformation and modification.

Autoantibodies↗

Baculovirus-mediated expression of human 65 kDa and 67 kDa glutamic acid decarboxylases in SF9 insect cells and their relevance in diagnosis of insulin-dependent diabetes mellitus.

cDNAs coding for the full-length human 65 and 67 kDa glutamic acid decarboxylases (GAD65 and GAD67) were amplified from pancreas and hippocampus cDNA libraries by polymerase chain reaction, respectively. Both cDNAs were inserted into a baculovirus vector which mediated highly efficient expression of the human GAD65 and GAD67 with histidine-hexapeptides as affinity ligands at their C-termini in Spodoptera frugiperda (Sf9) cells. The recombinant GAD proteins were purified to homogeneity by affinity chromatography using a metal-chelating matrix. The infected Sf9 insect cells expressed the recombinant human GAD65 and GAD67 with natural-like conformations, as confirmed by measurement of their enzyme activities as well as their fully restored autoantigenicities. Immunoprecipitation of metabolically labeled infected Sf9 cells demonstrated the autoantigenic potential of the recombinant GAD proteins. The practicability of using recombinant GAD65 and GAD67 derived from the baculovirus expression system for the development of an immunoassay for the diagnosis of insulin-dependent diabetes mellitus is discussed.

Animals↗

Prevalence of autoantibodies to the 65- and 67-kD isoforms of glutamate decarboxylase in insulin-dependent diabetes mellitus.

We investigated the presence of autoantibodies to baculovirus-expressed human recombinant 65- and 67-kD isoforms of glutamate decarboxylase (GAD65 and GAD67) in insulin-dependent diabetes mellitus (IDDM). In the immunoprecipitation test using [35S]methionine-labeled GADs antibodies to GAD65 were detected in 13/15 (87%) islet cell antibody (ICA)-positive and in 1/35 (2.9%) ICA-negative first-degree relatives of patients with IDDM, in 6/11 (54.5%) ICA-positive nondiabetic schoolchildren, and in 35/50 (70%) patients with newly diagnosed IDDM. GAD67 antibodies were positive only in five (33%) of the ICA-positive relatives (P < 0.05) and in nine (18%) IDDM patients at onset (P < 0.00001). After onset of IDDM antibodies to GAD65 and GAD67 declined but were still positive in 25 and 9.4% of subjects with long-standing IDDM (> 10 yr). In all study groups antibodies to GAD67 were only detected in GAD65 antibody-positive sera. An immunotrapping enzyme activity assay for GAD65 antibodies was positive in 64/75 (85.3%) of sera that were GAD antibody positive in the immunoprecipitation test (r = 0.870, P < 0.0001). In two (2.7%) sera GAD65 antibodies that block GAD enzyme activity were found. Our data suggest that antibodies to GAD65 but not to GAD67 represent sensitive markers for preclinical and overt IDDM. The immunotrapping assay here described represents a valuable technique for specific and sensitive screening for GAD antibodies.

Antibody Specificity↗

Serum unmasks the binding of thyroid-stimulating hormone to endogenous and transfected receptors: evidence for a soluble form of the receptor in human thyroid.

A specific homologous radioligand receptor assay for thyroid-stimulating hormone (TSH) using bovine thyroid membranes was adapted for use with human thyroid. Specific 125I-labelled TSH binding was detected in the 3000 g membrane pellet from bovine thyroid but predominantly in the 3000 g supernatant of the human thyroid homogenate. Both assays required incubation in the presence of 10% serum, whilst the assay using human thyroid could only be precipitated using polyethylene glycol (PEG). The serum requirement transcended a possible role as carrier protein and unmasked specific TSH binding. Molecular sieving determined that the active fraction of the serum had an apparent size of 30,000-100,000. The requirement for PEG-assisted precipitation of the TSH receptor assay was a consequence of the TSH-binding entity from Graves' thyroid behaving like a soluble 'receptor': it did not sediment with the membranes, passed a 0.2 microns filter and, upon molecular sieving, had an apparent size of 300,000-1,000,000. A full-length TSH receptor cDNA was cloned from a human Graves' thyroid library and stably transfected cell lines expressing the TSH-receptor protein were constructed using human HeLa and murine 3T3 cells. Specific TSH binding was unmasked by serum in the human cell lines, as observed for the human thyroid TSH receptor, whereas serum hindered TSH binding in the murine cell lines. A soluble form of the receptor was not released from the cells and was not produced in conditions which demonstrated a soluble receptor-like binding component in human thyroid tissue.

Animals↗