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Biomedical subjects

T Dyrberg

Publications and source records attributed to T Dyrberg.

At least 55 records · Page 3Linked to original sources

Growth hormone action in rat insulinoma cells expressing truncated growth hormone receptors.

Transfection of the insulin-producing rat islet tumor cell line RIN-5AH with a full length cDNA of the rat hepatic growth hormone (GH) receptor (GH-R1-638) augments the GH-responsive insulin synthesis in these cells. Using this functional system we analyzed the effect of COOH-terminal truncation of the GH receptor. Two mutated cDNAs encoding truncated GH receptors, GH-R1-294 and GH-R1-454, respectively, were generated by site-directed mutagenesis and transfected into the RIN cells. Both receptor mutants were expressed on the cell surface and displayed normal GH binding affinity. Whereas GH-R1-638 had a molecular mass of about 110 kDa, GH-R1-294 and GH-R1-454 showed molecular masses of 49 and 80 kDa, respectively. Cells expressing GH-R1-454 internalized GH to a similar extent as cells transfected with the full length receptor and the parent cell line, but GH-R1-294-expressing cells showed a markedly reduced capability of GH internalization. In contrast to cells transfected with GH-R1-638, none of the cell lines expressing truncated GH receptors exhibited any increase of the GH-stimulated insulin production. We conclude that domains within the COOH-terminal half of the cytoplasmic part of the GH receptor are required for transduction of the signal for GH-stimulated insulin synthesis, whereas cytoplasmic domains proximal to the transmembrane region are involved in receptor-mediated GH internalization.

Animals↗

Interferon stimulates the expression of 2',5'-oligoadenylate synthetase and MHC class I antigens in insulin-producing cells.

The pathogenesis of type 1 diabetes involves autoimmune processes directed against the pancreatic beta-cells. The etiology is not known, but circumstantial evidence suggests a connection between virus infection and development of the disease. Therefore, because the interferon-(IFN) dependent 2',5'-oligoadenylate (2-5A) synthetase system constitutes an important part of the nonspecific immune defense against viral infections, the activity of the enzyme was examined in islets of Langerhans, RIN cells, and GH3 cells. First, the 2-5A synthetase was expressed constitutively in all cell types and, second, all cells were sensitive to stimulation with IFN-alpha. The 2-5A synthetase activity induced by 1,000 U/ml of IFN-alpha increased by 400% in pancreatic islets and by more than 1000% in GH3 and RIN cells. However, the IFN-alpha concentration needed to induce half-maximal 2-5A synthetase activity was nearly the same in the three cell types (i.e., ranging from 59 to 66 U/ml IFN-alpha). The 2-5A synthetase present in islets and RIN cells was highly sensitive to poly (I:C). In pancreatic islets and RIN cells, the 2-5A synthetase enzyme generated dimers and trimers of 2',5'-oligoadenylates. Furthermore, exposure of RIN cells to IFN-alpha showed an increase in MHC class I expression already at 5 U/ml and maximal expression at about 200 U/ml IFN-alpha. The examined endocrine cells express the 2-5A synthetase enzyme as well as MHC class I antigen constitutively, but also by stimulation with IFN in vitro.(ABSTRACT TRUNCATED AT 250 WORDS)

2',5'-Oligoadenylate Synthetase↗

A novel affinity purification method to isolate peptide specific antibodies.

Site-specific, high affinity polyclonal antisera are effectively and successfully produced by immunizing rabbits with synthetic peptides. The use of these antisera in subsequent immune analysis is often limited because of non-specific binding. We describe a new and simple method to effectively affinity-purify anti-peptide antibodies. To test our system, rabbits were immunized with model peptides representing sequences of the putative rabbit growth hormone receptor and several HLA-DQ beta-chain molecules. Polystyrene plastic beads were coated with peptides. Immune serum was incubated with the beads and after a wash step the bound antibodies were eluted in 1 M acetic acid. The eluted material was composed predominantly of intact immunoglobulin as evidenced by the presence of heavy and light chain bands in SDS-PAGE. The eluted antibodies were peptide specific in ELISA and bound only to intact, antigenic protein in immunoblot analyses. The sequence-specific nature of the eluted antibodies was confirmed since binding to the antigenic proteins could be displaced by the immunizing but not by unrelated peptides.

Animals↗

Immunological cross-reactivity between mimicking epitopes on a virus protein and a human autoantigen depends on a single amino acid residue.

Recently we identified a novel autoantigenic region in the alpha chain of the human acetylcholine receptor (HuAChR), residues 160-167 (P. L. Schwimmbeck, T. Dyrberg, D. B. Drachman, and M. B. A. Oldstone, J. Clin. Invest., in press). Antibodies to that sequence appeared in the sera of a subset of patients with myasthenia gravis (MG) and affinity-purified antibody was biologically active for an in vitro assay of the HuAChR. Sequence homology between the autoantigen and two separate regions of herpes simplex virus glycoprotein D (HSV-GpD) have been identified. These components are, respectively, the HuAChR, residues [160-167] (PESDQPDL), and residues [286-293] (PNATQPEL) and [381-388] (PEDDQPSS) of HSV-GpD. Antisera from rabbits immunized with synthetic peptides representing HSV-GpD [286-293] bound strongly to the AChR peptide. In contrast, antiserum to HSV-GpD [381-388] bound minimally, if at all, even though both virus peptides shared four amino acids with the receptor sequence. To investigate the molecular basis for the differential binding, we tested the reactivity of the HSV-GpD antisera to analogs of the [381-388] virus peptide containing single amino acid substitutions. The results demonstrated that the cross-reactivity between HuAChR [160-167] and HSV-GpD [286-293] predominantly depends on a single residue, the C-terminal leucine in HSV-GpD, position 293.

Amino Acid Sequence↗

Cytotoxic T lymphocytes do not control lymphocytic choriomeningitis virus infection of BB diabetes-prone rats.

BioBreeding Worcester diabetes-prone (BBdp) rats develop insulin-dependent autoimmune-driven diabetes mellitus spontaneously and intravenous administration of 1 x 10(7) p.f.u. of lymphocytic choriomeningitis virus (LCMV) to young adult mice prevents disease. The virus is lymphotropic, binding to and replicating in such cells. BBdp rats fail to generate virus-specific major histocompatibility complex-restricted cytotoxic T lymphocyte (CTL) responses when challenged with this dose or other doses of LCMV, Pichinde virus or vaccinia virus. Yet such rats clear virus effectively and show no evidence of persistent infection. Associated with this clearance of virus and establishment of immunity is the production of neutralizing antibodies. In contrast, diabetes-resistant (BBdr) rats generate virus-specific CTL responses. Furthermore LCMV binds to fewer lymphoid cells of BBdr rats (in comparison to those of BBdp rats) and replicates in fewer lymphocytes (by one order of magnitude) from these rats. Thus, unlike mice in which CTLs play a dominant role in the control of LCMV infection, BBdp rats do not overcome this infection via CTLs. In addition, both the BBdp rats and their BBdr counterpart may provide useful models for determining whether or how individual lymphocyte subsets function in the induction of CTL responses, for the analysis of virus-induced immunosuppression and for the use of viruses or their products as therapeutic modalities.

Animals↗

Characterization of the fine specificity of peptide antibodies to HLA-DQ beta-chain molecules.

In an attempt to produce epitope specific antisera which could distinguish two closely associated HLA-DQ beta-chain alleles, we immunized 20 rabbits with synthetic peptides representing sequences from the first domain of the HLA-DQw8 and -DQw7 beta-chain molecules, differing only by one amino acid in position 57. Several of the antisera in immunoblotting specifically recognized either the HLA-DQw7 or the HLA-DQw8 beta-chain allele as previously reported. The fine specificity of the antisera was tested in ELISA using synthetic peptides of varying length as solid phase antigen. Two out of the 20 antisera specifically recognized DQw7 beta peptides and two antisera bound only to DQw8 beta peptides from the region containing the amino acid in position 57. To analyze whether the antisera bound to native HLA-DQ beta-chain molecules, FACS analysis was carried out. Seven of the 20 antisera bound to intact EBV-transformed B-lymphocytes, and one antiserum bound preferentially to HLA-DQw8 positive cells.

Amino Acid Sequence↗

Production of peptide antisera specific for mouse and rat proinsulin C-peptide 2.

Mice and rats have two functional non-allelic insulin genes. By using a synthetic peptide representing a common sequence in mouse and rat C-peptide 2 as antigen, we have produced rabbit antisera specific for an epitope which is not present in mouse or rat C-peptide 1. Long-term immunization did not seem to increase the end point titre as tested in direct ELISA. The specificity of the antiserum was determined by competitive ELISA and histochemistry on pancreas sections. Only the synthetic C-peptide 2, but not the homologous synthetic C-peptide 1 from mouse and rat competed efficiently in ELISA for antibody binding to the immunizing antigen. Antisera to C-peptide 2, stained islet beta-cells on mouse and rat, but not monkey pancreas sections in immunocytochemical analysis. Preabsorption to the synthetic C-peptide 2, but not the synthetic mouse and rat C-peptide 1 abolished staining. In conclusion we have produced peptide antisera to an antigenic epitope which is unique to mouse and rat C-peptide 2. Antisera recognizing this epitope may be effective tools to study differential expression of the two insulin genes in mouse and rat.

Amino Acids↗

Site-specific antibodies distinguish single amino acid substitutions in position 57 in HLA-DQ beta-chain alleles associated with insulin-dependent diabetes.

The HLA-DQ beta-chain gene shows a close association with susceptibility or resistance to autoimmune insulin-dependent diabetes mellitus (IDDM) and it has been suggested that the amino acid in position 57 may be of pathogenetic importance. To study the expression of the IDDM associated HLA-DQ beta-chain alleles, we immunized rabbits with 12 to 13 amino acid long peptides representing HLA-DQw7 and -DQw8 allelic sequences, differing only by one amino acid in position 57 being aspartic acid (Asp) and alanine (Ala), respectively. Immunoblot analysis of lymphoblastoid cells showed that several antisera recognized a 29-kDa protein, equivalent to the expected molecular size of the HLA-DQ beta-chain to yield two antisera specific for HLA-DQw7 (pos. 57Asp) and three antisera for HLA-DQw8 (pos. 57Ala) positive cells. Analysis of HLA-DR 3/4 positive IDDM patients (n = 24) and controls (n = 19) showed that all (100%) patients were positive for pos. 57Ala antiserum compared to 13 of 19 (68%) of the controls. The remaining six controls reacted with the pos. 57Asp antisera, whereas none of the patients did. We have therefore successfully been able to generate site-specific antibodies that distinguish single amino acid substitutions in predetermined positions of allelic HLA-DQ beta-chain gene products. Such sera should become useful to detect and investigate HLA associated susceptibility to autoimmune diseases in man.

Alleles↗

Insulitis and diabetes are preceded by a decrease in beta cell volume in diabetes-prone BB rats.

Immunocytochemistry combined with morphometry was used to test the hypothesis that insulitis and diabetes are preceded by quantitative changes in the pancreas of diabetes-prone BB (DPBB) rats. Diabetes-resistant BB (DRBB) rats of the w-subline served as controls. In the first part of the study rats aged 15, 30, 45, and 60 days were studied. At 60 days preceding both insulitis and onset of diabetes, the DPBB rats demonstrated lower volumes of the entire pancreas, the parenchyma, the endocrine pancreas, and beta, A, and D cells. Body weights of the DPBB rats were lower than the DRBB rats from 15 days of age on. In the second part of the study, DP and DRBB rats were coreared by a foster mother to obtain weight-matched animals. Morphometric analysis at 70 days of age revealed a reduction in both the beta cell volume density and volume whereas no differences were seen in other pancreatic parameters. These results indicate that the appearance of insulitis and the later onset of insulin-dependent diabetes are preceded by a reduction in beta cell volume.

Animals↗

Molecular mimicry and myasthenia gravis. An autoantigenic site of the acetylcholine receptor alpha-subunit that has biologic activity and reacts immunochemically with herpes simplex virus.

The large majority of patients with the autoimmune disease myasthenia gravis characteristically have detectable antibodies against the acetylcholine receptor (AChR). We used synthetic peptides to identify antibodies in sera of myasthenia gravis patients reactive with the human acetylcholine receptor (HuAChR) alpha-subunit, residues 160-167. Affinity purification of these antibodies, using the HuAChR alpha-subunit 157-170 peptide immobilized on thiopropyl-Sepharose, yielded IgG antibodies that bound to the native AChR and inhibited the binding of alpha-bungarotoxin to the receptor. The HuAChR alpha-subunit 160-167 peptide demonstrated specific immunological cross-reactivity with a shared homologous domain on herpes simplex virus glycoprotein D, residues 286-293, by both binding and inhibition studies. Thus, HuAChR alpha-subunit, residues 160-167, elicits antibodies in myasthenic patients that binds to the native AChR protein and is capable of eliciting a biologic effect. Immunologic cross-reactivity of this "self" epitope with herpes simplex virus suggest that this virus may be associated with the initiation of some cases of myasthenia.

Amino Acids↗

Increased levels of circulating immune complexes are not associated with diabetes in BB rats.

Increased levels of circulating immune complexes (IC) have been described in insulin-dependent diabetic (IDD) patients at the time of diagnosis. The aim of the present study was to test whether the spontaneously diabetic BB rat had changes in IC levels at different ages prior to and at onset of IDDM as compared with diabetes resistant BB rats and normal Wistar Furth rats. The IC levels were related to serum IgG concentration as well as to total peripheral blood lymphocyte counts. Three groups of rats with 12 animals in each were followed: Diabetes-prone, lymphopenic (DP) BB rats with an expected high incidence of diabetes, diabetes-resistant (DR) BB rats from the non-diabetic w-subline, and Wistar Furth rats. Blood samples collected on 12, 22, 29, 43, 71, and 99 days of age were analyzed for IC, detected in a solid phase C1q assay, serum IgG levels, and peripheral blood lymphocytes. Diabetes developed in 8/12 (66%) DP BB rats between 70 and 93 days of age while none of the DR BB rats developed diabetes. The levels of IC tended to increase with age in all three groups of rats and did not differ between DP BB and Wistar rats whereas DR BB rats had significantly higher levels (p less than 0.05-0.01) at all ages. The profile of serum IgG was similar in all rats showing a high level at 12 days of age and a nadir at day 29 followed by an increase from day 43 until the end of the follow-up period.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Abrogation of diabetes in BB rats by acute virus infection. Association of viral-lymphocyte interactions.

The BB rat spontaneously develops an insulin-dependent diabetes mellitus (IDDM) that closely resembles this disease in man. The pathogenesis involves autoimmune destruction of pancreatic beta-cells. In the present study, inoculation of diabetes-prone BB rats at 30 days of age with a lymphotropic variant of lymphocytic choriomeningitis virus significantly reduced the incidence of diabetes. Such virus-inoculated, diabetes-free rats had normal levels of pancreatic insulin and little or no mononuclear cell infiltration in the islets. Virus was recovered from lymphocytes by cocultivation with permissive cells. In contrast, virus was not detected in a wide variety of organs, indicating that infection in BB rats was primarily lymphotropic. PBL analyzed by FACS and monoclonal markers showed a marked reduction of pan-T. Th, and T suppressor/cytotoxic lymphocyte subsets restricted to 4 and 7 days after infection when compared with numbers of lymphocytes in uninoculated diabetes-prone rats. To prevent IDDM, replicating virus was required, because the expected incidence of IDDM in diabetes prone rats inoculated with UV-inactivated virus was equivalent to that of untreated animals. These results suggest that a virus can suppress the autoimmune response that would otherwise have caused IDDM and may be useful as a probe in dissecting the molecular basis of this autoimmune disorder.

Acute Disease↗

Inhibition of diabetes in BB rats by virus infection.

BB rats serve as a model for human insulin-dependent diabetes mellitus (IDDM), since without insulin treatment, most 60-140-d-old animals die within 1 to 2 wk of developing polyuria, polydypsia, hyperglycemia, and hypoinsulinemia. Lymphoid cells accumulate in the islets of Langerhans and beta cells undergo destruction. We report that inoculation of such BB rats with lymphocytic choriomeningitis virus (Armstrong strain, clone 13) reduces over a prolonged period the incidence of IDDM, normalizes the concentration of blood sugar and pancreatic insulin, prevents the mononuclear cell infiltration in the islets of Langerhans, and for a short time after inoculation alters T lymphocyte subsets. Thus, a virus might be programmed to carry out useful functions.

Animals↗