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Yuji Nagayama

Publications and source records attributed to Yuji Nagayama.

30 records · Page 2Linked to original sources

The thyrotropin receptor autoantigen in Graves disease is the culprit as well as the victim.

Graves disease, a common organ-specific autoimmune disease affecting humans, differs from all other autoimmune diseases in being associated with target organ hyperfunction rather than organ damage. Clinical thyrotoxicosis is directly caused by autoantibodies that activate the thyrotropin receptor (TSHR). The etiology of Graves disease is multifactorial, with nongenetic factors playing an important role. Of the latter, there is the intriguing possibility that the molecular structure of the target antigen contributes to the development of thyroid-stimulatory autoantibodies (TSAb's). Among the glycoprotein hormone receptors, only the TSHR undergoes intramolecular cleavage into disulfide-linked subunits with consequent shedding of some of the extracellular, autoantibody-binding A subunits. Functional autoantibodies do not arise to the noncleaving glycoprotein hormone receptors. Recently, TSAb's were found to preferentially recognize shed, rather than attached, A subunits. Here we use a new adenovirus-mediated animal model of Graves disease to show that goiter and hyperthyroidism occur to a much greater extent when the adenovirus expresses the free A subunit as opposed to a genetically modified TSHR that cleaves minimally into subunits. These data show that shed A subunits induce or amplify the immune response leading to hyperthyroidism and provide new insight into the etiology of Graves disease.

Adenoviridae↗

In vivo expression of B:9-23 peptide/I-A(g7) complex may abrogate the inhibition of diabetes induced by RGD-fiber-mutant adenovirus in NOD mice.

Insulin B chain peptide B:9-23 given to NOD mice decreases the development of diabetes, and phase II trials of an altered peptide ligand of B:9-23 are under way in humans. We have created a gene for the NOD MHC class II beta chain, covalently linked to the B:9-23 peptide. B lymphoma cells transfected with the gene stimulated NOD islet-derived B:9-23 reactive T cell clones in vitro. In this study, we generated an RGD-fiber-mutant adenovirus vector encoding the covalent B:9-23 peptide/I-A(g7) gene (Ad-RGD-B:9-23) to test whether in vivo expression of the gene could protect NOD mice from diabetes. NOD female mice were injected intramuscularly with 5 x 10(8) PFU of Ad-RGD-B:9-23 and empty RGD-adenovirus vector. A single administration of the empty vector did not alter the expression of insulin autoantibodies, but delayed the onset of diabetes in NOD mice. In contrast, Ad-RGD-B:9-23 immunization induced an early expression of insulin autoantibodies, but did not change the disease occurrence compared to control NOD mice. Our results suggest that adenovirus infection could confer protection from diabetes in NOD mice. The in vivo expression of covalent B:9-23 peptide/class II complex by adenovirus gene transfer might activate anti-insulin autoimmunity, resulting in abrogation of the inhibition of diabetes induced by an RGD-fiber-mutant adenovirus vector.

Adenoviridae↗

The cysteine-rich amino terminus of the thyrotropin receptor is the immunodominant linear antibody epitope in mice immunized using naked deoxyribonucleic acid or adenovirus vectors.

Experimental Graves' disease is more effectively produced by immunization approaches involving in vivo TSH receptor (TSHR) expression than by conventional immunization with TSHR protein and adjuvant. Unlike conformational epitopes that are extremely difficult to define, linear epitopes can be readily assessed using synthetic peptides. TSHR linear epitopes are well characterized in conventionally immunized animals, but there is no information for animals vaccinated with TSHR DNA in plasmid or adenovirus vectors. We used synthetic peptides to characterize linear epitopes in mice immunized by in vivo expression of TSHR DNA. TSHR adenovirus-injected mice had higher antibody levels than TSHR DNA-vaccinated mice. However, the dominant peptide recognized in both groups was the TSHR cysteine-rich N terminus (residues 22-41). Sera from TSHR adenovirus-immunized (but not TSHR DNA-vaccinated) mice interacted to a lesser extent with peptides encompassing residues 352-401, which include the region deleted following TSHR cleavage as well as the ectodomain juxta-membrane region. Although antibodies characterized using synthetic peptides are probably TSH blockers or nonfunctional, stimulating antibodies may recognize linear components in a conformational epitope. The cysteine-rich TSHR N terminus is functionally important in the action of stimulating TSHR autoantibodies in humans. The immunodominance of the same region in immunized mice suggests that this region may also be immunodominant in humans.

Adenoviridae↗

Immuno-gene therapy with adenoviruses expressing fms-like tyrosine kinase 3 ligand and CD40 ligand for mouse hepatoma cells in vivo.

Introduction of genes encoding immuno-stimulatory cytokines into cancer cells is known to enhance antitumor immunity. CD40 ligand (CD40L, CD154) and fms-like tyrosine kinase 3 ligand (Flt3L) are recently identified cytokines, which have been demonstrated to stimulate antitumor immunity in several cancer models. However little is known about antitumor activity of Ftl3L and CD40L against hepatocellular carcinoma (HCC). In the present study, we constructed replication-defective adenoviruses expressing Flt3L and CD40L and examined their therapeutic efficacy on mouse HCC, MH134 cells. Subcutaneous injection of MH134 cells genetically engineered to express Flt3L and/or CD40L developed tumors in all the syngeneic immunocompetent mice, but tumor growth was significantly delayed as compared to control mice. Partial inhibition of this antitumor effect in athymic nude mice suggests that both innate and adaptive immunity appear to play a role. It was shown by immunodepletion of NK cells with anti-asialo-GM1 antibody that the effector cells involved in innate immunity are NK cells. In a therapeutic setting, however, injection of adenovirus expressing Flt3L or CD40L into pre-established MH134 tumors exhibited no efficacy. These data demonstrate that Flt3L and CD40L induce significant, but only weak, antitumor immunity against MH134 cells presumably through both innate and adaptive immunity. Our results suggest that immuno-gene therapy with Flt3L and CD40L may need adjuvant modalities to achieve strong immune response.

Animals↗

[Transient dysfunction of the retinal ganglion cells after laser in situ keratomileusis].

PURPOSE: To evaluate the influence of high intraocular pressure(IOP) on the retinal ganglion cell function induced by suction during laser in situ keratomileusis(LASIK) using Frequency Doubling Technology(FDT). METHODS: Twenty-seven eyes of 15 patients were studied. Threshold values of 19 targeted areas, mean deviation(MD), and pattern standard deviation (PSD) were measured before LASIK, and 2 hours, 1 day, and 1 week after LASIK. These parameters obtained by N-30 program of FDT were compared between before and after LASIK. RESULTS: Significant decrease of MD and threshold value in all areas was recognized at 2 hours, but MD and threshold value in 6 of the 19 areas showed significant increase at 24 hours. Significant increase of PSD value at 2 hours was recognized. After 7 days, there were no significant differences in any parameters between before and after LASIK. CONCLUSION: These results indicated that a transient dysfunction of the magnocellular pathway might be induced by high IOP during LASIK procedure.

Adult↗

A novel murine model of Graves' hyperthyroidism with intramuscular injection of adenovirus expressing the thyrotropin receptor.

In this work we report a novel method to efficiently induce a murine model of Graves' hyperthyroidism. Inbred mice of different strains were immunized by i.m. injection with adenovirus expressing thyrotropin receptor (TSHR) or beta-galactosidase (1 x 10(11) particles/mouse, three times at 3-wk intervals) and followed up to 8 wk after the third immunization. Fifty-five percent of female and 33% of male BALB/c (H-2(d)) and 25% of female C57BL/6 (H-2(b)) mice developed Graves'-like hyperthyroidism with elevated serum thyroxine (T(4)) levels and positive anti-TSHR autoantibodies with thyroid-stimulating Ig (TSI) and TSH-binding inhibiting Ig (TBII) activities. In contrast, none of female CBA/J (H-2(k)), DBA/1J (H-2(q)), or SJL/J (H-2(s)) mice developed Graves' hyperthyroidism or anti-TSHR autoantibodies except SJL/J, which showed strong TBII activities. There was a significant positive correlation between TSI values and T(4) levels, but the correlations between T(4) and TBII and between TSI and TBII were very weak. TSI activities in sera from hyperthyroid mice measured with some chimeric TSH/lutropin receptors suggested that their epitope(s) on TSHR appeared similar to those in patients with Graves' disease. The thyroid glands from hyperthyroid mice displayed diffuse enlargement with hypertrophy and hypercellularity of follicular epithelia with occasional protrusion into the follicular lumen, characteristics of Graves' hyperthyroidism. Decreased amounts of colloid were also observed. However, there was no inflammatory cell infiltration. Furthermore, extraocular muscles from hyperthyroid mice were normal. Thus, the highly efficient means that we now report to induce Graves' hyperthyroidism in mice will be very useful for studying the pathogenesis of autoimmunity in Graves' disease.

Adenoviridae↗

Receptor-independent augmentation of adenovirus-mediated gene transfer with chitosan in vitro.

Recombinant adenovirus is one of the most widely used viral vectors for gene delivery. This study was designed to evaluate the ability of chitosan, a cationic, linear polysaccharide composed of beta(1,4) linked glucosamine partly containing N-acetyl-glucosamine, to enhance the in vitro infectivity of adenovirus to mammalian cells. Wild type and a fiber-mutant replication-defective recombinant adenoviruses expressing beta-galactosidase were used. In the latter, an RGD peptide, the binding site for alpha(v)beta3 and alpha(v)beta5 integrin, was introduced in the fiber knob enabling adenovirus receptor-independent viral infection. Enhanced effect of chitosan on the infectivity of both adenoviruses was observed in Chinese hamster ovary cells that do not express the receptor for adenovirus with beta-galactosidase activity assay and x-gal staining. These data indicate the receptor-independent mechanism(s) for this enhancement effect. In addition, we found that pH of the culture medium, and molecular mass and concentration of chitosan are also critical factors. Thus, the highest effect was obtained with 0.1-1 microg/ml of chitosan with molecular mass of 19K and 40K in the culture medium of pH 6.4; on the other hand, the effect was negligible with the higher chitosan concentrations (10 microg/ml or more), lower or higher molecular mass (11K and 110K) of chitosan, or at pH of 7.4. Studies using several cell lines with variable levels of adenoviral infectivity revealed that this enhanced effect is evident in the cells with poor infectivity to adenovirus. Since chitosan is biocompatible and inexpensive, these data indicate that chitosan may be a potential candidate for a non-viral vector to safely increase adenoviral infectivity to mammalian cells, particularly those with poor susceptibility to adenoviral infection.

Adenoviridae↗

p48 Overexpression enhances interferon-mediated expression and activity of double-stranded RNA-dependent protein kinase in human hepatoma cells.

BACKGROUND/AIMS: Double-stranded RNA-dependent protein kinase (PKR) is a key factor involved in interferon (IFN)-induced antiviral actions. Since p48, together with signal transducers and activators of transcription 1 and 2 (STAT1 and STAT2), is an indispensable mediator in IFN-alpha signaling pathways, we investigated the effect of p48 gene transduction on PKR expression and its activity in HuH-7 human hepatoma cells. METHODS: HuH-7 cells were infected or transfected with p48 gene expression adenoviral vector or plasmid vector, respectively, and incubated with or without IFN-alpha, then PKR expression and phosphorylation of alpha-subunit of eukaryotic protein synthesis initiation factor-2 (eIF2alpha) in the cells were examined. In addition, PKR activity inhibiting protein translation was determined by the decrease of chloramphenicol acetyltransferase (CAT) gene translation or alpha-fetoprotein secretion. RESULTS: p48 overexpression itself could not stimulate PKR expression. However, p48 overexpression in combination with interferon-alpha treatment caused a marked increase in PKR expression and augmented the phosphorylation of eIF2alpha, by which the transfected CAT gene translation, as well as the endogenous alpha-fetoprotein synthesis, was blocked without affecting their mRNA levels. CONCLUSIONS: These results suggest that p48 gene transduction may provide a strategy to enhance the IFN-mediated PKR expression and its activity in hepatocytes.

Antiviral Agents↗

Expression of receptor-type tyrosine kinase, Axl, and its ligand, Gas6, in pediatric thyroid carcinomas around chernobyl.

Protein-tyrosine kinases (PTKs) play a crucial role in regulating thyroid cell growth and differentiation. It is known that PTKs are activated by ionizing radiation, but the critical pathways through ionizing radiation-induced malignant transformation are not well defined. The Axl protein is a member of a new family of receptor tyrosine kinases, which the ligand, Gas6, a protein S-related molecule, has recently been identified. We previously clarified the expression of Axl and mitogenic action of Gas6 in thyroid carcinoma cells. To investigate the involvement of Gas6-Axl signaling in pediatric thyroid carcinoma further, we examined tissues obtained from 17 patients with thyroid papillary carcinomas from Gomel, Belarus, by immunohistochemistry and in situ hybridization. Axl and Gas6 were overexpressed in 76.5% and 70.6 % of cases, respectively. Solid component and invasive front tended to overexppress Gas6 and Axl in papillary carcinomas. Eighty-five percent of Axl positive cases coexpressed Gas6. In situ hybridization also confirmed the presence of axl mRNA in thyroid carcinoma tissues. These findings suggest that Axl and Gas6 expression might be involved in childhood thyroid tumorigenesis around Chernobyl.

Child↗

A monoclonal thyroid-stimulating antibody.

The thyrotropin receptor, also known as the thyroid-stimulating hormone receptor (TSHR), is the primary antigen of Graves disease. Stimulating TSHR antibodies are the cause of thyroid overstimulation and were originally called long-acting thyroid stimulators due to their prolonged action. Here we report the successful cloning and characterization of a monoclonal antibody (MS-1) with TSHR-stimulating activity. The thyroid-stimulating activity of MS-1 was evident at IgG concentrations as low as 20 ng/ml. MS-1 also competed for radiolabeled TSH binding to the native TSHR and was able to compete for TSH-induced stimulation. MS-1 recognized a conformational epitope within the TSHR alpha (or A) subunit but excluding the receptor cleavage region. Using an assay measuring loss of antibody recognition after cleavage we demonstrated that MS-1, in contrast to TSH, was unable to enhance TSHR posttranslational cleavage. Since receptor cleavage is followed by alpha subunit shedding and receptor degradation, the functional half-life of the receptor may be extended. The isolation and characterization of MS-1 provides a novel explanation for the prolonged thyroid stimulation in this disease which may be secondary to the lack of receptor cleavage in addition to the prolonged half-life of IgG itself.

Animals↗

Multiple messenger ribonucleic acid transcripts and revised gene organization of the human TSH receptor.

Northern blot analysis of human TSH receptor (hTSHR) messenger ribonucleic acid (mRNA) expression has previously demonstrated multiple species of transcripts in the thyroid gland, suggesting the presence of multiple transcription initiation sites, alternatively spliced forms or alternate polyadenylation (poly(A)) sites. The first two have already been reported elsewhere. To clarify alternate poly(A) sites in the hTSHR gene, the present study was designed to characterize three full-length hTSHR cDNAs with distinct poly(A) signals that we have previously cloned. The comparison of the nucleotide sequencing data on the 3'UTR of these three clones to the Draft Human Genome in NCBI database revealed that the 3' segment of exon 10 of hTSHR gene contains three tandem repeats of the poly(A) sites, from which are expressed three full-length TSHR mRNAs with distinct 3'UTR length. The longest one appears to be a predominant transcript. From these data, together with (i) the previously reported organization of hTSHR genome and (ii) use of the Draft Human Genome to localize the unidentified sequence in the alternatively spliced form of truncated hTSHR, we propose the complete structure of hTSHR gene. Rather than 10 exons, our analysis suggests that hTSHR gene seems to contain 13 exons and 12 introns. At least three full-length TSHR mRNAs with distinct poly(A) sites and five alternatively spliced forms of TSHR mRNAs are expressed from the single hTSHR gene.

Alternative Splicing↗

Distinctive gene expression of receptor-type tyrosine kinase families during rat hepatocarcinogenesis.

Growth factor receptor tyrosine kinase signaling plays key roles in regulating growth of normal hepatocytes, however, which receptor-type tyrosine kinase (RTK) is involved in hepatocarcinogenesis remains undetermined. The aim of this study was to characterize the expression of these receptors in different stages of rat liver carcinogenesis. We compared the expression profile of RTK genes in rat normal liver and diethylnitrosamine-induced hepatoma tissues using a homology cloning method with degenerated primers. In situ hybridization, immunohistochemical staining, and RT-PCR were performed to analyze the cell type-specific expression of target RTKs during the chemically-induced hepatocarcinogenesis. Sequence analysis of 459 clones identified 23 different RTK genes. The Tie-2, c-Met, and Flk-1 genes were the most abundant RTK genes cloned in rat hepatoma compared to normal liver. In situ hybridization and immunohistochemical studies showed overexpression of c-Met and Flk-1 in GST-P positive preneoplastic lesions as well as neoplastic lesions. Tie-2 was expressed not only in endothelial cells but also in so-called oval cells, which are thought to be liver stem cells. Tie-2 ligand, angiopointin-1, mRNA was detected in both normal livers and hepatoma cells/tissues. In contrast, angiopoietin-2 mRNA was detected only in hepatoma tissues. These results indicate that c-Met, Tie-2 and Flk-1 signals play important roles in different stages of chemically-induced hepatocarcinogenesis. Distinctive gene expression of RTK may contribute to epigenic implication of hepatoma formation.

Amino Acid Sequence↗