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S Kuwata

Publications and source records attributed to S Kuwata.

At least 73 records · Page 4Linked to original sources

Analysis of disease-associated amino acid epitopes on HLA class II molecules in atopic dermatitis.

We investigated the association between HLA class II alleles and severe atopic dermatitis with high serum IgE levels (greater than 8000 U/ml). The frequencies of HLA-DRB1*1302 and DQB1*0604 were increased, whereas the frequency of HLA-DQB1*0302 was decreased. A strong haplotype, HLA-DRB1*1302-DQB1*0604, has been reported in the Japanese population, and this haplotype is conserved in patients with AD. Further analysis of the amino acid epitopes on the HLA-DR beta 1 and DQ beta 1 domains revealed that DR beta 1 71Glu (RR = 5.71, p < 0.05) and DQ beta 1 30His (RR = 3.25 p < 0.01), and 57Val (RR = 3.13, p < 0.05) were increased in frequency. DR beta 1 71Glu was exclusively unique to DRB1*1302. DQ beta 1 30His was shared by the following alleles: DQ beta 1*0501, *0502, *0503, and *0604, which were all increased in patients with AD. DQ beta 1 57Val was shared by DQB1*0501 and *0604. A well-known haplotype, HLA-DRB1*1302-DQB1*0604, contains DR beta 1 71Glu and DQ beta 1 30His and 57Val. Therefore HLA-DR beta 1 71Glu and/or DQ beta 1 30His/57Val are considered to play the most important role in the development of atopic dermatitis.

Adolescent↗

Chronologic analysis of in situ cytokine expression in mite allergen-induced dermatitis in atopic subjects.

Patch testing with crude dust mite extracts, after removal of horny epidermal layers, was performed on normal-appearing skin of nine adult patients with atopic dermatitis who had high mite-specific IgE antibody levels. Positive skin reactions were observed in seven subjects. Skin biopsy specimens were obtained from positive reaction sites at 2, 6, 12, 24, and 48 hours after allergen challenge and subjected to histologic and immunohistochemical studies and extraction of RNA. Perivascular infiltration of small mononuclear cells began at 2 hours, followed by eosinophilic infiltration at 6 hours, which peaked at 24 and 48 hours. Increased expression of IL-4 messenger RNA was detected with reverse-transcription polymerase chain reaction at 12 and 24 hours, whereas immunohistochemical staining with anti-IL-4 antibody showed positive reactions in connective tissue around infiltrating cells after 2 hours. Expression of IL-5 and tumor necrosis factor-alpha mRNA was upregulated 2 hours after an application of allergen. Interferon-gamma mRNA was not detected. These findings suggest the crucial role of TH2-type cytokines in initiating eosinophil infiltration of mite allergen-induced dermatitis in patients with atopic dermatitis.

Adult↗

Point mutations in the coat protein of cucumber mosaic virus affect symptom expression and virion accumulation in tobacco.

We examined the correlation of the amino acid at position 129 in the coat protein (CP) of cucumber mosaic virus (CMV) with the phenotype of the viral pathology in tobacco by using CP mutants in which several amino acid substitutions had been introduced. An exchange between Ser129 in CMV-Y, a chlorosis-inducing strain, and Pro129 of CMV-O, a green-mosaic-inducing strain, reciprocally altered the phenotypes of those virus strains on tobacco. Replacement of either Ser129 in CMV-Y or Pro129 in CMV-O with a Leu, as is found in a chlorosis-inducing strain, CMV-M, resulted in veinal necrosis. Furthermore, we created mutants that have a Phe or a Gly at position 129. Two Phe129 mutants induced necrotic lesions on the inoculated leaves, and a Gly129 mutant induced green mosaic symptoms. In inoculated protoplasts, the mutant viruses and the wild-type virus all replicated RNA well, and accumulated CP; however, infection with the Leu129 and Phe129 mutants yielded few virions. The Phe129 mutants lacked the capacity to move systemically in tobacco; by 2 weeks post-inoculation, the Phe129 mutants occasionally gave rise to revertants that elicited chlorosis, green mosaic or veinal necrosis. Sequence analysis revealed that one had reverted to the parental Y strain, and the others had additional single amino acid changes (positions 138, 144 or 147). We suggest that amino acids at specific sites affect the whole structure of the CP and affect virus assembly, virus transport and symptom expression.

Amino Acid Sequence↗

Differential immunogenetic determinants of polyclonal insulin autoimmune syndrome (Hirata's disease) and monoclonal insulin autoimmune syndrome.

The insulin autoimmune syndrome (IAS), or Hirata's disease, is characterized by the combination of fasting hypoglycemia, high concentration of total serum immunoreactive insulin, and presence of autoantibodies to native human insulin in serum. Autoantibody production is classified as monoclonal or polyclonal, with the majority of IAS cases classified as polyclonal. Previously, we observed a striking association between the human leukocyte antigen (HLA) class II alleles DRB1*0406/DQA1* 0301/DQB1*0302 and Japanese IAS patients with polyclonal insulin autoantibodies (IAAs) and T-cell recognition of human insulin in the context of DRB1*0406 molecules. Because of such a strong HLA association in IAS, we performed intra- and interethnic studies on IAS-associated DRB1 alleles and searched for the critical amino acid residue(s) for IAS pathogenesis. Glutamate at position 74 in the HLA-DR4 beta 1-chain was presumed to be essential to the production of polyclonal IAA in IAS, whereas alanine at the same position of the HLA-DR beta 1-chain might be important in the production of monoclonal IAA.

Adult↗

No evidence of linkage or allelic association of schizophrenia with DNA markers at pericentric region of chromosome 9.

Based on our previous study suggesting the pericentric region of chromosome 9 as of potential importance in schizophrenia, we have carried out a linkage study between the schizophrenia phenotype and the dinucleotide repeat polymorphisms D9S55, D9S15, and D9S202 in three pedigrees multiply affected with schizophrenia. In addition, we have conducted allelic association studies using 60 patients with schizophrenia and 60 controls with polymorphisms at D9S55 and D9S15 markers. No evidence for linkage or association was found. The results indicate that susceptibility genes for schizophrenia are less likely to be located at the pericentric region of chromosome 9, assuming genetic homogeneity of the pedigrees.

Alleles↗

Polymorphisms of transporter associated with antigen processing genes in atopic dermatitis.

We investigated polymorphisms of transporter associated with antigen process (TAP) genes in atopic dermatitis. We developed a polymerase chain reaction-restriction fragment length polymorphism method for discriminating TAP alleles. Genomic DNA was obtained from 29 Japanese patients with atopic dermatitis and 35 control subjects. Dimorphic regions of TAP1 and TAP2 genes were amplified by polymerase chain reaction. Amplified products were digested with restriction endonucleases to determine TAP alleles: Sau3A1 for TAP1 codon 333 (Ile-Val), AccI for TAP1 codon 637 (Asp-Gly), and EcoRII for TAP2 codon 687 (Gln-Stop). We observed four alleles for TAP1 and dimorphism for TAP2 codon 687. Six of 35 controls had the TAP1 D allele, which has been reported to be a rare allele in Caucasian populations. Gene frequency of TAP1 637Asp exhibited a tendency to increase in the patients with atopic dermatitis. TAP1 637Asp and TAP1 A alleles were estimated to constitute a haplotype with DRB1* 1302-DQB1*0604 and DRB1*0803-DQB1*0601 in the Japanese population. Because TAP1 and TAP2 genes are located between HLA-DQB1 and -DPB1 loci, analysis of TAP gene polymorphisms will be useful for a better understanding of susceptibility loci in HLA class II-associated disease.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

HLA and atopic dermatitis with high serum IgE levels.

Patients with atopic dermatitis usually exhibit allergen-specific IgE antibodies against several environmental antigens. HLA restriction is presumed to be involved in the recognition of such antigens, but several previous reports have so far failed to find a significant association between atopic dermatitis and HLA antigens. In this study we examined 38 unrelated Japanese patients with severe atopic dermatitis and high serum IgE levels (greater than 800 U/ml). We investigated the serological HLA types and HLA class II alleles in this group of patients with atopic dermatitis. Frequencies of HLA-A24, A33, Cwblank, B44, DR13 and HLA-DRB1*1302, DQB1*0604, DPB1*0301 alleles were increased in the patients. In contrast, frequencies of HLA-Cw1, Bw6, DR4, DR53, and HLA-DQB1*0302 allele were decreased. However, none of these remained significant after p values were corrected. Further study on HLA association with atopic dermatitis through characterization of specific antigens or antigen epitopes is needed.

Adolescent↗

HLA-DR types in Japanese schizophrenics: analysis by group-specific PCR amplification.

An association of HLA-DR8 and DR1 with DSM-III schizophrenia has been reported in Japan (Miyanaga et al. (1984) Biol. Psychiatr. 19, 121-129). To further investigate this preliminary finding, we compared HLA-DR types in 44 unrelated Japanese schizophrenics (DSM-III-R) with those in 51 unrelated, healthy Japanese volunteers. Group-specific PCR amplification was used in the determination of HLA-DR in the patients. No significant difference was observed in the frequency of any DR types between patients and controls, after statistical correction for multiple testing. However, the frequency of DR1 in our patients (23%) and controls (10%) was almost the same as those in the previous report (22% vs. 10%), which means that there is a suggestive trend which could become significant if numbers were larger. It is argued that an exact determination of HLA-DR by DNA typing is important in current HLA studies of schizophrenia.

Adult↗

Sequence analysis of serological HLA-A11 split antigens, A11.1 and A11.2.

HLA-A11 has two serologically-defined splits, A11.1 and A11.2, and two alleles coding for HLA-A11, A*1101 and A*1102, have been published so far. In order to understand the relationship between the serological subtypes and the amino acid sequences, we have sequenced the alleles coding for A11.1 and A11.2. The results demonstrated that A11.1 split antigen is encoded by A*1101 and A11.2 split antigen is encoded by A*1102. Moreover, we obtained the sequences of exons 1, 5, 6, 7, and 8 of A*1102, which were not reported previously. In addition, we could distinguish A*1101 from A*1102 using a PCR-SSCP method, confirming that A11.1 carried by different HLA haplotypes has the same sequence.

Amino Acid Sequence↗

Neurotrophin-3 gene polymorphism associated with schizophrenia.

The recent possible neurodevelopmental etiology of schizophrenia makes the neurotrophin-3 (NT-3) gene an interesting candidate locus. We studied the allelic distributions of dinucleotide repeat polymorphism at the NT-3 gene locus in 70 patients with schizophrenia and in 70 controls. A highly significant difference between the two groups was observed at the allele A3. Even Bonferroni's correction was used, the difference was still significant. Individuals with homozygous or heterozygous for the allele A3 had a 2.4-fold increased risk of schizophrenia. Determination of NT-3 genotype may help to identify those at greater risk of schizophrenia. Furthermore, this finding supports evidence implicating neurodevelopmental deficit in the pathogenesis of this disorder.

Adult↗

Discrimination of human HLA-DRB1 alleles by PCR-SSCP (single-strand conformation polymorphism) method.

A single-strand conformation polymorphism (PCR-SSCP) method has been adopted for discrimination of human HLA-DRB1 alleles. This method enabled the detection of DNA polymorphisms including point mutations at a variety of positions in the DNA fragments of the HLA-DRB1 gene. A total of 27 HLA-DRB1 alleles from 172 healthy donors were analysed using a combination of PCR-SSCP with group-specific amplifications. Application of a small amount of amplified and denatured DNA to non-denaturing electrophoresis followed by silver staining resulted in distinct banding patterns. Samples possessing a single allele in each amplification group showed two-band patterns which correspond to the sense and antisense strands, while heterozygotes in the same group or a mixture of two single-type samples showed four-band patterns. All of the analysed alleles were discriminated in each DRB1 group. The method described here may be somewhat complicated for routine typing of HLA-DRB1 alleles. However, it is useful in the screening of "new' alleles as well as the donor-recipient molecular matching of HLA class II genes for various purposes, e.g. selection of bone marrow transplant donors.

Alleles↗

Tumor necrosis factor-alpha mRNA expression in lipopolysaccharide-stimulated rat kidney. Chronological analysis of localization.

To study the time course of lipopolysaccharide-induced production of tumor necrosis factor-alpha (TNF-alpha) in the kidney, we utilized a highly sensitive non-radioisotopic in situ hybridization with 1-nm gold-conjugated anti-digoxigenin for localization of TNF-alpha mRNA expression after lipopolysaccharide administration. TNF-alpha mRNA expression localized by in situ hybridization showed a peak increment in proximal tubular epithelial cells and glomeruli at 2 hours and returned to almost normal levels at 6 hours. The intensity of the signal was much stronger in proximal tubules than in glomeruli. These findings were confirmed by the demonstration of similar kinetics in the increase of TNF-alpha message, measured by using amplification of the third and fourth exons of TNF-alpha gene by reverse transcription-polymerase chain reaction of microdissected proximal tubular segments and isolated glomeruli. Reverse transcription-polymerase chain reaction of cultured rat mesangial and glomerular epithelial cells demonstrated that mesangial cells, not glomerular epithelial cells, were responsible for the observed glomerular signals.

Animals↗

Recognition of human insulin in the context of HLA-DRB1*0406 products by T cells of insulin autoimmune syndrome patients and healthy donors.

Our recent study indicated that all the insulin autoimmune syndrome (IAS) patients had specific HLA class II alleles, the DRB1*0406, DQA1*0301, and DQB1*0302, which allowed T cells to proliferate when autologous APC were exposed to human insulin. The study implied that gene products of DRB1*0406, DQA1*0301, and/or DQB1*0302 may be involved in the presentation of human insulin to T cells. We therefore examined T cell response of healthy donors with different HLA phenotypes to human insulin using an autologous MLR system. The T cells from not only IAS patients but also healthy donors were able to proliferate after exposure of human insulin to autologous APC with DRB1*0406, DQA1*0301, and DQB1*0302 products. The class II molecules are considered to be involved in the recognition of human insulin by T cells. The proliferative response of T cells was completely blocked by anti-HLA-DR mAb and not by anti-HLA-DQ mAb or other mAb. Furthermore, human insulin-specific CD4-positive T cell clones were established from blast cells in autologous MLR of PBMC from two healthy donors with DRB1*0406 in the presence of human insulin. Using DRB1*0406-transfected L cells as APC, we confirmed that these T cells clones recognize human insulin in the context of gene products of DRB1*0406. These results provide the first evidence that HLA-DRB1*0406 products act as the dominant restriction element for the presentation of human insulin to T cells, and suggest that this particular class II gene, HLA-DRB1*0406, contributes to the development of IAS.

Antibodies, Monoclonal↗