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Biomedical subjects

H Inoko

Publications and source records attributed to H Inoko.

At least 145 records · Page 8Linked to original sources

Immunoglobulin allotype gene polymorphisms in systemic sclerosis: interactive effect of MHC class II and KM genes on anticentromere antibody production.

OBJECTIVE: To examine potential interactions between immunoglobulin (Ig)-allotype gene polymorphisms and susceptibility to systemic sclerosis (SSc) as well as serological expression in SSc patients. METHODS: IgG heavy chain allotypes G1M(f, z), G2M(n+, n-), G3M(b, g) and Ig light chain allotype KM(1, (1, 2), 3) were genotyped in 105 Japanese SSc patients and 47 race matched normal controls using polymerase chain reaction (PCR) based methods. Associations of each Ig allotype with SSc related antinuclear antibodies were examined in combination with or without MHC class II alleles. RESULTS: GM/KM genotypic and allelic frequencies were similar in SSc patients and in normal controls. Frequencies of G1M(f) and G2M(n+) were significantly decreased in anticentromere antibody (ACA) positive SSc patients compared with ACA negative SSc patients (p = 0.04 and 0.02, respectively). Conversely, the presence of DQB1*0501 and KM(1, 2) significantly increased the risk of ACA positivity. CONCLUSION: Ig allotype gene polymorphisms were not associated with susceptibility to SSc. Instead, the results suggested that MHC class II and KM genes are associated with autoimmune responses by interactively promoting the production of ACA.

Antibodies, Antinuclear↗

Hepatitis C virus infection and heart diseases: a multicenter study in Japan.

As a collaborative research project of the Committees for the Study of Idiopathic Cardiomyopathy, a questionnaire was sent out to 19 medical institutions in Japan in order to examine the possible association between hepatitis C virus (HCV) infection and cardiomyopathies. Hepatitis C virus antibody was found in 74 of 697 patients (10.6%) with hypertrophic cardiomyopathy (mean age, 57.7 years) and in 42 of 663 patients (6.3%) with dilated cardiomyopathy (mean age, 56.5 years); these prevalences were significantly higher than that found in volunteer blood donors in Japan (2.4%, 50-59 years of age, each p<0.0001). The prevalence was significantly higher in patients suffering from hypertrophic cardiomyopathy as opposed to those with dilated cardiomyopathy (p<0.01). The presence of HCV antibody was detected in 650 of 11,967 patients (5.4%) patients seeking care in 5 academic hospitals. Various cardiac abnormalities were found among these patients, arrhythmias being the most frequent. These observations suggest that HCV infection is an important cause of a variety of otherwise unexplained heart diseases.

Cardiomyopathies↗

Molecular cloning of a leucine zipper motif-containing novel cDNA specifically expressed in adult mouse testis.

A novel cDNA clone was isolated from a mouse testis cDNA library. This cDNA is 2,020 nucleotides in size and predicted to encode 527 amino acid residues with a molecular weight of 59.9 kDa. Protein sequence motif analysis revealed that the predicted protein contained one leucine zipper motif in its N-terminal portion and two basic domains in its C-terminal portion. Northern blot analysis of adult ICR mouse organs using the cDNA as probe demonstrated that an approximately 2.0-kb transcript was specifically expressed in testis. We therefore termed this novel cDNA tsec-2, testis-specifically expressed cDNAs-2. Results of Southern blot analysis suggested that the tsec-2 gene may exist as a single copy in the mouse genome.

Amino Acid Sequence↗

MICA gene polymorphisms and HLA-B27 subtypes in Japanese patients with HLA-B27-associated acute anterior uveitis.

PURPOSE: HLA-B27-associated acute anterior uveitis (HLA-B27 AAU) seems to be triggered by external factors in persons with a particular genetic background. It is still uncertain whether HLA-B27 or other gene(s) near the HLA-B region predisposes to uveitis in a linkage disequilibrium with B27. The authors investigated microsatellite polymorphism within the transmembrane region of the MICA gene, located 47 kb centromeric of the HLA-B gene, and HLA-B27 subtypes. METHODS: Seventeen HLA-B27-positive Japanese patients with HLA-B27 AAU, 51 Japanese controls, and 20 B27-positive Japanese controls were examined for MICA gene polymorphism within the transmembrane region using polymerase chain reaction (PCR) and subsequent automated fragment detection by fluorescent-based technology. Furthermore, B27-positive patients with HLA-B27 AAU and B27-positive controls were examined for HLA-B27 subtypes by the PCR-sequence-specific primer method. RESULTS: The microsatellite allele in the MICA gene, consisting of four repetitions of GCT/AGC (designated A4 allele), was present at a significantly higher phenotype frequency in the patient group (64.7%) than in the control group (25.5%) (chi 2 = 6.95, Pc = 0.042). Furthermore, the frequency of the A4 allele was significantly higher, even when compared with 20% in the B27-positive control group (chi 2 = 5.88, Pc = 0.042). The frequency of HLA-B27 subtypes was not significantly different between B27-positive patients with HLA-B27 AAU and B27-positive controls. CONCLUSIONS: These results suggest that the MICA gene itself, or other nearby gene(s), linked to the MICA A4 allele may be involved in the development of HLA-B27 AAU and that HLA-B27 subtypes are not important in the development of HLA-B27 AAU in a Japanese population.

Acute Disease↗

Evolutionary significance of intra-genome duplications on human chromosomes.

Phylogenetic analyses indicated that a series of paralogous gene pairs, found in two extensive regions on human chromosomal bands 6p21.3 and 9q33-34, were created by at least two independent duplications. The duplicated genes on chromosomal band 6p21.3 include the genes for type 11 collagen alpha2 subunit (COL11A2), NOTCH4 (mouse int-3 homologue), 70 kDa heat shock protein (HSPA1A, HSPA1B, and HSPA1L), valyl-tRNA synthetase 2 (VARS2), complement components (C2 and C4), pre-B cell leukemia transcription factor 2 (PBX2), retinoid X receptor beta (RXRB), NAT/RING3, and four other proteins. Their paralogous genes on chromosomal band 9q33-34 are genes for type 5 collagen alpha1 subunit (COL5A1), NOTCH1, 78 kDa glucose-regulated protein (HSPA5), valyl-tRNA synthetase 1 (VARS1), complement component V (C5), PBX3, retinoid X receptor alpha (RXRA), ORFX/RING3L, and others. Among these, the genes for collagen, complement components, NAT/RING3, PBX, and RXR appear to have been duplicated around the time of vertebrate emergence, supporting the idea that they were duplicated simultaneously at that time. Another group of genes that includes NOTCH and HSP appear to have diverged long before that time. A comparison of the physical maps of these two regions revealed that the genes which duplicated in the same period were arranged in almost the same order in the two regions, with the assumption of a few chromosomal rearrangements. We propose a possible model for the evolution of these regions, taking into account the molecular mechanisms of regional duplication, gene duplication, translocation, and inversion. We also propose that a comparative mapping of paralogous genes within the human genome would be useful for identifying new genes.

Animals↗

Molecular cloning and analysis of novel cDNAs specifically expressed in adult mouse testes.

In an effort to examine the molecular basis of spermatogenesis, we isolated two types of novel cDNA clones specifically expressed in mouse testes. Type A cDNA (2,071 nucleotides) is predicted to encode 347 amino acid residues, whereas type B cDNA (1,536 nucleotides) has a deletion of 535 bp from nucleotides 1,206 to 1,740 of type A cDNA, probably due to alternative splicing. This deletion causes a frame shift of the putative open reading frame at the C-terminal portion of type A cDNA to encode 366 amino acid residues. Northern blot analysis using adult ICR organs demonstrated that both types of mRNAs were specifically expressed in testis, although type B mRNA was more abundant than type A mRNA. RT-PCR analysis revealed that these two mRNAs were also expressed in immature testes at 1, 5, 11, 16 and 24 days after birth. In situ hybridization analysis of adult ICR testes demonstrated that these two mRNAs were expressed in spermatogonia, Sertoli cells and Leydig cells. In the W/ WV mouse testis which lacks c-kit activity and spermatogonia, but contains Sertoli and Leydig cells, both mRNAs were found to be expressed in the latter two types of cells. We therefore termed these novel clones tsec-1, testis-specifically expressed cDNAs-1. The protein products of tsec-1 may play an important role in mammalian spermatogenesis.

Amino Acid Sequence↗

Correlation between direct binding ability of synthetic T. gondii SAG1 peptides to HLA-A2 measured by a sensor for surface plasmon resonance and antigenicity of the peptides for T. gondii-infected cell-specific CTL.

Toxoplasma gondii (T. gondii) -infected B lymphoma cells present T. gondii antigens in the context of major histocompatibility complex molecules to T. gondii-specific CD8+ cytotoxic T cells (CTL). HLA-A2 molecules of T. gondii-infected human cells have been shown to be used in presenting T. gondii antigens to CD8+ CTL. SAG1, one of the major antigenic molecules of T. gondii, is an antigen for T. gondii-specific CTL, and represents a possible basis for vaccines. The direct binding of nonamer SAG1 peptides to HLA-A2 was assayed here using an automated biosensor system with a sensor for surface plasmon resonance detection. The antigenicity of synthetic SAG1 peptides to T. gondii-specific CD8+ CTL also was assayed. The present study found a high correlation between the binding ability of synthetic SAG1 peptides to HLA-A2 and the antigenicity of peptides to T. gondii-infected cell-specific CD8+ CTL.

Animals↗

Physical mapping 220 kb centromeric of the human MHC and DNA sequence analysis of the 43-kb segment including the RING1, HKE6, and HKE4 genes.

A cosmid contig was constructed from a YAC clone with a 220-kb insert that spans the centromeric side of the human MHC class II region, corresponding to the mouse t complex. The gene order was identified to be HSET-HKE1.5-HKE2-HKE3-RING1-HKE6- HKE4 (RING5). The genomic sequence of a 42,801-bp long region encoded by one cosmid clone in the RING1, HKE6, and HKE4 subregions was determined by the shotgun method. The exon-intron organization of these three genes, RING1 (Ring finger protein), HKE6 (steroid dehydrogenase-like protein), and HKE4 (transmembrane protein with histidine-rich charge clusters), was determined. The previously reported RING2 gene was revealed to be identical to HKE6. Transcripts from HKE4 were detected in the placenta, lung, kidney, and pancreas. Those of HKE6 were found in the liver and pancreas. The 25-kb region proximal to the RING1 gene includes an extensive dense cluster of Alu repeats (about 1.2 Alu per kb), and no gene has been identified in this so far. The region is equivalent to part of the mouse t complex and could be of relevance to human development.

Amino Acid Sequence↗

Nucleotide sequence analysis of the HLA class I region spanning the 237-kb segment around the HLA-B and -C genes.

To elucidate the detailed gene organization of the human leukocyte antigen (HLA) class I region on chromosome 6, seven contiguous cosmid genomic clones covering the 237-kb segment around the HLA-B and -C loci were subjected to DNA sequencing by the shotgun strategy to give a single contig of 236,822 bp from the MICA gene (58.2 kb centromeric of HLA-B) to 90.8 kb telomeric of HLA-C. This region was confirmed to contain four known genes, MICA, HLA-17, HLA-B, and HLA-C, from centromere to telomere. Further, a new member of the P5 multicopy genes was found to be about 1.3 kb upstream of the HLA-17 gene and designated P5.8. Five novel genes designated NOB1-5 were identified by RT-PCR and Northern blot hybridization. In addition, two pseudogenes, dihydrofolate reductase pseudogene (DHFRP) and ribosomal protein L3 homologous gene (RPL3-Hom), were also found in the vicinity of the HLA-B and -C genes, respectively. The two segments (about 40 kb) downstream of the HLA-B and HLA-C genes showed high sequence homology to each other, suggesting that segmental genome duplication including the major histocompatibility complex (MHC) class I gene must have occurred during the evolution of the MHC.

Blotting, Northern↗

Gene organization of human NOTCH4 and (CTG)n polymorphism in this human counterpart gene of mouse proto-oncogene Int3.

The cDNA and genomic clones for the human counterpart of the mouse mammary tumor gene Int3 were isolated and sequenced. We designated this human major histocompatibility complex (MHC) class III gene as NOTCH4, since very recently, by sequencing cDNA clones, the complete form of the mouse proto-oncogene Int3 has been clarified and named Notch4. The present human NOTCH4 sequence is the first example of the genomic sequence for the extracellular portion of the mammalian Notch4, and by comparing it with the mouse Notch4 cDNA sequence, the exon/intron organization was clarified. The comparison of the predicted amino acid sequence of human NOTCH4 with those of other Notch homologues of a wide range of species revealed four subfamilies for mammalian Notch. In the protein coding region of human NOTCH4, we found (CTG)n repeats showing a variable number tandem repeat (VNTR) polymorphism for different human leukocyte antigen (HLA) haplotypes. Ten genes mapped on 6p21.3, including NOTCH4, were found to have counterparts structurally and functionally similar to those mostly mapped on 9q33-q34, indicating segmental chromosome duplication during the course of evolution. Similarity of genes on chromosomes 1, 6, 9 and 19 was also discussed.

Amino Acid Sequence↗

Triplet repeat polymorphism in the transmembrane region of the MICA gene: a strong association of six GCT repetitions with Behçet disease.

A member of a novel family of the human major histocompatibility complex (MHC) class I genes termed MIC (MHC class I chain-related genes), MICA, has been recently identified near the HLA-B gene on the short arm of human chromosome 6. The predicted amino acid sequence of the MICA chain suggests that it folds similarly to typical class I chains and may have the capacity to bind peptides or other short ligands. Therefore, MICA is predicted to have a specialized function in antigen presentation or T cell recognition. During nucleotide sequence analyses of the MICA genomic clone, we found a triplet repeat microsatellite polymorphism of (GCT/AGC)n in the transmembrane (TM) region of the MICA gene. In 68 HLA homozygous B cell lines, 5 distinct alleles of this microsatellite sequence were detected. One of them contained an additional one base insertion that created a frameshift mutation resulting in a premature termination codon in the TM region. This particular allele may encode a soluble, secreted form of the MICA molecule. In addition, we have investigated this microsatellite polymorphism in 77 Japanese patients with Behcet disease, which is known to be associated with HLA-B51. The microsatellite allele consisting of 6 repetitions of GCT/AGC was present at significantly higher frequency in the patient group (Pc = 0.00055) than in a control population. Furthermore, the (GCT/AGC)6 allele was present in all B51 positive patients and in an additional 13 B51 negative patients. These results suggest the possibility of a primary association of Behcet disease with MICA rather than HLA-B.

Asian People↗

The evolution of MHC diversity by segmental duplication and transposition of retroelements.

Sequence analysis of a 237 kb genomic fragment from the central region of the MHC has revealed that the HLA-B and HLA-C genes are contained within duplicated segments peri-B (53 kb) and peri-C (48 kb), respectively, and separated by an intervening sequence (IF) of 30 kb. The peri-B and peri-C segments share at least 90% sequence homology except when interrupted by insertions/deletions including Alu, L1, an endogenous retrovirus, and pseudogenes. The sequences of peri-B, IF, and peri-C were searched for the presence of Alu elements to use as markers of evolution, chromosomal rearrangements, and polymorphism. Of 29 Alu elements, 14 were identified in peri-B, 11 in peri-C, and 4 in IF. The Alu elements in peri-B and peri-C clustered phylogenetically into two clades which were classified as "preduplication" and "postduplication" clades. Four Alu J elements that are shared by peri-B and peri-C and are flanked by homologous sequences in their paralogous locations, respectively, clustered into a "preduplication" clade. By contrast, the majority of Alu elements, which are unique to either peri-B or peri-C, clustered into a postduplication clade together with the Alu consensus subfamily members ranging from platyrrhine-specific (Spqxcg) to catarrhine-specific Alu sequences (Y). The insertion of platyrrhine-specific Alu elements in postduplication locations of peri-B and peri-C implies that these two segments are the products of a duplication which occurred in primates prior to the divergence of the New World primate from the human lineage (35-44 mya). Examination of the paralogous Alu integration sites revealed that 9 of 14 postduplication Alu sequences have produced microsatellites of different length and sequence within the Alu 3'-poly A tail. The present analysis supports the hypothesis that HLA-B and HLA-C genes are products of an extended segmental duplication between 44 and 81 million years ago (mya), and that subsequent diversification of both genomic segments occurred because of the mobility and mutation of retroelements such as Alu repeats.

Amino Acid Sequence↗

Allelic variants of the human MHC class I chain-related B gene (MICB).

The human major histocompatibility complex (MHC) is located within a 4 megabase segment on chromosome 6p21.3. Recently, a highly divergent MHC class I chain-related gene family, MIC was identified within the class I region. The MICA and MICB genes in this family have unique patterns of tissue expression. The MICA gene is highly polymorphic, with more than 20 alleles identified to date. To elucidate the extent of MICB allelic variations, we sequenced exons 2 (alpha 1), 3 (alpha 2), 4 (alpha 3), and 5 (transmembrane) as well as introns 2 and 4 of this gene in 46 HLA homozygous B-cell lines. We report the identification of eleven alleles based on seven non-synonymous, two synonymous, and four intronic nucleotide variations. Interestingly, one allele has a nonsense mutation resulting in a premature termination codon in the alpha 2 domain. Thus, MICB appears to have fewer alleles than MICA, not unlike the allelic ratio between the HLA-C and -B loci. A preliminary linkage analysis of the MICB alleles with those of the closely located MICA and HLA-B genes revealed no conspicuous linkage disequilibrium between them, implying the presence of a potential recombination hotspot between the MICB and MICA genes.

Alleles↗

Haplotypic diversity of DQA1*03 and *05 subtypes differing at amino acid residue 160 encoded in the third exon in 2215 Japanese individuals.

We analyzed the frequencies and haplotypes of DQA1*03 and *05 subtypes, DQA1*03011 or DQA1*0302 and DQA1*0501 or DQA1*0503, respectively, differing only at codon 160 in the non-polymorphic third exon of the DQA1 gene. Of these, 1,862 and 337 individuals selected as DQA1*03- and DQA1*05-positive samples, respectively among 2,215 unrelated Japanese were typed for their nucleotide variation at residue 160 using PCR-SSP. As observed in other populations, all the samples carrying DQA1*03011 (Gene Frequency, GF: 7.8%) were found to share DQB1*0302, whereas those carrying DQA1*0302 (GF: 44.3%) were associated with a variety of DQB1 alleles including DQB1*0302. Both of the DQA1-DQB1 haplotypes with DQA1*03011 and DQA1*0302 carrying DRB1*0406, DQA1*03011-DQB1*0302 and DQA1*0302-DQB1*0302, showed a strong linkage disequilibrium with B62 (p < 0.001, p < 0.05). These results suggested that DQA1*03011 was generated from a single amino acid change at residue 160 in the DQA1*0302-DQB1*0302 haplotype. However, none of the haplotypes with two different DQA1*03 subtypes carrying DRB1*0403,*0405,*0802 and *0901 showed a linkage disequilibrium with any common B-locus antigens, revealing extensive haplotypic diversity of the DQA1*03 group. For example, DRB1*0802 haplotypes showed linkage disequilibria with two different B-locus antigens, B35 and B61 depending on the presence of DQA1*03011 and DQA1*0302, respectively. The GFs of DQA1*0501 and *0503 were 5.1% and 2.7%, respectively. The DQA1*05 associated haplotypes in the DR52-antigen group with DQB1*0301 were divided into two groups, depending on the bimorphism at residue 160. Such a high degree of haplotypic diversity in association with DRB1 and B alleles observed in the DQA1*03 and *05 groups related to amino acid variation at residue 160, which may affect biological function such as the interaction between CD4 and HLA-DQ molecules, seems to reflect selective pressure in the evolutionary process of HLA antigens.

Alleles↗

Analysis of allelic variation of the TAP2 gene in sarcoidosis.

Sarcoidosis is a systemic granulomatous disease and the DRB1 gene of the DR subregion has been implicated for determining the genetic susceptibility to the disease. We evaluated the allelic variation of the TAP2 gene using the PCR-RFLP method as well as the mismatched PCR-RFLP method in 82 Japanese patients with sarcoidosis and 92 healthy controls. A new allele, TAP2*0103 and a new polymorphic variation at codon 577 in addition to TAP2*0101, TAP2*0102 and TAP2*0201 have been recognized in the Japanese subjects. No significant differences were observed in the frequencies of any TAP2 alleles or dimorphism at codon 577 between the patients and healthy controls. Polymorphic variation of the TAP2 gene does not confer the susceptibility to sarcoidosis.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Immunogenetic study of sympathetic ophthalmia.

Sympathetic ophthalmia (SO) is very rare but it remains one of the most intractable eye diseases. In clinical manifestations and histopathologic features SO is known to resemble closely Vogt-Koyanagi-Harada's disease (VKH disease). We had reported that VKH disease was significantly associated with HLA-DRB1*04 and -DQB1*04 in Japanese patients. In this study, to investigate an HLA association with SO we performed HLA serological and PCR-based DNA typing in 16 patients and 50 healthy controls. Our study revealed that HLA-DRB1*04 (0405; Pc < 5 x 10(-4)), DQA1*03 (Pc < 5 x 10(-3)), and DQB1*04 (0401; Pc < 5 x 10(-4)) were significantly associated with SO as compared to the healthy controls but there was no significant difference in the frequencies of any DPB1 alleles between the patients and healthy controls. It can be postulated that not only the clinical manifestations but also the genetic predisposition of SO are very similar to those of VKH disease.

Female↗

HLA-DRB4 genotyping by PCR-RFLP: diversity in the associations between HLA-DRB4 and DRB1 alleles.

The serologically defined HLA-DR53 antigen is associated with HLA-DR4, -DR7, and -DR9 antigens, and these haplotypes contain two functional genes, DRB1 and DRB4, and two pseudogenes, DRB7 and DRB8. The DRB4 gene encodes the DR53 antigen, and has been officially recognized to contain three allelic variants (DRB4*0101, 0102, and 0103). In this study, we have established the polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) method for DRB4 genotyping and analyzed genetic polymorphism of the DRB4 gene in Japanese population. DRB4*0101, DRB4*0102, and DRB4*0103 could be observed at the frequencies of 0.5%, 1.1% and 32.7%, respectively. The same DRB1 allele does not necessarily share an identical DRB4 allele. Further, a tight linkage disequilibrium was found between DRB4*0102 and DRB1*0401 in Japanese population, whereas DRB1*0401 was associated with DRB4*0101 or *0103 in Caucasian population. These findings reveal extensive diversity of the HLA-DRB1 and -DRB4 haplotypes and may have important implications for HLA-disease associations and donor selection in unrelated transplantation.

Alleles↗