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Biomedical subjects

Satoru Miyazaki

Publications and source records attributed to Satoru Miyazaki.

13 recordsLinked to original sources

Exploration and grading of possible genes from 183 bacterial strains by a common protocol to identification of new genes: Gene Trek in Prokaryote Space (GTPS).

A large number of complete microorganism genomes has been sequenced and submitted to the public database and then incorporated into our complete genome database, Genome Information Broker (GIB, http://gib.genes.nig.ac.jp/). However, when comparative genomics is carried out, researchers must be aware that there are protein-coding genes not confirmed by homology or motif search and that reliable protein-coding genes are missing. Therefore, we developed a protocol (Gene Trek in Prokaryote Space, GTPS) for finding possible protein-coding genes in bacterial genomes. GTPS assigns a degree of reliability to predicted protein-coding genes. We first systematically applied the protocol to the complete genomes of all 123 bacterial species and strains that were publicly available as of July 2003, and then to those of 183 species and strains available as of September 2004. We found a number of incorrect genes and several new ones in the genome data in question. We also found a way to estimate the total number of orthologous genes in the bacterial world.

Bacteria↗

Genome Information Broker for Viruses (GIB-V): database for comparative analysis of virus genomes.

Genome Information Broker for Viruses (GIB-V) is a comprehensive virus genome/segment database. We extracted 18 418 complete virus genomes/segments from the International Nucleotide Sequence Database Collaboration (INSDC, http://www.insdc.org/) by DNA Data Bank of Japan (DDBJ), EMBL and GenBank and stored them in our system. The list of registered viruses is arranged hierarchically according to taxonomy. Keyword searches can be performed for genome/segment data or biological features of any virus stored in GIB-V. GIB-V is equipped with a BLAST search function, and search results are displayed graphically or in list form. Moreover, the BLAST results can be used online with the ClustalW feature of the DDBJ. All available virus genome/segment data can be collected by the GIB-V download function. GIB-V can be accessed at no charge at http://gib-v.genes.nig.ac.jp/.

Databases, Nucleic Acid↗

G-InforBIO: integrated system for microbial genomics.

BACKGROUND: Genome databases contain diverse kinds of information, including gene annotations and nucleotide and amino acid sequences. It is not easy to integrate such information for genomic study. There are few tools for integrated analyses of genomic data, therefore, we developed software that enables users to handle, manipulate, and analyze genome data with a variety of sequence analysis programs. RESULTS: The G-InforBIO system is a novel tool for genome data management and sequence analysis. The system can import genome data encoded as eXtensible Markup Language documents as formatted text documents, including annotations and sequences, from DNA Data Bank of Japan and GenBank encoded as flat files. The genome database is constructed automatically after importing, and the database can be exported as documents formatted with eXtensible Markup Language or tab-deliminated text. Users can retrieve data from the database by keyword searches, edit annotation data of genes, and process data with G-InforBIO. In addition, information in the G-InforBIO database can be analyzed seamlessly with nine different software programs, including programs for clustering and homology analyses. CONCLUSION: The G-InforBIO system simplifies genome analyses by integrating several available software programs to allow efficient handling and manipulation of genome data. G-InforBIO is freely available from the download site.

Algorithms↗

Investigation of protein functions through data-mining on integrated human transcriptome database, H-Invitational database (H-InvDB).

H-Invitational Database (H-InvDB; ) is a human transcriptome database, containing integrative annotation of 41,118 full-length cDNA clones originated from 21,037 loci. H-InvDB is a product of the H-Invitational project, an international collaboration to systematically and functionally validate human genes by analysis of a unique set of high quality full-length cDNA clones using automatic annotation and human curation under unified criteria. Here, 19,574 proteins encoded by these cDNAs were classified into 11,709 function-known and 7865 function-unknown hypothetical proteins by similarity with protein databases and motif prediction (InterProScan). The proportion of "hypothetical proteins" in H-InvDB was as high as 40.4%. In this study, we thus conducted data-mining in H-InvDB with the aim of assigning advanced functional annotations to those hypothetical proteins. First, by data-mining in the H-InvDB version of GTOP, we identified 337 SCOP domains within 7865 H-Inv hypothetical proteins. Second, by data-mining of predicted subcellular localization by SOSUI and TMHMM in H-InvDB, we found 1032 transmembrane proteins within H-Inv hypothetical proteins. These results clearly demonstrate that structural prediction is effective for functional annotation of proteins with unknown functions. All the data in H-InvDB are shown in two main views, the cDNA view and the Locus view, and five auxiliary databases with web-based viewers; DiseaseInfo Viewer, H-ANGEL, Clustering Viewer, G-integra and TOPO Viewer; the data also are provided as flat files and XML files. The data consists of descriptions of their gene structures, novel alternative splicing isoforms, functional RNAs, functional domains, subcellular localizations, metabolic pathways, predictions of protein 3D structure, mapping of SNPs and microsatellite repeat motifs in relation with orphan diseases, gene expression profiling, and comparisons with mouse full-length cDNAs in the context of molecular evolution. This unique integrative platform for conducting in silico data-mining represents a substantial contribution to resources required for the exploration of human biology and pathology.

Amino Acid Sequence↗

Usefulness of an estimation of physiologic ability and surgical stress (E-PASS) scoring system to predict the incidence of postoperative complications in gastrointestinal surgery.

Surgical intervention induces various host responses to maintain homeostasis. When postoperative inflammation is intense and persists for a long time, postoperative complications may occur, sometimes developing into multiple organ failure. Therefore, it is very important to assess surgical stress and predict the risk of morbidity and mortality. Using a new scoring system, an estimation of physiologic ability and surgical stress (E-PASS) scoring system, surgical stress following gastrointestinal surgery was evaluated to assess the feasibility of this scoring system. This system comprises a preoperative risk score (PRS), a surgical stress score (SSS), and a comprehensive risk score (CRS) that is calculated from both the PRS and the SSS. The relationship of the E-PASS score to the incidence of morbidity and mortality was examined. The relationship between the E-PASS score and a sequential organ failure (SOFA) score was also evaluated. The CRS had a significant positive correlation between not only the incidence but also the grade of postoperative complications. Total maximum SOFA score in patients with a CRS of more than 1 was significantly higher than that in patients with a CRS of less than 1. In conclusion, the E-PASS scoring system will be useful for predicting and recognizing the risk of postoperative complications. This scoring system is brief, simple, and reproducible and can be useful in all types of hospitals.

Aged↗

Integrative annotation of 21,037 human genes validated by full-length cDNA clones.

The human genome sequence defines our inherent biological potential; the realization of the biology encoded therein requires knowledge of the function of each gene. Currently, our knowledge in this area is still limited. Several lines of investigation have been used to elucidate the structure and function of the genes in the human genome. Even so, gene prediction remains a difficult task, as the varieties of transcripts of a gene may vary to a great extent. We thus performed an exhaustive integrative characterization of 41,118 full-length cDNAs that capture the gene transcripts as complete functional cassettes, providing an unequivocal report of structural and functional diversity at the gene level. Our international collaboration has validated 21,037 human gene candidates by analysis of high-quality full-length cDNA clones through curation using unified criteria. This led to the identification of 5,155 new gene candidates. It also manifested the most reliable way to control the quality of the cDNA clones. We have developed a human gene database, called the H-Invitational Database (H-InvDB; http://www.h-invitational.jp/). It provides the following: integrative annotation of human genes, description of gene structures, details of novel alternative splicing isoforms, non-protein-coding RNAs, functional domains, subcellular localizations, metabolic pathways, predictions of protein three-dimensional structure, mapping of known single nucleotide polymorphisms (SNPs), identification of polymorphic microsatellite repeats within human genes, and comparative results with mouse full-length cDNAs. The H-InvDB analysis has shown that up to 4% of the human genome sequence (National Center for Biotechnology Information build 34 assembly) may contain misassembled or missing regions. We found that 6.5% of the human gene candidates (1,377 loci) did not have a good protein-coding open reading frame, of which 296 loci are strong candidates for non-protein-coding RNA genes. In addition, among 72,027 uniquely mapped SNPs and insertions/deletions localized within human genes, 13,215 nonsynonymous SNPs, 315 nonsense SNPs, and 452 indels occurred in coding regions. Together with 25 polymorphic microsatellite repeats present in coding regions, they may alter protein structure, causing phenotypic effects or resulting in disease. The H-InvDB platform represents a substantial contribution to resources needed for the exploration of human biology and pathology.

Alternative Splicing↗

Sleep properties of CS mice with spontaneous rhythm splitting in constant darkness.

In mice, genetic differences between inbred strains have been shown for several parameters of sleep and circadian activity rhythms. Our previous studies have demonstrated that CS mice have three remarkable characteristics in the circadian rhythm of locomotor activity: (1) high activity both during the day and night, (2) unstable freerunning period and (3) spontaneous rhythm splitting. In order to characterize sleep properties of CS mice, we compared circadian sleep patterns of CS with those of C57BL/6J and C3H/He mice which have normal circadian activity rhythms. Although C57BL/6J and C3H/He mice exhibited clear daily sleep-wake rhythms in the amount of each sleep parameter (Awake, SWS, PS), CS mice did not show clear rhythms in these parameters. The differences were particularly conspicuous in PS; no apparent day-night differences in the amount of PS, PS counts and PS interval (the interval between successive PS episodes) in CS mice. In addition, the ratio of PS to total sleep time was significantly larger in CS mice than other strains. Of these parameters, the most considerable was PS latency which was extremely short and direct transition from Awake to PS without appearance of SWS frequently occurred in these mice. These results indicate that CS mice may be useful for the understanding of sleep mechanisms and its dysfunction.

Animals↗

AHMII: Agent to Help Microbial Information Integration.

Reproducibility is the key to science. Therefore, the fidelity of organisms, particularly type strains, used in molecular biology must be authenticated before embarking on a series of experiments. In the case of microbes the authentic strain can be obtained from a culture collection. However, tracking down a culture collection that possesses the strain can be an arduous task. With this in mind we have developed a one-stop search engine for bacteria, fungi, yeasts and cell lines that indicates which collections carry the strain of interest. The search agent is named Agent to Help Microbial Information Integration (AHMII) and the URL address is http://www.wdcm.org/AHMII/ahmii.html.

Bacteria↗

[Thymidine phosphorylase is correlated with DPD in colon cancer].

Analysis of thymidine phosphorylase (TP), thymidylate synthase (TS) and dihydropyrimidine dehydrogenase (DPD) or their mRNA are now being applied before-the start of chemotherapy to predict the therapeutic efficacy. Although these key enzymes were reported to be basically independent, we found the differences in TS between cancer and adjacent mucosa was reversely correlated with the difference in DPD. We found a significant relationship between TP and DPD in 52 patients with colon cancer. TP and DPD were measured by EIA. Statistical analysis was made non-parametrically using Statview 5.0. TP was significantly higher in cancer (78 +/- 58 U/mg protein) than in the adjacent mucosa (43 +/- 24 U/mg protein). Conversely, DPD was significantly lower in cancer(43 +/- 32 U/mg protein) than in the adjacent mucosa (55 +/- 18 U/mg protein). The amount of TP and DPD in cancer were not correlated with the clinicopathological parameters. TP was significantly (r = 0.70) correlated with DPD in cancer but not in adjacent mucosa. The difference in TP between cancer and adjacent mucosa was significantly (r = 0.69) correlated with the difference in DPD as well. In the colon cancer with low TP, DPD in cancer is lower than in the adjacent mucosa, however, the more TP in cancer increased, the higher the DPD in cancer increased over that in the adjacent mucosa. Modulation of DPD as well as TP may be necessary when high levels of TP or DPD are measured in the cancer tissue. The understanding of the basic relationship among these key enzymes will improve the 5-FU-based chemotherapeutic prediction.

Adenocarcinoma↗

Genome Information Broker (GIB): data retrieval and comparative analysis system for completed microbial genomes and more.

Genome Information Broker (GIB) is a powerful tool for the study of comparative genomics. GIB allows users to retrieve and display partial and/or whole genome sequences together with the relevant biological annotation. GIB has accumulated all the completed microbial genome and has recently been expanded to include Arabidopsis thaliana genome data from DDBJ/EMBL/GenBank. In the near future, hundreds of genome sequences will be determined. In order to handle such huge data, we have enhanced the GIB architecture by using XML, CORBA and distributed RDBs. We introduce the new GIB here. GIB is freely accessible at http://gib.genes.nig.ac.jp/.

Arabidopsis↗

[Dihydropyrimidine dehydrogenase and thymidylate synthase in colon carcinoma].

Dihydropyrimidine dehydrogenase (DPD) and thymidylate synthase (TS) in cancer are considered to play key roles in the sensitivity to 5-FU-based chemotherapy. We measured DPD activities and TS content in cancer and normal mucosa obtained from 59 patients with colorectal carcinomas and examined their relationship and clinicipathological relevance. DPD activity was significantly decreased in cancer compared to that in adjacent mucosa, irrespective of the clinicopathological parameters (p < 0.0001), while TS content was significantly increased in cancer (p < 0.0001). DPD activity in cancer correlated with that of the normal mucosa (r = 0.57, p < 0.001), but no correlation was found between TS content of normal mucosa and cancer. The DPD activity difference between cancer and normal mucosa was significantly correlated with difference in TS content (r = 0.70, p < 0.0001). These results suggest that the reduction of DPD activity is associated with the elevation of TS content, which may be connected with the development of 5-FU resistance and the effectiveness of biochemical modulation through the stabilization of TS inhibition with folic acid in colon carcinoma.

Adult↗