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Motoo Matsuda

Publications and source records attributed to Motoo Matsuda.

At least 19 recordsLinked to original sources

Genetic heterogeneity of urease gene loci in urease-positive thermophilic Campylobacter (UPTC).

Degenerate PCR primers in silico based on the two urease structural genes, ureA and ureB, were designed for urease-positive thermophilic Campylobacter (UPTC). Resultant PCR amplification employing these primers generated an amplicon of approximately 2kb, which was cloned and sequenced in UPTC (n=12) isolated from various parts of Europe and Japan. Overall, sequence similarities were shown to be 96.7 to 99.9%. Following sequence alignment analysis, the approximate 1.96kb regions were deduced to consist of parts of ureA (about 570bps) and ureB (about 1390bps) with an overlapping region between the ureA and ureB gene loci. Although a total of 144 heterogeneous sites of all substitutions were located throughout this region, the substitution ratio was higher in the ureA region (1/Omega10bases) than in the ureB region (1/Omega15bases). A resulting dendrogram was constructed, which was based on the nucleotide sequence data of 12 UPTC isolates and demonstrated that the UPTC were genetically variable. They formed a major cluster with Helicobacter, separate from the other urease-producing bacteria examined, suggesting a shared ancestry between UPTC and Helicobacter.

Animals↗

The epidemiology of antibiotic resistance in Campylobacter.

Antibiotic resistance, particularly with the fluoroquinolones and macrolide antibiotics, has now emerged globally with thermophilic campylobacters, including Campylobacter jejuni and C. coli, giving rise to concerns about how these organisms have acquired such resistance characteristics, as well as consequences for human and animal treatment. This review examines (i) the clinical epidemiology of antibiotic resistance in human and animal thermophilic campylobacters, (ii) an update on resistance rates globally, (iii) surveillance of antimicrobial resistance in campylobacters originating from animals, particularly poultry, (iv) the role of the environment in the acquisition and transmission of antibiotic-resistant campylobacters, as well as (v) issues of biocide resistance in campylobacters.

Animals↗

A newly constructed primer pair for the PCR amplification, cloning and sequencing of the flagellin (flaA) gene from isolatesof urease-negative Campylobacter lari.

A newly constructed primer pair (lari-Af/lari-Ar) designed to generate a product of the flagellin (flaA) gene for urease-negative Campylobacter lari produced a PCR amplicon of about 1700 bp for 16 isolates from 7 seagulls, 5 humans, 3 food animals and one mussel in Japan and Northern Ireland. Nucleotide sequencing and alignments of the flaA amplicons from these isolates demonstrated that the deduced amino acid sequences of the possible open reading frame were 564-572 amino acid residues in length with calculated molecular weights of 58,804 to 59,463. The deduced amino acid sequence similarity analysis strongly suggested that the ORF of the flaA from the 16 isolates showed 70-75% sequence similarities to those of Campylobacter jejuni isolates. The approximate Mr of the flagellin purified from some of the isolates of urease-negative C. lari was estimated to range from 59.6 to 61.8 kDa. Thus, flagellin from the isolates of urease-negative C. lari was shown for the first time to have a molecular size similar to those of C. jejuni and Campylobacter coli isolates, but to be different from the shorter flaA and smaller flagellin of urease-positive thermophilic Campylobacter (UPTC) isolates. Flagellins from C. lari spp., consisting of the two representative taxa of urease-negative C. lari and UPTC, thus show genotypic and phenotypic diversity.

Amino Acid Sequence↗

Molecular cloning, nucleotide sequencing and characterization of the flagellin gene from isolates of urease-positive thermophilic Campylobacter.

A primer pair which was expected to generate an amplicon of the estimated size (approximately 1700 base pair (bp)) of the flaA gene for Campylobacter jejuni amplified products of approximately 1450 bp for 33 of the 44 isolates of urease-positive thermophilic Campylobacter (UPTC). The primer pair, however, failed to amplify fragments for 11 isolates of UPTC, for all of the 12 isolates of urease-negative C. lari and for one isolate of C. coli. Nevertheless, it successfully amplified fragments of approximately 1700 bp for five isolates of C. jejuni and for nine isolates of C. coli. Thus, the fragments of the flaA gene of UPTC were shorter than those of C. jejuni and C. coli. After PCR amplification and nucleotide sequencing of the flaA genes from five UPTC NCTC isolates, the putative open reading frames (ORFs) were found to range from 1461 to 1479 bp. The amino acid and nucleotide sequence alignments demonstrated that the PCR clones contained the flaA gene; however, our data indicated that this locus was markedly shorter in the UPTC organisms examined, as they were approximately 85 amino acid residues shorter, mainly corresponding to approximate residue numbers 390-470 of the large variable region of C. jejuni 81116. Heterogeneity was indicated in the molecular mass of the flagellin purified from the isolates examined. Flagellin of UPTC was demonstrated to be genotypically and phenotypically smaller than those of C. jejuni.

Amino Acid Sequence↗

Recent advances in molecular epidemiology and detection of Taylorella equigenitalis associated with contagious equine metritis (CEM).

In the present review article, recent molecular advances relating to studies with Taylorella equigenitalis, as well as the recently described second species of the genus Taylorella, namely Taylorella asinigenitalis, have been described. Molecular genotyping of T. equigenitalis strains by pulsed-field gel electrophoresis (PFGE) after digestion with the suitable restriction enzyme(s) enabled the effective discrimination of strains, thus allowing the examination of the scientific mechanism(s) for its occurrence and transmission of contagious equine metritis (CEM). Alternatively, polymerase chain reaction (PCR) amplification and nucleotide sequencing of the 16S ribosomal DNA sequence and/or the other species specific sequence(s) as targets were confirmed to be effective for identification of T. equigenitalis. These new analytical methods at the genomic DNA level also enabled the discrimination of the newly discovered donkey-related T. asinigenitalis from T. equigenitalis, and moreover, the performance of phylogenetic analysis of genus Taylorella organisms with other closely related genera. Furthermore, detailed analysis of the genes responsible for CEM within the T. equigenitalis genome would be useful to help elucidate the pathogenic virulence and transmission mechanisms associated with the important equine pathogen associated with CEM.

Animals↗

Major depression and heat shock protein 70-1 gene.

BACKGROUND: Heat shock protein (HSP) expression can be induced by any stress such as with adrenocorticotropic hormones and catecholamines. It has been reported that patients with major depression have a 162-base deletion in the 5'-flanking region of heat shock protein 70 (HSP70)-1 gene mRNA. METHODS: To detect the HSP70-1 gene mRNA, total RNA was isolated and amplified by RT-PCR, and the sequence was confirmed in all five patients by DNA direct sequencing analysis. RESULTS: RT-PCR produced was no deletions of 162 bp in the human heat shock protein 70-1 gene in any of the patients with major depression or the nine controls. CONCLUSION: This finding is inconsistent with previous reports. We suggest that the 162-base deletion in the 5'-flanking region of the HSP70-1 gene mRNA is not associated with major depression. Further studies are required to determine the amounts of HSP70 and its mRNA in stress disorders such as major depression.

Base Sequence↗

Phenotypic and genotypic relationship between Campylobacter spp isolated from humans and chickens in Northern Ireland--a comparison of three phenotyping and two genotyping schemes.

Human campylobacteriosis is currently the most common cause of acute bacterial gastroenteritis on the island of Ireland, accounting for over 3,000 laboratory reports per year, where circa 2,000 reports originate from the Republic of Ireland and circa 1,000 reports from Northern Ireland. Elsewhere, consumption of contaminated poultry has been associated with the zoonotic transmission of disease, therefore it was the aim of this study to examine the phenotypic and genotypic relatedness of campylobacters isolated from chickens and humans locally. Sixty isolates were subtyped using phenotyping techniques (biotyping, phage-typing), as well as genotyping techniques (multilocus enzyme electrophoresis (MEE), ribotyping) and the data compared. The frequency of shared phenotypes and genotypes between poultry and humans varied depending on the typing technique employed ranging from 98.2% of human isolates sharing a similar resistotyping (MAST) disc type with poultry strains to 20% similarity with MEE typing. Overall, this small study is the first report on phenotypic and genotypic relatedness between human and poultry campylobacters in Northern Ireland, isolated under controlled conditions. The study demonstrated an association between chicken and human sub-species types, taken from a relatively contained epidemiological environment. Further work is required with larger numbers of isolates coupled with typing schemes, which are able to reliably cluster strains from chicken and humans, which share high degrees of clonality, before local poultry can be conclusively proven to be a significant source of human campylobacteriosis.

Animals↗

[Antimicrobial susceptibility tests and resistant strain of Helicobacter pylori].

The antimicrobial susceptibility test was necessary for the eradication therapy of Helicobacter pylori infections. This is because, clarithromycin resistant strains has became an increasing problem. In this study, we used the antimicrobial susceptibility test which was compare with the agar gradient method, Etest, and broth microdilution method (dry plate) with 4 antimicrobial agents. The results strongly suggested that broth microdilution method was the best method in order to test the antimicrobial susceptibility of H. pylori. On the other hand, 393 H. pylori stains isolated during 1994-1998 from clinical patients were tested for antimicrobial susceptibility test to amoxicillin, clarithromycin, metronidazole, and minomycin. There were no resistant strains to amoxicillin and minomycin. But clarithromycin and Metronidazole resistant strains were recognized in 85 (22.0%) and 36 (21.7%) strains.

Amoxicillin↗

Characterization of urease-positive thermophilic Campylobacter subspecies by multilocus enzyme electrophoresis typing.

Thirty-one urease-positive thermophilic Campylobacter (UPTC) isolates, including three reference strains (NCTC12892, NCTC12895 and NCTC12896), and three Campylobacter lari isolates, which were isolated from several countries and sources, were compared genotypically by using multilocus enzyme electrophoresis (MLEE). We examined allelic variation around seven enzyme loci, including the adenylate kinase, alkaline phosphatase, catalase, fumarase, malic enzyme, malate dehydrogenase, and L-phenylalanyl-L-leucine peptidase loci. MLEE typing revealed the presence of 23 different electrophoretic types (ETs) among the 31 UPTC isolates, and 14 isolates shared six electrophoretic profiles. Three different ETs were identified for the three C. lari isolates examined, and no ETs were shared by UPTC and C. lari isolates. Quantitative analyses were subsequently performed by using allelic variation data, and the results demonstrated that the mean genetic diversity was 0.655. In conclusion, MLEE demonstrated that the UPTC isolates examined are genetically hypervariable and form a cluster separate from the C. lari cluster.

Bacterial Typing Techniques↗

First isolation of urease-positive thermophilic Campylobacter (UPTC) from crows (Corvus levaillantii) in Japan.

Two strains of urease-positive thermophilic Campylobacter (UPTC), designated YC98-1 and YC98-2, were identified by biochemical characterization after isolation from the intestinal contents of crows around Yokohama City, Japan, in 1998. The biochemical characteristics of these strains were identical to those of strains described previously. Pulsed-field gel electrophoresis (PFGE) after separate digestion with ApaI, SalI, and SmaI of the genomic DNA from the two strains indicated that respective PFGE profiles were distinctly different and distinguishable from each other. This is the first report of the isolation of UPTC from crows (Corvus levaillantii).

Animals↗

Occurrence of Campylobacter spp. and Cryptosporidium spp. in seagulls (Larus spp.).

An investigation was carried out into the prevalence of thermophilic Campylobacter subspecies (spp.) and Cryptosporidium spp. in fresh fecal specimens collected from members of the gull family (Larus spp.) from three coastal locations of Northern Ireland. A total of 205 fresh fecal specimens were collected from gulls, of which 28 of 205 (13.7%) were positive for Campylobacter spp. and none of 205 for Cryptosporidium spp. Of these campylobacters, 21 of 28 (75%) isolates obtained belonged to the urease-positive thermophilic Campylobacter (UPTC) taxon, followed by five of 28 (17.9%) Campylobacter lari and 2/28 (7.1%) Campylobacter jejuni. It is significant that seagulls are the sole warm-blooded animal host of this bacterial taxon in Northern Ireland. It is proposed that physiological adaptation to starvation by gulls may lead to increased concentrations of urea through energy production from protein, yielding increased levels of urea for metabolism by UPTC organisms. In general, the possibility exists that environmental contamination of surface waters with campylobacters might be mediated by wild birds (such as gulls), where such waters are used for recreational purposes or where such waters are consumed untreated, might represent a risk to public health.

Animals↗

[Molecular epidemiological investigation of vero toxin-producing Escherichia coli (VTEC) isolated from diarrhea patients and dairy cattle].

To elucidate the source and route of VTEC infection, we performed pulse field gel electrophoresis (PFGE) an 50 isolates from human diarrhea typed as serotypes O157, O111, and O26, which were very frequently isolated from patients with VTEC infection between 1986 and 1997, and 32 isolates from dairy cattle, a total of 82 isolates. The isolates were genetically analyzed based on the electrophoresis patterns of DNA, and a phylogenetic tree was prepared. The isolates were classified based on similarity > or = 89. The following results of the molecular epidemiological investigation were obtained. 1) Based on the electrophoresis patterns of DNA obtained by PFGE, 34 of the 49 O157 isolates (69.4%) were divided into groups 1-9, 15 of the 18 O111 isolates (83.3%) were divided into groups 1-3, and 12 of the 15 O26 isolates (80%) were divided into groups 1-3. Of the grouped isolates, group 8 of O157, groups 2 and 3 of O111, and group 3 of O26 included isolates from human diarrhea and dairy cattle, but the other groups included isolates from only one of the two sources. 2) With regard to regional investigation, groups 6 and 9 of O157 included human diarrhea-derived isolates from Yokohama and Ehime, and group 8 included a human diarrhea-derived isolate from Yokohama and a dairy cattle-derived isolate from Tokushima. Group 3 of O111 included a human diarrhea-derived isolate from Ehime and a dairy cattle-derived isolate from Hokkaido. Group 3 of O26 included human diarrhea-derived isolate from Ehime and dairy cattle-derived isolate from Sagamihara and Hokkaido. Since the above findings showed that although the frequency was low, isolates from human diarrhea and dairy cattle were included in the same groups, it was demonstrated that dairy cattle are closely related to the human infectious disease of the intestinal tract as a source of infection. However, classification using the PFGE method is difficult due to diversity of the electrophoresis pattern of DNA. It is necessary to investigate the classification by a combination of the PFGE method with phage typing, ribotyping, and RAPD-PCR, and to investigate more numbers of patient-derived and animal-derived isolates.

Animals↗