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Biomedical subjects

Noboru Nakasone

Publications and source records attributed to Noboru Nakasone.

16 recordsLinked to original sources

Development of a rapid immunochromatographic test to identify enteropathogenic and enterohemorrhagic Escherichia coli by detecting EspB.

A rapid immunochromatographic (IC) test to identify enteropathogenic and enterohemorrhagic Escherichia coli (EPEC and EHEC, respectively) was developed to detect EspB secreted by the type III secretion system of these bacteria. The detection limit of the test system was 4 ng/mL. All 33 of 34 strains harboring the eae gene encoding intimin were positive in the IC test, and all 40 of the eae-negative strains were negative. The results showed that the sensitivity was 96.9% and specificity was 100%. The IC test also detected EspB in a stool sample artificially supplemented with 60 ng EspB/mL. The IC test for the detection of EspB may be a practical method to define EPEC or EHEC both in clinical laboratories and the field.

Adhesins, Bacterial↗

The relationship between O-antigens and pathogenic genes of diarrhea-associated Escherichia coli.

To evaluate the serogrouping-based diagnosis of diarrheagenic Escherichia coli, a total of 1,130 strains of E. coli isolated in several countries were studied. The strains were regarded as enterovirulent on the basis of their O-antigens determined using a commercially available kit containing 43 antisera, and the presence of diarrhea-associated genes (eae, stx, aggR, est, elt, ipaH) was evaluated by PCR. Two hundred sixty-three strains of 1,130 (23.3%) were identified as diarrheagenic based on the presence of at least one pathogenic gene. The probability that E. coli identified as diarrheagenic on the basis of serogrouping actually possessed some pathogenic gene was highest for serogroup O119 (78.4%); other serogroups with a positive rate for pathogenic genes higher than 60% were O111 and O126. No target genes were detected among the strains belonging to serogroups O1, O29, O112ac, O143, O158 and O168. Our results suggest that, in practice, serogrouping is useful for the identification of diarrheagenic E. coli in a very limited number of serogroups.

Antigens, Bacterial↗

Purification and characterization of a novel metalloprotease isolated from Aeromonas caviae.

A novel protease produced by Aeromonas caviae was purified and characterized. The molecular weight of the protease (AP19) was estimated as 19 kDa on SDS-polyacrylamide gel electrophoresis. The protease activity was not inhibited completely by heating at 100 degrees C for 15 min. The proteolytic activities were inhibited by metalloprotease inhibitor. The N-terminal amino acid sequence of AP19 was VTASVSFSGRCTN. AP19 did not activate Aeromonas proaerolysin, and did not show fluid accumulation in the rabbit intestinal loop test. A high concentration of the protease showed cytotoxic activity against Vero cells.

Aeromonas↗

Aerolysin is activated by metalloprotease in Aeromonas veronii biovar sobria.

Aeromonas veronii is an opportunistic human pathogen that causes diarrhoea and extraintestinal infections, such as wound infection and septicaemia. An A. veronii protease (AVP) from a biovar sobria strain, AeG1, was partially purified and characterized. Mature AVP hydrolysed casein but not elastin, and protease activity was inhibited by metalloprotease inhibitors. Nucleotide sequence analysis showed that AVP belongs to the thermolysin family of proteases. An AVP-deficient mutant was constructed to investigate the role of AVP in aerolysin activation. Western blot analysis using anti-aerolysin antisera revealed that proaerolysin (52 kDa) in the AVP-deficient mutant was not completely activated to mature aerolysin (47 kDa) as seen in the wild-type strain. The AVP-deficient mutant showed lower cytotoxic and haemolytic activities than wild type. AVP and proaerolysin had no haemolytic activity; however, activity appeared after incubating both proteins. Taken together, these results suggested that AVP plays an indirect role in virulence through activating aerolysin, which is an essential step for cytotoxic activity.

Aeromonas↗

Antibiotic resistance conferred by a class I integron and SXT constin in Vibrio cholerae O1 strains isolated in Laos.

Changes in the drug susceptibility pattern were observed in Vibrio cholerae O1 isolated in the Lao People's Democratic Republic during 1993 to 2000. In this study, 50 V. cholerae O1 strains were selected during this period for studying the presence of class I integron and SXT constin. Twenty-four streptomycin-resistant strains out of 26 isolated before 1997 contained a class I integron harboring the aadA1 gene cassette. Twenty-four strains isolated after 1997 contained an SXT constin (a large conjugative element). Twenty of the strains were resistant to chloramphenicol, tetracycline, streptomycin, and trimethoprim-sulfamethoxazole, while four strains were susceptible to the antibiotic tested. The resistance genes included in the SXT constins were floR, tetA, strAB, and sulII, which encode resistance to chloramphenicol, tetracycline, streptomycin, and sulfamethoxazole, respectively. The antibiotic resistance gene cluster was found to be deleted in the four susceptible strains. SXT(LAOS) did not contain dfrA1 or dfr18, which confer resistance to trimethoprim in SXT(ET) and SXT(MO10), respectively. A hot spot region of SXT(LAOS) was sequenced, and we identified two novel open reading frames showing homology to sO24 (exonuclease) and sO23 (helicase) of the genomic island associated with the multidrug resistance region of Salmonella enterica serovar Typhimurium DT104. Analysis of SXT(LAOS) showed that there is a continuous flux of genes among V. cholerae SXT constins which should be carefully monitored.

Bacterial Proteins↗

Comparative chracterization of Staphylococcus aureus isolates from throats and noses of healthy volunteers.

Staphylococcus aureus isolates in 2001 from the nose and the throat of an adult population were characterized for their incidence and type. The incidence was 51%, present in 80 out of 157 individuals examined, consisting of 34 nasal carriers, 24 throat carriers, and 22 who carried the isolates in both the nose and throat. Among these isolates, 2 and 5 from the nose and the throat, respectively, were identified as methicillin-resistant S. aureus. S. aureus from the nose and throat of the same individuals were characterized for identification. Examination of their phenotypes revealed that in 11 individuals the clone of S. aureus in the throat was different from the nasal clone. These results suggested that staphylococcal flora in the nose and the throat were independently formed, and that attention should also be directed to the carriers of S. aureus in the throat for the control of nosocomial infection.

Adult↗

Molecular analysis of VcfQ protein involved in Vibrio cholerae type IV pilus biogenesis.

The nucleotide sequence of an ORF (vcfQ) within the type IV pilus gene cluster of Vibrio cholerae O34 strain NAGV14 was determined, thereby completing the sequence analysis of the structural operon. The vcfQ gene showed homology to the mshQ gene of the mannose-sensitive haemagglutinin pilus gene cluster. The vcfQ was 651 bp larger than mshQ, and the G+C content of the extra 651 bp portion (35.6 mol%) was lower than that of the overall vcfQ gene (42.5 mol%). Except for the first 270 aa residues, the deduced amino acid sequence of VcfQ showed high homology to the MshQ protein. There was immunological cross-reaction between VcfQ and MshQ by Western blotting. Cell fractionation studies showed that VcfQ is located in both the inner and the outer membranes. Mutational analysis showed that vcfQ-deficient mutant expressed detectable levels of major pilin (VcfA), but failed to assemble them into pili, indicating that VcfQ is essential for pilus assembly. Colony-blotting analyses showed that the N-terminal region of vcfQ is variable in V. cholerae strains.

Amino Acid Sequence↗

Multiplex PCR assay for identification of human diarrheagenic Escherichia coli.

A multiplex PCR assay for the identification of human diarrheagenic Escherichia coli was developed. The targets selected for each category were eae for enteropathogenic E. coli, stx for Shiga toxin-producing E. coli, elt and est for enterotoxigenic E. coli, ipaH for enteroinvasive E. coli, and aggR for enteroaggregative E. coli. This assay allowed the categorization of a diarrheagenic E. coli strain in a single reaction tube.

Diarrhea↗

The incidence of Escherichia coli having pathogenic genes for diarrhea: a study in the People's Democratic Republic of Lao.

The incidence of Escherichia coli having pathogenic genes for diarrhea was studied in Laos in 2002. A total of 525 E. coli strains from 278 patients (basically, two E. coli isolates from each patient) were examined by PCR to detect the known pathogenic genes (stx, eae, elt, est, ipaH, and aggR). These genes were detected in 23 strains from 16 patients (16/278: 5.8%). In 10 cases of the 16, one of the two isolates from each individual was negative for the gene, and in the other six cases, both isolates had the gene (same gene in four cases). E. coli having eae but no stx (enteropathogenic E. coli [EPEC]) was found in two cases out of 278 (0.7%). Nevertheless, Class I classical EPEC (serogroup-based) was found in 77 cases (28%). Enterotoxigenic E. coli, enteroaggregative E. coli, and enterohemorrhagic E. coli were found in 9, 4, and 1 cases, respectively. Enteroinvasive E. coli was not detected. This study suggested that the incidence of diarrhea due to E. coli is not as high as has been previously thought.

Adolescent↗

Minor pilin subunits are conserved in Vibrio cholerae type IV pili.

The nucleotide sequences of five open reading frames within the Vibrio cholerae NAGV14 type IV pilus gene cluster were determined. The genes showed high homology to the mannose-sensitive hemagglutinin (MSHA) pilus genes mshB, mshC, mshD, mshO and mshP. PCR analysis showed that a MSHA-like gene cluster is highly conserved among different V. cholerae strains, with the exception of the previously reported major pilin subunit. Recombinant MshB and MshO proteins were purified and specific antiserum was raised to each of them. Western blotting analyses showed that these antisera reacted with purified NAGV14 and MSHA pili. The results suggested that MshB and MshO are minor components of the pilus fiber. Although there was no cross-reaction between the major pilin subunits of NAGV14 and MSHA pili, minor components seemed to be highly homologous and immunologically cross-reactive.

Antigens, Bacterial↗

Enteroaggregative Escherichia coli: incidence in Japan and usefulness of the clump-formation test.

The usefulness of the clump-formation test described by Albert et al. for identifying enteroaggregative Escherichia coli (EAggEC) and the incidence of EAggEC in Japan were studied. One hundred and seventy strains of E. coli agglutinated with enteropathogenic E. coli diagnostic antisera were collected from a variety of districts in Japan. All isolates were from diarrheal stools. EAggEC was identified on the basis of the presence of the aggR gene accompanied by aggregative adhesion to HEp-2 cells. After 24 strains carrying eaeA, elt, est, stx-1, stx-2, or ipaH genes were eliminated, the remaining 145 strains were examined for adhesion to Hep-2 cells, the presence of the aggRgene, and clump formation on the surface of Muller-Hinton broth. aggR was detected in 10 strains, and 9 of them displayed aggregative adhesion to HEp-2 cells. Seven strains produced marked clumps and 22 showed moderate clump formation. The sensitivity and specificity of the clump-formation test for detecting EAggEC were each about 90%, and they varied slightly depending on the stringency of evaluation for the degree of clump formation. From these results, we conclude that the incidence of EAggEC cannot be ignored as a possible cause of diarrheal disease in Japan, and we strongly recommend the clump-formation test for detecting EAggEC.

Bacterial Adhesion↗

Characterization of the outermembrane proteins of Vibrio cholerae expressed in in vivo culture.

Two outer membrane proteins (Omps) of Vibrio cholerae O1, expressed in the intestine (in vivo) but not in culture media (in vitro), were investigated. The molecular masses of those proteins were 116 kDa and 15 kDa, and they were not associated with iron-regulated proteins. Convalescent cholera patients' sera reacted with the 15 kDa protein but not with the 116 kDa protein. The N-terminal amino acid sequence of the 15 kDa protein was homologous to V. cholerae OmpT. Anti-serum to the 15 kDa protein caused agglutination of the organisms grown in the intestine, but not the organisms in in vitro culture. The anti-serum was bactericidal, but it did not inhibit the adhesion of the organisms to the intestine and HEp-2 cells. These findings suggest the possibility that the 15 kDa protein could be involved in post-infection immunity.

Amino Acid Sequence↗

Aeromonas trota strains, which agglutinate with Vibrio cholerae O139 Bengal antiserum, possess a serologically distinct fimbrial colonization factor.

Pili of Aeromonas trota strain 1220, which agglutinates with Vibrio cholerae O139 Bengal antiserum, were purified and characterized. The molecular mass of the subunit protein was estimated to be 20 kDa and the pl was 5 center dot 4. The pili were immunologically unrelated to the other Aeromonas pili reported so far. However, the N-terminal amino acid sequence of the subunit pilin was similar to those of the pilins from other Aeromonas pili reported previously. Neither A. trota cells nor pili purified from strain 1220 agglutinated human and rabbit erythrocytes, but both adhered to the rabbit intestine. Bacterial cells pretreated with antipilus antibody (Fab portion) failed to adhere to the rabbit intestine. Moreover, bacteria did not adhere to the rabbit intestine pretreated with the purified pili. This pilus antigen was not detected in V. cholerae O139 Bengal and other Aeromonas spp. These findings suggest that the pilus of the A. trota strain is a novel colonization factor of Aeromonas spp.

Aeromonas↗