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Biomedical subjects

A Okabe

Publications and source records attributed to A Okabe.

At least 19 recordsLinked to original sources

Identification of the gene encoding a mechanosensitive channel MscL homologue in Clostridium perfringens.

The mscL gene, which encodes the protein forming a large-conductance mechanosensitive channel (MscL) in Escherichia coli, has previously been cloned and sequenced by Sukharev et al. [Nature 368 (1994) 265-268]. We found a gene homologous to mscL in Clostridium perfringens which is located just downstream from the collagenase-encoding gene in the opposite direction.

Amino Acid Sequence

A Clostridium perfringens vector for the selection of promoters.

A promoter selection vector for Clostridium perfringens genes was constructed from a C. perfringens-Escherichia coli shuttle vector, pJIR418. The plasmid carries a promoterless chloramphenicol acetyltransferase gene (catP), derived from pIP401, downstream of the multiple cloning sites of pUC18. When a promoter region of the phospholipase C gene was inserted into one of the cloning sites, derivatives of C. perfringens strain 13 carrying the resultant plasmid acquired resistance to chloramphenicol. This plasmid should be useful reporter system for C. perfringens genes.

Base Sequence

Comparison of the virulence of methicillin-resistant and methicillin-sensitive Staphylococcus aureus.

The virulence of methicillin-resistant Staphylococcus aureus (MRSA) was compared with that of methicillin-sensitive S. aureus (MSSA), using 13 MRSA and 7 MSSA strains isolated from clinical specimens. The infectivity and lethality of the two groups were examined as to the inoculum required to infect 50% of guinea pigs (ID50) and to kill 50% of mice (LD50), respectively. The mean ID50 [log10 colony forming units (CFU)] for MRSA strains was 7.1 +/- 0.60 standard deviation, which was 1.5 higher than that for MSSA strains (P < 0.001). The mean LD50 (log10 CFU) for MRSA strains was 9.0 +/- 0.42, being 1.1 higher than that for MSSA strains (P = 0.001). Pretreatment of mice with cyclophosphamide decreased the mean LD50 for MRSA strains more than that for MSSA strains, resulting in the difference in the mean LD50 being insignificant (P = 0.502). These results indicate that MRSA is less virulent than MSSA in normal hosts, but that they are equally virulent in immunocompromised hosts. The growth of MRSA strains was much slower than that of MSSA strains in the lag phase, although their growth rates were almost the same in the exponential growth phase, suggesting that the difference in virulence between them may be at least partly due to such a difference in growth.

Animals

Enterotoxic activity of Klebsiella oxytoca cytotoxin in rabbit intestinal loops.

We examined the enterotoxicity of a Klebsiella oxytoca cytotoxin which is produced by K. oxytoca OK-1, a strain from a patient with antibiotic-associated hemorrhagic colitis. Injection of the cytotoxin into ligated ileal and colonic loops in rabbits caused the accumulation of fluid in the loops. The fluid was bloody in the ileal loops but not in the colonic ones. Histological examination revealed intense mucosal hemorrhage with erosion in the ileum, whereas no microscopic change was noted in the colon. The fluid accumulation was shown to be a dose-dependent response in both ileal and colonic loops. The amounts of the cytotoxin required for maximal fluid accumulation in ileal and colonic loops were 60 and 10 micrograms, respectively. Fluid accumulation was first noticeable in ileal loops 12 h and in colonic ones 5 h after the injection of these doses of the cytotoxin and then proceeded with time. When K. oxytoca OK-1, a cytotoxin-producing strain, was inoculated into the loops at doses of 1 x 10(8) and 5 x 10(9) CFU, similar fluid accumulation was observed. However, inoculation of K. oxytoca ATCC 13182, a non-cytotoxin-producing strain, at the same doses did not cause any change. These results suggest that the cytotoxin-producing strain of K. oxytoca is the causative organism of antibiotic-associated hemorrhagic colitis and that the toxin is the factor responsible for pathogenesis.

Animals

Role of alpha-toxin in Clostridium perfringens infection determined by using recombinants of C. perfringens and Bacillus subtilis.

Clostridium perfringens type A strains which differed in alpha-toxin (phospholipase C [PLC]) productivity were inoculated intraperitoneally or intravenously into mice, and then their 50% mouse lethal doses (LD50) were determined. Strain NCTC 8237 produced ninefold higher PLC activity than strain 13. The mean LD50 for the former was 1 log unit lower than that for the latter. Two isogenic strains were constructed from strain 13: strain 13(pJIR418 alpha) (pJIR418 alpha contains the plc gene), which produced ninefold higher PLC activity than strain 13; and strain 13 PLC-, which showed no PLC productivity at all because of transformation-mediated gene disruption. The mean LD50 for strain 13(pJIR418 alpha) was 1 log unit lower than those for strain 13 PLC- and strain 13. These results indicate that PLC functions as a virulence-determining factor when it is produced in a sufficient amount. Such a difference in LD50 was also observed between Bacillus subtilis with and without the cloned plc gene. Inoculation of B. subtilis PLC+ intravenously into mice caused marked thrombocytopenia and leukocytosis. Mice inoculated with B. subtilis at 2 LD50 died because of circulatory collapse. Histological examination revealed that intravascular coagulation and vascular congestion occurred most prominently in the lungs. These results suggest that PLC plays a key role in the systemic intoxication of clostridial myonecrosis, probably by affecting the functions of platelets and phagocytes.

Animals

Cloning and nucleotide sequence analysis of the colH gene from Clostridium histolyticum encoding a collagenase and a gelatinase.

The colH gene encoding a collagenase was cloned from Clostridium histolyticum JCM 1403. Nucleotide sequencing showed a major open reading frame encoding a 116-kDa protein of 1,021 amino acid residues. The deduced amino acid sequence contains a putative signal sequence and a zinc metalloprotease consensus sequence, HEXXH. A 116-kDa collagenase and a 98-kDa gelatinase were copurified from culture supernatants of C. histolyticum. While the former degraded both native and denatured collagen, the latter degraded only denatured collagen. Peptide mapping with V8 protease showed that all peptide fragments, except a few minor ones, liberated from the two enzymes coincided with each other. Analysis of the N-terminal amino acid sequence of the two enzymes revealed that their first 24 amino acid residues were identical and coincided with those deduced from the nucleotide sequence. These results indicate that the 98-kDa gelatinase is generated from the 116-kDa collagenase by cleaving off the C-terminal region, which could be responsible for binding or increasing the accessibility of the collagenase to native collagen fibers. The role of the C-terminal region in the functional and evolutional aspects of the collagenase was further studied by comparing the amino acid sequence of the C. histolyticum collagenase with those of three homologous enzymes: the collagenases from Clostridium perfringens and Vibrio alginolyticus and Achromobacter lyticus protease I.

Amino Acid Sequence

A possible mechanism for pacemaker-induced T-wave changes.

The genesis and the significance of pacemaker-induced T-wave changes remain unclear. Changes in body surface potential mapping (BSM) were observed and compared with resting thallium-201 myocardial scintigraphy (T1-SC) findings before, during and after ventricular pacing (VP) in 10 patients with various bradyarrhythmias. All studies were performed with the patients taking no medication. In all patients, isoarea QRST maps showed a characteristic abnormal dipolar pattern with positive values distributed over the upper chest and negative values over the lower chest during VP at a physiological rate for 14 days or more. These abnormalities were preserved almost completely after pacing was terminated; and coincided with deep T-wave inversions in leads II, III, aVF and V4-6. In three patients, BSM performed before VP showed normal QRST isoarea maps with positive values distributed over the left lower chest. All patients in whom resting T1-SC was performed during chronic VP showed transient perfusion defects in the posteroinferior (seven cases) or inferolateral (one case) left ventricular wall. In three patients, T1-SC was performed before VP and showed a normal distribution. Both the pacing-induced perfusion defects and the T-wave abnormalities remained unchanged 2 h after ceasing VP, were attenuated 7 days later and disappeared within a month. These findings suggest that chronic ventricular pacing may produce myocardial ischaemia, and that it persists for a certain period after the cessation of pacing, resulting in post-pacing T-wave inversion.

Adult

Biological activities and chemical composition of a cytotoxin of Klebsiella oxytoca.

A low-molecular-mass cytotoxin produced by Klebsiella oxytoca isolated previously from patients with antibiotic-associated haemorrhagic enterocolitis was purified, and its biological and chemical properties were elucidated. The toxin inhibited the syntheses of DNA and RNA by HEp-2 cells dose-dependently, whereas protein synthesis was only slightly inhibited, as measured by the incorporation of radioactive precursors. When synchronously cultured HEp-2 cells were examined in the presence of cytotoxin, inhibition of DNA synthesis occurred promptly within 5 h, but cell-rounding, the earliest visible morphological change, was not observed until 6 h after exposure. The intracellular levels of ATP decreased with an approximately similar time course. These results suggest that cytotoxicity toward HEp-2 cells is primarily due to the inhibitory effect of the cytotoxin on nucleic acid synthesis, possibly on DNA synthesis. Cell rounding and cell death were induced even in the absence of the cytotoxin after incubation with the cytotoxin for 6 h. The cytotoxin was heat-labile, cytotoxic activity decreasing to 50% of the initial level on heating at 70 degrees C for 20 min. Plasmids were extracted from three strains of K. oxytoca producing the cytotoxin and analysed by agarose gel electrophoresis. Two strains possessed plasmids of different sizes, but one strain possessed no plasmid, indicating that the cytotoxin is probably chromosomally encoded. Analysis by NMR and FAB-mass-spectrometry revealed that the molecular mass of the cytotoxin should be 217.1062 Da (exact mass), its molecular formula being C8H15O4N3.

Cytotoxins

Role of the upstream region containing an intrinsic DNA curvature in the negative regulation of the phospholipase C gene of Clostridium perfringens.

The phospholipase C (alpha-toxin) gene (plc) of Clostridium perfringens was cloned into pUC19 and the effects of the upstream regions on expression of the plc gene were examined in Escherichia coli JM109. When the 0.7-kb region just upstream of the putative -35 site of the gene was deleted, production of phospholipase C increased approximately 10-fold. Northern blot hybridization analysis of the plc transcript showed that the upstream region inhibited transcription from the plc promoter. Nucleotide sequencing of this upstream region revealed that there are three periodically repeated (dA)5-6 tracts between positions -66 and -40 of the plc gene. A fragment containing this sequence showed anomalously slow electrophoretic mobility at low temperature, indicating that the region immediately upstream of the plc promoter is a locus of sequence directed DNA-bending. Nested deletions of the upstream region were created from its 5' end by exonuclease III and the effects of deletions on the expression of the plc gene were examined. When the 77-bp fragment containing the two (dA)5-6 tracts were deleted, phospholipase C production increased markedly. These results indicate that the intrinsic DNA curvature upstream of the plc promoter is involved in the negative regulation of the plc gene transcription.

Bacterial Toxins

Adherence to HEp-2 cells and replication in macrophages of Salmonella derby of human origin.

Adherence to a HEp-2 cell monolayer was tested for in four strains of Salmonella derby which were isolated from patients with diarrhea. One strain, SB1, was highly adherent and another strain, SB4, was nonadherent. The other two strains exhibited moderate adherence. Further in vitro study of invasion of HEp-2 cells by S. derby and its replication in murine peritoneal macrophages was carried out using SB1 and SB4. Thin section electron micrographs revealed that SB1 invaded HEp-2 cells but SB4 did not. The number of viable bacteria within macrophages was determined at intervals after inoculation of bacteria. The result indicates that SB1 can replicate in the macrophages but SB4 cannot. Flagella and fimbriae were compared by electron microscopy between SB1 and SB4, and their lipopolysaccharides and outer membrane proteins were also compared with each other by SDS-polyacrylamide gel electrophoresis. The presence of a 41 kDa protein in the outer membranes of SB1 was only the difference detected, suggesting that this protein could be a factor required for adherence of this serovar to epithelial cells.

Animals

An upstream regulatory sequence stimulates expression of the perfringolysin O gene of Clostridium perfringens.

The structural gene for perfringolysin O (pfoA), a thiol-activated hemolysin of Clostridium perfringens, was cloned into Escherichia coli JM109 on a 4.6-kilobase (kb) EcoRI-NdeI fragment which contained the 1.7-kb pfoA gene and an upstream 2.9-kb region. An E. coli strain transformed by this plasmid produced 20-fold more perfringolysin O than a strain containing only the 1.7-kb pfoA gene. The stimulatory effect of the upstream region on in vivo expression of the pfoA gene was further analyzed by using a set of deletion mutants. Stimulation was still observed with a 3.9-kb fragment, but stimulation was not observed with fragments that were 3.6 kb or less long, indicating that the upstream region between 3.9 and 1.7 kb was involved in activation of pfoA gene expression. Nucleotide sequencing showed that this region contained one open reading frame (pfoR) coding for 343 amino acids. The deduced amino acid sequence of pfoR possesses several motifs that are characteristic of DNA-binding proteins. When a region coding for a helix-turn-helix, one of the most important motifs of DNA-binding proteins, was deleted within pfoR, stimulation was completely abolished. These results indicate that pfoR positively controls expression of the pfoA gene.

Amino Acid Sequence

Physicochemical and immunological properties of the hepatitis B surface antigen containing the preS2 9 amino acid sequence produced by a recombinant yeast.

The hepatitis B virus surface antigen containing the preS2 nine amino acid sequence produced by a recombinant Saccharomyces cerevisiae (yHBsAg) was purified and its physicochemical properties were determined. Ultrastructurally, the yHBsAg was found to be a homogeneous spherical particle with a diameter of 24 +/- 4 nm. The homogeneity of the yHBsAg particles was also demonstrated by analyses of their buoyant density and isoelectric point. They consisted of protein (53%), lipid (36%) and carbohydrate (11%), and the alpha-helix content was estimated to be 32%, differing from the reported values for human plasma-derived HBsAg (hHBsAg). Immunodiffusion analysis showed that the antigenic specificity of yHBsAg was identical to that of hHBsAg. Immunization of mice demonstrated that the immunogenicity of the yHBsAg was significantly higher than that of hHBsAg.

Amino Acid Sequence

Expression of the hepatitis B surface antigen gene containing the preS2 region in Saccharomyces cerevisiae.

We constructed a plasmid, pBH103-ME5, in which the region encoding the 10 preS2 amino acid residues and the S domain of the hepatitis B surface antigen (HBsAg) were regulated by the promoter of the yeast repressible acid phosphatase gene. Saccharomyces cerevisiae carrying pBH103-ME5 produced the HBs antigen (yHBsAg), when it was cultured in a medium containing a low concentration of phosphate. The antigen was purified to homogeneity. Its molecular weight was determined by Western blotting to be 24,000, and its amino acid composition agreed well with that deduced from the nucleotide sequence. The C-terminal amino acid sequence of yHBsAg was exactly the same as that predicted from the nucleotide sequence, while the N-terminal amino acid acetylserine, which was followed by 8 amino acid residues coded by the preS2 region. These results indicate that the recombinant yeast produced a single polypeptide consisting of the preS2 region and the subsequent S domain after being processed at the N-terminus.

Amino Acid Sequence

p75c-myb expression in leukemia-lymphoma cells correlated with proliferation and differentiation.

Monoclonal antibodies (McAbs) against a part of v-myb gene product were prepared for the detection of human c-myb gene product (p75c-myb). Western blotting analyses with these McAbs were performed on human leukemia-lymphoma cells. All T-cell lines were positive in p75c-myb expression. B-cell lines were variable, myeloid and erythroid cells were positive although the amount of expressed p75c-myb was less than the T-cell lines. Cells isolated from patients were positive in expression except for cells from acute myeloblastic leukemia with maturation (AML M2), acute hypergranular promyelocytic leukemia (AML M3) and erythroleukemia (AML M6) developed from myelodysplastic syndromes. Differences in p75c-myb expression seemed to depend upon the differentiation stage and distinctive lineage from which each cell line had been established. The p75c-myb expression in HL60 (acute promyelocytic leukemia cell line) showed remarkably high at logarithmic growth. When examined with HL60, p75c-myb expression significantly decreased during the differentiation induced by 12-O-tetradecanoylphorbol-13-acetate or retinoic acid. These results suggest that p75c-myb expression plays a crucial role in hematopoietic cell proliferation and differentiation and that multiple mechanisms including aberrant expression of p75c-myb is involved in leukemogenesis.

Antibodies, Monoclonal

Effects of the antisense v-myb' expression on K562 human leukemia cell proliferation and differentiation.

Recombinant plasmids containing v-myb' (803 bp fragment of the 3' end of v-myb) were constructed to induce sense or antisense v-myb' RNA expression with dexamethasone in human cells. These plasmids were used as a tool for the investigation of the role of c-myb gene in human leukemia cell proliferation and differentiation. They were transfected by electroporation into the K562 human leukemia cell line derived from a patient with chronic myelogenous leukemia in blastic crisis. After induction of transcription by dexamethasone, the plasmid with antisense v-myb' repressed the expression of p75c-myb from the endogenous c-myb gene of K562 cells. It also reduced the proliferation rate of K562 cells to 50% of the control level, and induced these K562 cells to express the myelomonocytic differentiation cell surface marker CD13 and increased NBT reducing activity. The plasmid with sense v-myb' did not have an effect on p75c-myb expression, the proliferation of K562 cells or the expression of myelomonocytic differentiation phenotypes. These observations suggest that antisense v-myb' RNA represses p75c-myb expression and that a decrease of p75c-myb suppresses K562 cell proliferation and induces its differentiation towards the myelomonocytic lineage.

Antigens, Differentiation, Myelomonocytic

Transcriptional control plays an important role for the production of heat-labile enterotoxin in enterotoxigenic Escherichia coli of human origin.

The production of heat-labile enterotoxin (LT) in 76 strains of human enterotoxigenic Escherichia coli (ETEC) varied by a factor of 100. Three ETEC strains that differ in the levels of LT production were chosen for the cloning of LT genes (toxAB) into plasmid pBR322, and the gene structure and expression were compared in E. coli HB101. The recombinant of the low LT-producing strain produced LT at the same level as that of the moderate LT-producing strain, but that of the high-level producer continued to produce at a level 14-21 times higher than the others. The restriction maps of the coding regions of the cloned LT genes (toxAB) were identical, but the flanking regions were dissimilar. The content of LT mRNA per cell, examined by Northern blot analysis, was higher in the high producer than the others by 6 times. The promoter strengths of the recombinants were all alike. LT mRNA of the high producer was more stable than that of the moderate one by 1.3 times, but the difference was not large enough to explain the difference of the content of LT mRNA. It was shown that LT production can be controlled at a transcriptional step, and DNA structure of the flanking regions may be involved in the control of the LT gene expression.

Bacterial Toxins

Cloning and sequencing of a phospholipase C gene of Clostridium perfringens.

The gene encoding phospholipase C (alpha-toxin) of Clostridium perfringens was cloned into lambda gt10. The maximal size of the coding region was 1.4 kb and the minimum was 1.1 kb as determined by subcloning into the vector pBR322 and testing for activity. The nucleotide sequence of this region contained a single open reading frame of 1194 bp corresponding to a protein of Mr 45473 with a possible N-terminal signal sequence of 28 amino acids which when removed, would give a mature protein of Mr 42521. This is in good agreement with the reported size of 43 kDa. The coding region has a dG + dC content of 33.7%, and the codon usage displays a pronounced preference for codons with the lowest dG + dC content.

Amino Acid Sequence