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Biomedical subjects

H Aoshima

Publications and source records attributed to H Aoshima.

At least 19 recordsLinked to original sources

Evaluation of soil bacterial biomass using environmental DNA extracted by slow-stirring method.

A simple and rapid method (slow-stirring method) for extracting environmental DNA (eDNA) from soils was constructed by physical mild stirring with chemical treatment. eDNA was extracted efficiently with minimal damage from various kinds of soil. The amount of eDNA and soil bacterial biomass showed a linear proportional relation [Y=(1.70x10(8))X, r2=0.96], indicating that bacterial biomass could be evaluated by quantifying levels of eDNA. Consequently, the average bacterial biomass in an agricultural field was calculated as 5.95x10(9) cells/g sample, approximately 10-100 times higher than that in non- and oil-polluted fields.

Bacteria↗

[Stenting in obstruction of superior vena cava; clinical experience with the self-expanding endovascular prosthesis].

From August 1997 to December 2002, 14 consecutive patients with superior vena cava syndrome with the self-expanding endovascular prosthesis. Diagnoses were adenocarcinoma in 6, small cell carcinoma in 4, squamous cell carcinoma in 1, metastatic lung cancer in 2, and invasive thymoma in 1. Atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) were measured on their admission and perioperative period. Expecting only 1 patient complete symptomatically relieved within 3 days of stent implantation. Superior vena cava pressure or radial pressure of the stent was sufficient to relieve obstruction. Preoperative ANP level were normal, BNP level were increased. Postoperatively both ANP level and BNP level were slightly increased under intravenous dopamine hydrochloride. Implantation of the self-expanding stent endovascular prosthesis for superior vena cava syndrome provides rapid symptomatic relief and improves the patient's quality of life.

Adult↗

Cloning of a cDNA for a constitutive NRT1 transporter from soybean and comparison of gene expression of soybean NRT1 transporters.

We have isolated a cDNA for a putative transporter, named GmNRT1-3, in the NRT1 family from soybean. It was predicted to have a similar topological structure not only to both GmNRT1-1 and GmNRT1-2 reported previously, but also to other members of the family. Two other cDNAs isolated have parts of the sequence for putative NRT1 transporters, GmNRT1-4 and GmNRT1-5, suggesting that at least five NRT1 transporters occur in soybean. These GmNRT1 genes and the GmNRT2 gene, encoding a soybean NRT2 nitrate transporter, showed different expression patterns to each other under various nitrogen conditions. Specifically, GmNRT1-3 was constitutively expressed in both roots and leaves, while GmNRT1-2 was gradually expressed as the roots developed in the presence of ammonium as a nitrogen source, but not in the presence of both ammonium and nitrate. Based on these results, we discussed the possible regulation in the expression and role of these transporters in nitrate uptake.

Anion Transport Proteins↗

Kinetic analyses of alcohol-induced potentiation of the response of GABA(A) receptors composed of alpha(1) and beta(1) subunits.

To investigate the kinetics of both the potentiation and desensitization of the response of ionotropic GABA receptors (GABA(A) receptors) in the presence of various compounds, we expressed receptors composed of alpha(1) and beta(1) subunits by injecting cells with the cRNAs synthesized from cloned bovine GABA(A) receptor cDNAs and measured the electrical responses of the cells electrophysiologically with or without the compounds. The potentiation of the GABA(A) receptor-mediated response was quantitatively analyzed using a simple model with the assumption that the receptors have two identical binding sites for GABA molecules with a dissociation constant of K(1), and one potentiation site for the compound with a dissociation constant of K(p), and that the binding of the compound to the potentiation site only increases the affinity of the GABA binding sites, changing K(1) to K(1p). The estimated K(p) and K(1p) were dependent on the functional groups and the chain length of the compounds. These results could be satisfactorily analyzed using this simple model. The potentiation of the GABA(A) receptor-mediated response by the components of essential oils used for aromatherapy was also examined. These compounds accelerated the decay of the response, possibly due to desensitization of the receptors, which was also analyzed on the basis of the model.

Alcohols↗

Effects of bisphenol A and its derivatives on the response of GABA(A) receptors expressed in Xenopus oocytes.

To study the effects of bisphenol-A (BPA) known to have estrogenic actions, and its derivatives, 3,5-dimethylphenol (DMP) and p-t-butylphenol (TBP), on ionotropic gamma-aminobutyric acid (GABA) receptors, GABA(A) receptors were expressed in Xenopus oocytes by injecting both poly(A)+ RNA prepared from rat whole brain and cRNAs synthesized from cloned cDNAs of alpha1 and beta1 subunit of the bovine receptors, and their electrical responses were measured by the voltage clamping method. BPA caused the potentiation and inhibition of the former receptor-responses, while it caused only inhibition of the latter ones. In the presence of low concentrations of GABA, DMP and TBP potentiated the responses of both receptors. DMP and TBP also increased the rate of decay of the response, possibly by desensitization of the receptors when GABA solution was continuously bath-applied. Diethyl terephthalate (DTP), which is also known to have estrogenic actions, had little effect on both the responses and the decay of both receptors.

Animals↗

Genomic DNA analysis of thyrotropin receptor in a family with hereditary hyperthyroidism.

Mutations of the thyrotropin receptor (TSH-R) gene have been reported in some cases of hyperthyroidism. We report a case of a family that had a high incidence of hyperthyroidism (6/13) which strongly suggested hereditary factors. We then analyzed whether the family had mutations of the TSH-R gene. No significant mutations in exon 10 of the TSH-R gene were found in the patient by restriction fragment length polymorphism analysis and polymerase chain reaction direct sequencing, when compared with those with 4 normal subjects and 2 patients with Graves' disease. Unknown mutations in the extracellular region of the receptor or other genes in this family remain to be studied.

Exons↗

Crystal structure of an aromatic ring opening dioxygenase LigAB, a protocatechuate 4,5-dioxygenase, under aerobic conditions.

BACKGROUND: Sphingomonas paucimobilis SYK-6 utilizes an extradiol-type catecholic dioxygenase, the LigAB enzyme (a protocatechuate 4,5-dioxygenase), to oxidize protocatechuate (or 3,4-dihydroxybenzoic acid, PCA). The enzyme belongs to the family of class III extradiol-type catecholic dioxygenases catalyzing the ring-opening reaction of protocatechuate and related compounds. The primary structure of LigAB suggests that the enzyme has no evolutionary relationship with the family of class II extradiol-type catecholic dioxygenases. Both the class II and class III enzymes utilize a non-heme ferrous center for adding dioxygen to the substrate. By elucidating the structure of LigAB, we aimed to provide a structural basis for discussing the function of class III enzymes. RESULTS: The crystal structure of substrate-free LigAB was solved at 2.2 A resolution. The molecule is an alpha2beta2 tetramer. The active site contains a non-heme iron coordinated by His12, His61, Glu242, and a water molecule located in a deep cleft of the beta subunit, which is covered by the alpha subunit. Because of the apparent oxidation of the Fe ion into the nonphysiological Fe(III) state, we could also solve the structure of LigAB complexed with a substrate, PCA. The iron coordination sphere in this complex is a distorted tetragonal bipyramid with one ligand missing, which is presumed to be the O2-binding site. CONCLUSIONS: The structure of LigAB is completely different from those of the class II extradiol-type dioxygenases exemplified by the BphC enzyme, a 2,3-dihydroxybiphenyl 1,2-dioxygenase from a Pseudomonas species. Thus, as already implicated by the primary structures, no evolutionary relationship exists between the class II and III enzymes. However, the two classes of enzymes share many geometrical characteristics with respect to the nature of the iron coordination sphere and the position of a putative catalytic base, strongly suggesting a common catalytic mechanism.

Amino Acid Sequence↗

Serum lipoprotein(a) and apolipoprotein(a) phenotypes in patients with rheumatoid arthritis.

OBJECTIVE: To determine serum lipoprotein(a) (Lp[a]) concentrations and to analyze the apolipoprotein(a) (Apo[a]) phenotype in patients with rheumatoid arthritis (RA). METHODS: The subjects included 131 patients with RA and 200 healthy control subjects. Serum Lp(a) concentrations were measured by enzyme-linked immunosorbent assay, and the Apo(a) phenotype was determined by immunoblotting. HLA-DR typing was also done. RESULTS: The mean serum Lp(a) level was significantly higher (P < 0.001) in the RA patients (27.5 mg/dl) than in the controls (15.0 mg/dl). The S3 allele was found in 70.0% of the patients versus 39.5% of the controls (P < 0.001). There was no significant difference in HLA-DR4 positivity between patients with and without the S3 phenotype. CONCLUSION: The serum Lp(a) level was increased in patients with RA, possibly partly because of S3 phenotype predominance.

Adult↗

Generation of free radicals during the death of Saccharomyces cerevisiae caused by lipid hydroperoxide.

The exposure of Saccharomyces cerevisiae cells to 13-L-hydroperoxylinoleic acid (LOOH) caused their death, the degree of which was dependent on the growth phase of the cells. Pre-application of ethanol, hydrogen peroxide (H2O2) and LOOH to S. cerevisiae cells reduced the effect of LOOH on the cells, showing the transient cross adaptation to LOOH. Antioxidants such as N,N',-diphenyl-p-phenylenediamine (DPPD), melatonin and vitamin E, and inhibitors of permeability transition of mitochondria, cyclosporin A and trifluoperazine, inhibited the LOOH-triggered cell death, while an inhibitor of glutathione synthetase, buthionine sulfoximine (BSO), enhanced the cell death by LOOH. Reactive oxygen species (ROS) were detected by flow cytometry, using the ROS-specific fluorescent indicator. A ferric iron chelator, deferoxamine, inhibited the LOOH-triggered cell death, and peroxyl radicals (LOO.) were detected by a spin trapping method. These reactive radicals possibly induced the death of S. cerevisiae cells. However, the DNA fragmentation characteristic of apoptosis was not observed in S. cerevisiae cells after exposure to LOOH, staurosporine, dexamethasone or etoposide, which have been reported to cause apoptosis in mammalian cells.

DNA, Fungal↗

Potentiation of GABAA receptors expressed in Xenopus oocytes by perfume and phytoncid.

To study the effects of perfume and phytoncid on GABAA receptors, ionotropic GABAA receptors were expressed in Xenopus oocytes by injecting mRNAs that had been prepared from rat whole brain. Essential oil, perfume and such phytoncid as leaf alcohol, hinokitiol, pinene, eugenol, citronellol and citronellal potentiated the response in the presence of GABA at low concentrations (10 and 30 microM), possibly because they bound to the potentiation-site in GABAA receptors and increased the affinity of GABA to the receptors. Since it is known that the potentiation of GABAA receptors by benzodiazepine, barbiturate, steroids and anesthetics induces the anxiolytic, anticonvulsant and sedative activity or anesthetic effect, these results suggest the possibility that the intake of perfume or phytoncid through the lungs, the skin or the intestines modulates the neural transmission in the brain through ionotropic GABAA receptors and changes the frame of the human mind, as alcohol or tobacco does.

Animals↗

Circadian variation of urinary type I collagen crosslinked C-telopeptide and free and peptide-bound forms of pyridinium crosslinks.

This study was performed to investigate the circadian variation of urinary CrossLaps (CTx), which was the type I collagen peptide released during bone matrix degradation, and peptide-bound and free forms of urinary pyridinium crosslinks. Urine was obtained during the 24 h of the study in seven separate collections as follows: from 23:00 h to the first void (FV) followed by FV at 11:00, 11:00-14:00, 14:00-17:00, 17:00-20:00, 20:00-23:00, and 23:00 h to FV the next morning. Total, free, and peptide-bound pyridinoline (Pyr) and deoxypyridinoline (Dpyr) excretion measured by high-performance liquid chromatography (HPLC) and CTx measured by enzyme-linked immunosorbent assay in nine premenopausal women aged 22-40 years and nine osteoporotic women aged 65-83 years was analyzed. Among three parameters of Pyr measured by HPLC, a significant day and night difference was found only in total Pyr (21.9% higher at night than during the day in premenopausal women and 24.0% in osteoporotic women, whereas no significant day and night variation was found in free and peptide-bound Pyr in either group. In contrast, total and peptide-bound Dpyr were significantly (37.9% and 66.9%) higher at night than those during the day in premenopausal women (38.0%) and osteoporotic women (48.8%). For free Dpyr, there were no day and night differences in the two groups. The day and night variances were significantly greater in peptide-bound Dpyr than with total Dpyr in both groups. In urinary CTx, a significant circadian variation with a peak at night and a nadir at 17:00 h was found (p < 0.0001) (premenopausal was 54.0% higher at night than during the day; osteoporotic was 38.4%. In conclusion, urinary CTx represented remarkable circadian variation compared with urinary pyridinium crosslinks measured by HPLC. Furthermore, free pyridinium crosslinks did not undergo a circadian variation. Peptide-bound crosslinks might contribute mostly to the circadian variation of total excretion of pyridinium crosslinks.

Adult↗

Changes in mitochondrial membrane potential during oxidative stress-induced apoptosis in PC12 cells.

We examined the effects of various types of oxidative stress on cell survival and on mitochondrial membrane potential (delta psi m) in PC12 cells transfected with BCL-2. Several types of oxidative stress such as exposure to hydrogen peroxide, 13-L-hydroperoxylinoleic acid, and xanthine + xanthine oxidase triggered apoptotic nuclear condensation and DNA fragmentation in normal PC12 cells. These types of oxidative stress induced significant increases in level of reactive oxygen species (ROS) before cell death. By contrast, BCL-2 prevented the apoptosis induced by these oxidative stresses. However, BCL-2 did not reduce ROS levels, indicating that it functions downstream of ROS generation. We measured delta psi m as a potential target of ROS during oxidative stress-induced cell death. Hydrogen peroxide, 13-L-hydroperoxylinoleic acid, and xanthine + xanthine oxidase induced a significant loss of delta psi m simultaneously with cell death. BCL-2 prevented the decrease in delta psi m as well as apoptosis induced by oxidative stress. These observations suggest that the oxidative stress triggers apoptosis associated with both increased generation of ROS and decreases in level of delta psi m and that BCL-2 prevents cell death as well as delta psi m but not ROS production.

Animals↗

Characterization of the gntT gene encoding a high-affinity gluconate permease in Escherichia coli.

We characterized the gntT gene encoding a high-affinity gluconate permease of Escherichia coli K-12. Primer extension and lacZ-operon fusion analyses revealed that gntT has one strong and two weak promoters, all of which are regulated positively by cAMP-CRP and negatively by GntR. The weak promoters became constitutive when separated from the upstream region including the strong promoter that overlaps a putative GntR-binding sequence. Gluconate-specific uptake activity was observed with cells harboring the gntT plasmid clone, which was enhanced by the presence of gntK encoding gluconate kinase.

Amino Acid Sequence↗

Generation of free radicals during lipid hydroperoxide-triggered apoptosis in PC12h cells.

The compound 13-L-hydroperoxylinoleic acid (LOOH) triggered the death of clonal rat pheochromocytoma PC12h cells (LD50 = about 8 microM). LOOH induced nuclear condensation and DNA fragmentation, which was prevented by cycloheximide (a protein synthesis inhibitor) and NGF, indicating that LOOH triggered apoptosis in PC12h cells. LOOH produced reactive oxygen species (ROS) in PC12h cells in a time- and dose-dependent manner, as measured by flow cytometry using the ROS-specific fluorescent indicator, 6-carboxy-2,7-dichorodihydrofluorescein diacetate, di(acetoxymethyl ester) (C-DCDHF-DA). Antioxidants such as N,N'-diphenyl-p-phenylenediamine (DPPD), vitamin E and N-acetylcysteine, and a ferric iron chelator, deferoxamine, inhibited the LOOH-triggered apoptosis and simultaneously decreased the generation of ROS, whereas an inhibitor of glutathione synthesis, buthionine sulfoximine (BSO), enhanced the apoptosis and increased the generation of ROS. These results indicate that LOOH triggers the apoptosis of PC12h cells by increasing the production of ROS. A confocal analysis with the Ca(2+)-specific fluorescent indicator, fluo-3, demonstrated that LOOH at concentrations up to 200 microM, did not increase the intracellular Ca2+ concentration. These data indicate that LOOH induces apoptosis of PC12h cells through the enhanced production of ROS, not through increasing the permeability of Ca2+.

Animals↗

Neuropathic arthropathy caused by paraneoplastic sensory neuropathy. A case report.

Neuropathic arthropathy of both knees after paraneoplastic sensory neuropathy developed in a 64-year-old woman. The patient was found to have small cell lung cancer 2 months after the onset of a sensory neuropathy that was diagnosed as paraneoplastic sensory neuropathy, a nonmetastatic neurologic complication in patients with malignancy. The onset of paraneoplastic sensory neuropathy was followed by the gradual onset of neuropathic arthropathy. This is the first well documented report on neuropathic arthropathy in a patient with paraneoplastic sensory neuropathy.

Carcinoma, Small Cell↗

Comparison of the nucleic acids of helical and coccoid forms of Helicobacter pylori.

The nucleic acids of the helical and coccoid forms of Helicobacter pylori were studied to determine if the coccoid forms are "viable (capable of growing) but nonculturable." Using a reference strain (NCTC 11638) and five clinical strains, the nucleic acid contents, DNA integrity, and results of PCR and reverse transcription-PCR (RT-PCR) were compared for helical H. pylori and coccoid forms induced using glycochenodeoxycholic acid or bismuth citrate. The DNA and RNA contents of the coccoid forms were respectively 6.8- and 8.1-fold lower than those of helical H. pylori after 3 days of induction and 11.5- and 14.7-fold lower after 7 days. Agarose gel electrophoresis of DNA extracted from the coccoid forms after 3 days of induction showed a smear pattern indicating DNA cleavage, whereas DNA from helical H. pylori showed a single band with a high molecular mass. After 12 days of induction, all RNA samples from 100% coccoid cultures were negative for the mRNA of urease A or the 26-kDa species-specific protein by RT-PCR. However, most RNA samples obtained after 3 or 7 days of induction were positive at low levels despite the lack of recovery from these cultures. These results suggest that the coccoid form of H. pylori has impaired genomic DNA and is in the process of cellular degeneration, thus being still alive but nonincreasable.

Bacterial Proteins↗