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Biomedical subjects

Y Wada

Publications and source records attributed to Y Wada.

At least 451 records · Page 25Linked to original sources

Stereoselective 4'-hydroxylation of phenytoin: relationship to (S)-mephenytoin polymorphism in Japanese.

AIMS: The aim of this study was to clarify whether phenytoin (PHT) stereoselective hydroxylation cosegregates with (S)-mephenytoin phenotype. METHODS: A single dose of PHT (100 mg) was administered orally to six healthy Japanese subjects in whom the genotype and phenotype of CYP2C19 had been determined previously. The urinary excretion profiles of the metabolites of PHT, (R)- and (S)-p-HPPH [5-(4-hydroxyphenyl)-5-phenylhydantoin] up to 361 postdose were compared between the two groups of poor metabolizers (PMs, n = 3) and extensive metabolizers (EMs, n = 3) with respect to CYP2C19. CYP2C9 genotype was also determined. RESULTS: All the alleles were found to be wild type (Arg144 Tyr358Ile359Gly417) in each subject. The mean value for cumulative urinary excretion of unchanged PHT was not significantly different between the PMs and the EMs. However, recovery of (R)-p-HPPH at 36 h was 3.5-fold lower and that of (S)-p-HPPH 1.3-fold lower in PMs than in EMs. Although the mean urinary excretion values for both metabolites were significantly lower in the PMs than in the EMs, the difference between the two groups was larger for (R)-p-HPPH. A significant negative correlation was observed between the hydroxylation index of omeprazole (the ratio between the serum concentrations of omeprazole and hydroxyomeprazole in blood samples drawn 3 h after drug intake) and the log10 0-12 h urinary recovery of (R)-p-HPPH. CONCLUSIONS: In humans, the 4'-hydroxylation of PHT is highly stereoselective towards formation of the (S)-enantiomer. Thus, (S)-hydroxylation by CYP2C9 might be the major determinant of the disposition of PHT. However, these results support the hypothesis that the stereoselective hydroxylation pathway of PHT to form (R)-p-HPPH cosegregates with the CYP2C19 metabolic polymorphism.

Administration, Oral↗

A correlation between computer-predicted changes in secondary structure and the phenotype of retinal degeneration associated with mutations in peripherin/RDS.

PURPOSE: To investigate a molecular understanding of how mutations can lead to different phenotypes, we analyzed the relationship between altered secondary structures predicted by missense mutations in the peripherin/RDS and clinical severity of autosomal-dominant retinal degeneration. METHODS: We analyzed thirteen different kinds of missense mutations in the second intradiscal loop of peripherin/RDS, previously reported in peer review journals. Alteration of the secondary structure of peripherin/RDS was predicted by computer-assisted protein structure analysis. The number of amino acid residues that would be involved in the secondary structural change produced by a given missense mutation was scored as a grade of molecular change. Clinical severity was estimated by the impairment based on electroretinographic recordings of rods and cones, and was scored according to the severity of their recordings. Regression analysis was carried out between both scores of molecular change and clinical severity. Effects of patients' ages on clinical severity was also analyzed. RESULTS: Significant correlation was found between scores of molecular change and those of clinical severity (rods, r = 0.89, p < 0.001; cones, r = 0.76, p < 0.005) by regression analysis. There was no correlation between clinical severity and patients' ages. CONCLUSION: . These findings indicate that the degree of change in the secondary structure of peripherin/RDS can explain in part the correlation between genotype and phenotype in autosomal-dominant retinal degeneration associated with missense mutations in the peripherin/RDS gene.

Adult↗

N-glycosylation is requisite for the enzyme activity and Golgi retention of N-acetylglucosaminyltransferase III.

UDP-N-acetylglucosamine: beta-D-mannoside beta-1,4N-acetylglucosaminyltransferase III (GnT-III, EC 2.4.1.144) is a glycoprotein involved in the biosynthesis of N-linked oligosaccharides. Rat GnT-III contains three potential N-glycosylation sites, which have been predicted to be Asn243, Asn261, and Asn399. To study the roles of N-glycosylation in the GnT-III function, rat GnT-III was expressed in COS-1 cells under tunicamycin or castanospermine treatment. The tunicamycin-treated GnT-III, which was not N-glycosylated, had almost no activity. The castanospermine-treated GnT-III was not localized in the Golgi, but glucosylation did not affect its activity. To clarify the role of individual N-glycosylations, we obtained a series of mutant cDNAs in which some or all of the potential glycosylation sites were eliminated by site-directed mutagenesis, and expressed them in COS-1 cells. All the mutants exhibited lower enzyme activity than the wild-type, but deglycosylation at individual sites had different effects on the enzyme activity. The deglycosylation at Asn243 or Asn261 was more effective on the activity than that at Asn399. The enzyme activity decreased as the number of glycosylation sites decreased. The null glycosylation mutant had no activity, corresponding to the case of tunicamycin-treated wild-type GnT-III. Kinetic analysis revealed that the deglycosylation at Asn243 or Asn261 resulted in slightly lower affinity for the donor substrate, but the other mutation did not significantly change the K(m) value for either the donor or acceptor. None of the mutant GnT-IIIs showed perinuclear localization or Golgi retention, that was observed for the wild-type protein. This is the first demonstration that the glycosyltransferase localized in the Golgi apparatus requires N-glycosylation for its activity and retention.

Animals↗

Effects of rice culture practices on the abundance of Culex mosquitoes (Diptera:Culicidae) in northern Thailand.

In 1991-1993, the density (numbers per 10 dips) and abundance (density x flooded area) of mosquitoes were studied in 3 areas of northern Thailand with different environmental conditions. Culex tritaeniorhynchus Giles, Cx. vishnui Theobald, and Cx. gelidus Theobald were predominant among the 8 Culex species collected. Abundance of these 3 species varied significantly among the 3 areas. Type of habitat classified according to agricultural practices in rainy and dry season significantly influenced larval abundance of Cx. tritaeniorhynchus and Cx. vishnui. Seasonal variation in larval abundance was significant only in Cx. vishnui. The response of the 3 vector mosquitoes to environmental heterogeneity is discussed.

Agriculture↗

Acidification of vacuoles is required for autophagic degradation in the yeast, Saccharomyces cerevisiae.

Acidification inside vacuoles has been shown to play a key role in a number of physiologically important cellular events. We studied the role of vacuolar membrane H(+)-ATPase in the autophagic process of Saccharomyces cerevisiae. Mutants lacking VMA genes which encode their subunits of the vacuolar H(+)-ATPase accumulated autophagic bodies in vacuoles on starvation. vma mutants also had a defect in protein degradation induced by starvation. In vma mutants, the activities of vacuolar proteases were remarkably lower than those of the wild-type. Overexpression of vacuolar proteases did not overcome the defect in the disintegration of autophagic bodies in vma mutant, even the overexpressed proteinase A and proteinase B being substantially localized to the vacuolar compartment and undergoing proper proteolytic maturation. Our results showed that the acidification of vacuoles is not required for the formation and delivery of autophagosomes to vacuoles, but is essential for the disintegration of autophagic bodies.

Aspartic Acid Endopeptidases↗

Heterologous expression and subcellular localization of pumpkin seed tonoplast intrinsic proteins (TIP) in yeast cells.

Two tonoplast intrinsic proteins (TIP) of pumpkin seeds, pMP23 and MP28, were expressed in yeast cells under control of the GAL1 promoter, and the subcellular localization of the proteins was analyzed. The pMP23 and MP28 stably accumulated in the yeast vacuolar membrane when the proteins were expressed in the proteinase A-deficient strain (pep4), which lacks the activities of vacuolar proteases. However, pMP23 and MP28 did not accumulate in the wild-type strain; the expressed pMP23 and MP28 were degraded in a proteinase A-dependent manner. These results indicate that pMP23 and MP28 are transported to the vacuolar membrane when expressed in yeast.

Cloning, Molecular↗

Oguchi disease: phenotypic characteristics of patients with the frequent 1147delA mutation in the arrestin gene.

OBJECTIVE: To characterize clinical features of patients with Oguchi disease associated with a homozygous deletion of adenine at nucleotide 1147 (1147delA) in codon 309 in the arrestin gene. METHODS: Mutation screening by single-strand conformation polymorphism analysis was done, followed by sequencing. Ophthalmologic testing included evaluation of visual acuity and color vision, fundus examination, electroretinography, fluorescein angiography, evaluation of kinetic visual field, and dark adaptometry. Nine patients with Oguchi disease from seven unrelated families and family members who were unaffected by the disease were examined. RESULTS: A homozygous 1147delA mutation in the arrestin gene was identified in eight patients from six families with Oguchi disease. All patients who were examined exhibited a golden-yellow retinal reflex associated with Mizuo-Nakamura phenomenon and impairment of rod function in dark adaptation tests, although fundus examination showed slight variation in these findings. Four patients with the mutation had slightly reduced visual acuity, and the electroretinograms of three patients showed slightly reduced amplitudes during 30-Hz flicker electroretinography. CONCLUSION: Patients with Oguchi disease associated with the arrestin 1147delA mutation typically demonstrate retarded rod adaptation, whereas some patients have slightly impaired cone function.

Adolescent↗

Regulation of vimentin expression and protease-mediated vimentin degradation during differentiation of human monocytic leukemia cells.

Terminal differentiation of human monocytic leukemia THP-1 cells is induced in vitro by 12-O-tetradecanoylphorbol-13-acetate (TPA). We investigated the effects of TPA on the expression of vimentin during the differentiation of THP-1 cells at both the mRNA and the protein level. On northern blotting analysis, a 2.1 kb vimentin mRNA was up-regulated by TPA. On western blotting, small vimentin molecules with a molecular mass of approximately 40 kDa were observed in the soluble fraction and increased with TPA-induction of cellular differentiation. Since larger, including intact, vimentin molecules were detectable at a high TPA dose, we assessed the possible existence of protease activity directed against vimentin in THP-1 cells. With incubation of the cellular lysates of THP-1 cells, the endogenous vimentin became increasingly smaller over time, suggesting the presence of a vimentin-degrading protease. Phenylmethylsulfonyl fluoride inhibited this apparent protease activity against vimentin, suggesting the enzyme involved to be a serine protease. Interestingly, the protease activity was down-regulated by TPA treatment. TPA-treated THP-1 cells were found to express a vimentin-filament network based on immunocytochemical analysis using an anti-vimentin monoclonal antibody, V9. Taken together, these observations suggest that post-translational mechanisms work in cooperation with transcriptional regulation to maintain the vimentin-intermediate filament structure in differentiated THP-1 cells.

Blotting, Northern↗

Characteristics of juvenile dermatomyositis in Japan.

Questionnaires were sent to 1290 hospitals in Japan asking for data on patients with juvenile dermatomyositis (JDM) diagnosed between June 1984 and May 1994. Of the 204 patients identified by these questionnaires, 102 met the criteria for JDM. JDM is categorized into three subtypes: Banker-type JDM, Brunsting-type and fulminant-type; patients with the latter exhibit markedly elevated serum levels of creatinine phosphokinase (> 10,000 U/mL) and appear to be at risk of renal failure. Cutaneous manifestations were present in 98% of patients and preceded the appearance of other symptoms. This tendency is one of the reasons for the difficulty in some cases in diagnosing the onset of JDM. Better criteria for early treatment of JDM are needed. The results of the present study suggest that itching and calcinosis are factors that indicate a poor prognosis in patients with JDM. Muscle enzyme levels do not always reflect disease activity, suggesting that methods other than measurement of muscle enzymes, such as measurement of the levels of neoprerin and von Willebrand factor antigen, as well as magnetic resonance imaging should be used to be evaluate disease severity. Patients with Brunsting-type JDM who exhibit dysphagia and antinuclear antibody positivity and patients with Banker-type JDM should be treated aggressively. Pulse therapy should be selected as the initial therapy in patients with fulminant-type JDM.

Child↗

[A girl with systemic onset juvenile rheumatoid arthritis suspected to be due to human parvovirus B19 infection].

We encountered a case of a girl where Human Parvovirus B19 infection was considered to have been concerned with the development of systemic type juvenile rheumatoid arthritis (JRA). While the affected child did not show any evident infectious erythema-like findings, changes in the serum antibody titer by the EIA method presented the pattern of first infection. During the clinical course the condition of the disease as JRA was serious and hemophagocytic syndrome developed concurrently. Furthermore, the resistance to the treatment was also noted. So the patient was treated with prednisolone combined with low dose weekly MTX therapy. The possibility of Human parvovirus B19 being concerned with the development of rheumatoid arthritis in one form or another has been suggested in recent years. In the disease type with systemic angititis as main pathophysiology, which is called systemic JRA we encountered this time, it is not clear how Human Parvovirus B19 was concerned with the development of this disease, but it appeared to hold a key position in studying pathophysiology of the development.

Anti-Inflammatory Agents↗

Hydrocephalus and Hirschsprung's disease in a patient with a mutation of L1CAM.

Abnormalities of the L1CAM gene, a member of the immunoglobulin gene superfamily of neural cell adhesion molecules, are associated with X linked hydrocephalus and some allelic disorders. We describe a patient with X linked hydrocephalus and Hirschsprung's disease (HSCR) with a novel mutation in the L1CAM gene. This is the first report of HSCR with a mutant neural cell adhesion molecule. Although the disease phenotypes of this patient may well be independent, the alternative explanation that L1CAM mutations may contribute to both phenotypes cannot be excluded in view of an earlier report on another patient with both X linked hydrocephalus and HSCR.

Alleles↗

Effect of continuous intravenous injection of interleukin-6 and pretreatment with cyclooxygenase inhibitor on brain c-fos expression in the rat.

The aim of the present study was to assess potential brain sites of stimulation by peripheral interleukin (IL)-6 of the hypothalamo-pituitary-adrenal (HPA) axis in the rat, using c-fos protein as a marker of cellular activation. Involvement of prostaglandins in IL-6-induced ACTH secretion and c-fos expression was also investigated. IL-6 was infused continuously (40 ng/min) for 90 min to conscious male rats. Blood samples were taken before the infusion and at 30 and 90 min for measurement of plasma ACTH. Expression of c-fos in the brain was examined by immunohistochemistry. Administration of IL-6 significantly elevated plasma ACTH levels at 30 min (495 +/- 105 vs. 117 +/- 17 pg/ml in controls, p < 0.05). Elevated levels were still present at 90 min (596 +/- 139 vs. 113 +/- 20 pg/ml in controls, p < 0.05). Infusion of IL-6 (3.6 micrograms/rat) markedly triggered c-fos expression in hypothalamic paraventricular (PVN) and supraoptic nuclei (SON), as well as in the central amygdaloid nucleus (CeA), the nucleus tractus solitarius and the locus coeruleus. Pretreatment with the cyclooxygenase inhibitor indomethacin (10 mg/kg, i.v.) suppressed the ACTH response induced by IL-6. The number of IL-6-induced immunoreactive cells in the PVN was significantly reduced by indomethacin pretreatment (p < 0.01), but the number of IL-6-induced c-fos-positive cells in the SON and CeA remained unchanged. These findings suggest that circulating IL-6 may exert central actions by acting directly or indirectly on brain neurons. In addition, the ability of IL-6 to activate the HPA axis may depend upon the release of prostaglandins, probably in the brain.

Adrenocorticotropic Hormone↗

Asymmetrical dimethylarginine, an endogenous nitric oxide synthase inhibitor, in experimental hypertension.

NG,NG-dimethyl-L-arginine (ADMA) is an endogenously synthesized nitric oxide (NO) synthase inhibitor which has potent pressor/vasoconstrictor effects. Dimethylargininase metabolizes ADMA to L-citrulline and plays a key role in determining the in vivo levels of ADMA. To investigate the role of ADMA in the pathogenesis of hypertension, we measured 24-hour urinary excretion of ADMA (UADMA) and nitrate/nitrite (NOx) in Dahl salt-sensitive hypertensive rats and spontaneously hypertensive rats (SHR). In Dahl salt-resistant rats, high-salt diet (8% NaCl) did not increase blood pressure and increased urinary NOx (P < .01) without changes in UADMA compared with low-salt diet (0.3% NaCl). In contrast, in Dahl salt-sensitive rats, high-salt diet increased blood pressure (P < .01), did not change urinary NOx excretion, and increased UADMA (P < .01). There was a significant (r = .65, P < .01) correlation between UADMA and the level of blood pressure in Dahl salt-sensitive rats. Plasma levels of NOx and ADMA and renal dimethylargininase content were comparable among them. These results may suggest that in Dahl salt-resistant rats, blood pressure is kept constant during high-salt intake, possibly due to the compensatory increased production of NO, and that in Dahl salt-sensitive rats, high-salt intake increases the production of ADMA, attenuates the compensatory increases in NO, and increases blood pressure. These results also suggest that the systemic production of ADMA is not dependent on renal dimethylargininase. SHR had significantly greater urinary NOx excretion (P < .05) and smaller UADMA than Wistar-Kyoto rats (P < .05), and UADMA was inversely correlated with their mean arterial pressure (r =.64, P < .05). In conclusion. ADMA, independently of the renal dimethylargininase content, may play a role in the pathogenesis in Dahl salt-sensitive hypertensive rats but not in SHR.

Amidohydrolases↗

Vulnerability to cerebral hypoxic-ischemic insult in neonatal but not in adult rats is in parallel with disruption of the blood-brain barrier.

BACKGROUND AND PURPOSE: Vulnerability to cerebral hypoxic-ischemic (H-I) insult and its relation to disruption of the blood-brain barrier were investigated in postnatal rats. METHODS: Pups of postnatal day (P) 7, P14, and P21 underwent ligation of a unilateral carotid artery and were exposed to hypoxic conditions. For the detection of early-phase deterioration, brains were perfusion-fixed 24 hours after H-I insult and examined by argyrophil III method. For the detection of later infarction, animals were fixed at 72 hours after the H-I insult. RESULTS: In either case, tissue damage was detected in the striatum, parietal cortex, and hippocampus. The vulnerability of P7 and P21 rats was remarkable, as compared with P14 rats. Although the developmental status of the vasculature was not significantly different at each age, the permeability of IgG after H-I injury was prominent in P7 rats and to a lesser extent in P14 rats. In P21 rats, however, there was little IgG leakage even 24 hours after the insult. Dexamethasone pretreatment blocked the extravasation of IgG and reduced the damaged tissue in P7 and P14 rats but not in P21 rats. Percentages of reduction in infarcted areas by the dexamethasone became smaller in proportion to ages. CONCLUSIONS: The results suggest that in younger rats vulnerability to H-I insult was in parallel with permeability of the blood-brain barrier, whereas in adults in might be more dependent on cellular vulnerability.

Aging↗

Analysis of the hypervariable region of hepatitis C virus E2/NS1 gene in an infant infected by blood transfusion.

We investigated the sequential change in the hypervariable region 1 (HVR 1) of hepatitis C virus (HCV) E2/NS1 gene in an infant. He was transfused with 160 mL of blood containing the HCV (0.7 Meq/mL) on the 6th d after birth and subsequently developed chronic viremia. At 16 mo, the HVR1 amino acid sequences of HCV observed in the infant's sera were very similar to those from the donor (his maternal grandfather) on the day of transfusion. However, highly variable amino acid sequences of HVR1 were observed throughout infancy. These results demonstrate that an adaptive response of HCV to evade host immunity seems to occur, as in adult cases, even in early infancy when the ability to produce humoral immunoglobulin is thought to be low.

Amino Acid Sequence↗

Vam3p, a new member of syntaxin related protein, is required for vacuolar assembly in the yeast Saccharomyces cerevisiae.

Syntaxins are thought to participate in the specific interactions between vesicles and acceptor membranes in intracellular protein trafficking. VAM3 of Saccharomyces cerevisiae encodes a 33 kDa protein (Vam3p) with a hydrophobic transmembrane segment at its C terminus. Vam3p has structural similarities to syntaxins of yeast, animal and plant cells. delta vam3 cells accumulated spherical structures of 200-600 nm in diameter, but lacked normal large vacuolar compartments. Loss of function of Vam3p resulted in inefficient processing of vacuolar proteins proteinase A, proteinase B and carboxypeptidase Y, and defective maturation of alkaline phosphatase. Subcellular fractionation and immunofluorescence microscopy showed that Vam3p was localized to the vacuolar membranes. Vam3p was accumulated in certain regions of the vacuolar membranes. We conclude from these observations that Vam3p is a novel member of syntaxin in the vacuoles and it provides the t-SNARE function in a late step of the vacuolar assembly.

Amino Acid Sequence↗

Modification of ciliary beating in sea urchin larvae induced by neurotransmitters: beat-plane rotation and control of frequency fluctuation

The modification of ciliary beating by neurotransmitters in sea urchin larvae at the four-armed pluteus stage was analyzed in terms of the direction of beating and fluctuation in the beat period. Application of dopamine to Pseudocentrotus depressus causes the cilia to turn their beat plane but retain its characteristic planar feature up to the complete 'reversal' of the beat direction. This new type of response was termed the 'beat-plane turning response'. It was also found that neurotransmitters, especially dopamine and serotonin, can modify the length of the beating cycle in P. depressus and Hemicentrotus pulcherrimus. Dopamine decreased and serotonin increased the beat frequency averaged over the ciliated epithelium with the standard deviation from the mean increasing in the presence of dopamine and decreasing with serotonin. The beat-period fluctuation and its modification suggested by this observation was confirmed from measurements of the beating of individual cilia in the presence or absence of these neurotransmitters. Further analysis of the correlation between angular velocity and beat period indicates that variation in the beat period is not controlled by the same processes as those that modulate angular velocity. These findings in sea urchin larvae suggest that both the stability and the direction of ciliary beating is under nervous control.

Journal Article↗