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Biomedical subjects

H Tsuruta

Publications and source records attributed to H Tsuruta.

At least 37 records · Page 2Linked to original sources

The pharmacokinetics of trinitroglycerin and its metabolites in patients with chronic stable angina.

AIMS: To study the pharmacokinetics of trinitroglycerin (GTN) and its four metabolites in angina patients during their transient use of transdermal GTN tape following intravenous administration of GTN. METHODS: Four patients received a GTN tape following intravenous administration of 0.1 microg kg-1 min-1 GTN, and the other four patients received two GTN tapes following intravenous administration of 0.2 microg kg-1 min-1 GTN. RESULTS: Plasma concentrations of GTN in both groups during tape application showed a slight decrease for the hour after the application of the tape and then were con- stant for 24 h. In contrast, the concentrations of dinitroglycerins (GDNs) and mononitroglycerins (GMNs) depended on the duration of previous intravenous administration of GTN. Neither significant cardiovascular changes nor undesirable complications were observed during the study. CONCLUSIONS: The results suggest that appropriate replacement of intravenous GTN administration with transdermal tape application could maintain a therapeutic GTN level.

Aged↗

Cloning of phosphatase I gene from a psychrophile, Shewanella sp., and some properties of the recombinant enzyme.

Psychrophilic phosphatase I from Shewanella sp. is a cold enzyme that was found as a novel protein-tyrosine-phosphatase (PTPase, EC 3. 1.3.48) with a histidine as its catalytic residue [Tsuruta and Aizono (1999) J. Biochem. 125, 690-695]. Here, we determined the nucleotide sequence of a DNA fragment (2,004 bp) containing the phosphatase I gene by cloning with polymerase chain reaction (PCR) and inverted PCR techniques. The deduced amino acid sequence, of the enzyme contained a conserved region of protein-serine/threonine-phosphatase (PPase). The 38.5 kDa-recombinant protein expressed in Escherichia coli was purified to homogeneity by glutathione-Sepharose 4B column chromatography, treatment with endoproteinase and Mono-Q column chromatography. The recombinant enzyme had a specific activity of 49.4 units and, like native psychrophilic phosphatase I, exhibited high catalytic activity at low temperature and PTPase activity.

Amino Acid Sequence↗

Cardiovascular response and stress reaction to flumazenil injection in patients under infusion with midazolam.

OBJECTIVES: To evaluate the cardiovascular response and acute stress reaction after arousal induced by a benzodiazepine antagonist, flumazenil, in patients sedated with midazolam. DESIGN: Prospective study. SETTING: Emergency center in a university hospital. PATIENTS: A total of 12 patients were ventilated mechanically under sedation with midazolam. INTERVENTIONS: We monitored the consciousness level, heart rate, systemic blood pressure, pulmonary artery pressure, and pulmonary artery occlusion pressure before and after a bolus injection of 0.5 mg of flumazenil. The score for the consciousness level represents the sum of the scores for eye opening and best motor response, as determined by the Glasgow Coma Scale. We measured the cardiac output, concentrations of norepinephrine, epinephrine, and 3-methoxy-4-hydroxyphenylethyleneglycol in plasma, and concentration of cortisol in serum. We calculated the left ventricular ejection fraction, cardiac index, systemic vascular resistance index, pressure-rate product, systemic oxygen delivery, and systemic oxygen consumption at 0, 10, 30, and 60 mins after injection of flumazenil. MEASUREMENTS AND MAIN RESULTS: The serum benzodiazepine's receptor binding activity in serum was in the range from 50 to 1000 ng/mL before injection of flumazenil. Flumazenil improved the consciousness level from 6.7+/-2.0 to 8.9+/-1.6 and induced transient elevations in heart rate, blood pressure, systolic pulmonary artery pressure, and pulmonary artery occlusion pressure. Left ventricular ejection fraction, oxygen delivery index, and pressure-rate product increased significantly, from 61%+/-8%, 640+/-170 mL/min/m2, and 13,300+/-2600 mm Hg/min at 0 mins to 67% +/-5%, 710+/-220 mL/min/m2, and 16,500+/-4400 mm Hg/min at 10 mins, respectively. Concentrations of norepinephrine and epinephrine in plasma increased significantly, from 890+/-840 pg/mL and 220+/-360 pg/mL, respectively, at 0 mins to 990+/-850 pg/mL and 270+/-300 pg/mL, respectively, at 10 mins. There were no significant changes in the plasma concentration of 3-methoxy-4-hydroxyphenylethyleneglycol, the serum concentration of cortisol after the administration of flumazenil. CONCLUSIONS: Flumazenil did not result in a significant acute stress reaction in midazolam-sedated patients, but it increased myocardial oxygen consumption by enhancing sympathetic nervous activity or antagonizing cardiovascular depression induced by midazolam.

Acute Disease↗

Relationship between blood lead level and urinary ALA level in workers exposed to very low levels of lead.

The relationship between blood lead (PbB) level and urinary delta-aminolevulinic acid (ALAU) level was examined in a total of 3,636 lead-exposed workers in a periodic medical examination in 1992, in accordance with the Ordinance on Prevention of Lead Poisoning. The results were consistent with previously reported results in that ALAU level was found to increase with an increase in PbB level above 22.4 micrograms/dl (1.35 as a logarithmic value) and to rise markedly above 35.5 micrograms/dl (1.55). On the contrary, the geometric means of ALAU levels appeared to decrease with an increase in PbB levels within a range between a logarithmic value of 0.15 (1.4 micrograms/dl) and 1.25 (17.8 micrograms/dl). Because the earliest sign of the adverse health effects of lead is reported to occur at a PbB level of of 20 micrograms/dl, the relationship between PbB level and ALAU level was examined at PbB levels below 20 micrograms/dl. A regression formula was obtained, Y (log ALAU (mg/l)) = -0.0570X (log PbB (microgram/dl) + 0.4099. This result indicates that ALAU level decreases with a concomitant increase in PbB level lower than 20 micrograms/dl.

Aminolevulinic Acid↗

[Effect of land management in winter crop season on seasonal variations of CH4 emissions from rice paddy soils].

A pot experiment in greenhouse was carried out to study seasonal variations of CH4 fluxes from rice paddy soils and the effect of land management in winter crop season on the seasonal variations. The results showed that four emission peaks occurred respectively 13 days after flooding and 7, 40, 91 days after rice transplanting, and CH4 emission amounts during the first 30 days after flooding accounted for as high as 67.5%, 35.5% and 33.3% of the total emission amounts during the observing period of 133 days for treatments with dry fallow but rice straw being applied just before flooding, alfalfa, and flooded fallow in winter crop season. However, for treatments with dry fallow but rice straw being applied before winter crop cultivating and winter wheat in winter crop season, CH4 emission amounts during the first 50 days after flooding just accounted for 0.27% and 6.74 of the total emission amounts during the observing period, and CH4 fluxes thereafter were also very small. Difference in the seasonal variation patterns of soil Eh due to land management in winter crop season was the main reason why seasonal variation patterns of CH4 fluxes from different treatments were different.

Methane↗

Scaling structure factor amplitudes in electron cryomicroscopy using X-Ray solution scattering.

The structure factors derived from electron cryomicroscopic images are modified by the contrast transfer function of the microscope's objective lens and other influences. The phases of the structure factors can be corrected in a straightforward way when the positions of the contrast transfer function rings are determined. However, corrected amplitudes are also essential to yield an accurate distribution of mass in the reconstruction. The correct scale factors for the amplitudes are difficult to evaluate for data that are merged from many different micrographs. We opt to use X-ray solution scattering intensity from a concentrated suspension of the specimen to correct the amplitudes of the spherically averaged structure factors. When this approach is applied to the three-dimensional image data of ice-embedded acrosomal bundles, the core of a filament in a three-dimensional reconstruction of the acrosomal bundle becomes denser and matches more closely the outer density ascribed to scruin.

Acrosome↗

Simultaneous determination of estriol and estriol 3-sulfate in serum by column-switching semi-micro high-performance liquid chromatography with ultraviolet and electrochemical detection.

A column-switching HPLC with semi-microcolumn enabled us a direct and simultaneous analysis of estriol (E3) and estriol 3-sulfate (E3 S) in human serum in combination with ultraviolet (for E3 S) and electrochemical (for E3) detectors. The mobile phases (phosphate buffer pH 7.0) contained 5 mM tetra-n-butylammonium ion (TBA) as a counter ion for E3 S. Serum samples were diluted with 200 mM phosphate buffer (pH 7.0) containing 100 mM TBA, then injected to the pre-column. After serum proteins had flowed out from the pre-column, E3 and E3 S were transferred to the enrichment column. Subsequently the analytes were eluted to the analytical column. Detection limits of E3 and E3 S in human serum were 2.5 ng/ml and 295 ng/ml. Serum E3 and E3 S levels (mean +/- SD) of umbilical artery from 18 full-term healthy neonates were 33+/-23 ng/ml and 1.26+/-0.69 microg/ml, respectively.

Calibration↗

Tetrameric assembly of full-sequence protein zero myelin glycoprotein by synchrotron x-ray scattering.

Highly purified myelin P0 glycoprotein was solubilized to 1-8 mg/ml in 0.1% sodium dodecyl sulfate (SDS), and the solution structure of the P0 assembly was studied using synchrotron x-ray scattering. The full-length P0, which was isolated from bovine intradural roots, included both the extracellular and cytoplasmic domains of the molecule. At the higher concentrations (4, 6, and 8 mg/ml, respectively), an x-ray intensity maximum was observed at 316 A, 245 A, and 240 A Bragg spacing. Because the position of this intensity depended on P0 concentration, it is most likely due to interparticle interference. By contrast, the position of a second intensity maximum, which was at approximately 40 A Bragg spacing, was invariant with P0 concentration. This latter intensity was accounted for by monodispersed, 80 A-diameter particles that are composed of eight, approximately 30 A-diameter spheres. Chemical parameters suggest that the 80 A particles correspond to the size of a tetramer of P0 molecules. Therefore, the approximately 30 A spheres would correspond to the sizes of the extracellular and cytoplasmic domains for each of the P0 monomers. The invariance of the second intensity maximum with P0 concentration indicates that the structure of the 80 A-diameter, tetrameric particles is unaltered. According to the liquid model for interparticle interference from charged spheres, the 80 A-diameter particle has 10 negative surface charges which likely arise from negatively charged SDS molecules bound to the transmembrane domain of P0. This binding, however, apparently does not alter the tetrameric assembly of P0, suggesting that intermolecular interactions involving extracellular domains and cytoplasmic domains likely stabilize this assembly. Some of our results have been published in abstract form (Inouye, H., H. Tsuruta, D. A. Kirschner, J. Sedzik, and K. Uyemura. Abstracts of the 4th International School and Symposium on Synchrotron Radiation in Natural Science, June 15-20, 1998. Ustron-Jaszowiec, Poland. p. 31).

Animals↗

Solution x-ray scattering-based estimation of electron cryomicroscopy imaging parameters for reconstruction of virus particles.

Structure factor amplitudes and phases can be computed directly from electron cryomicroscopy images. Inherent aberrations of the electromagnetic lenses and other instrumental factors affect the structure factors, however, resulting in decreased accuracy in the determined three-dimensional reconstruction. In contrast, solution x-ray scattering provides absolute and accurate measurement of spherically averaged structure factor amplitudes of particles in solution but does not provide information on the phases. In the present study, we explore the merits of using solution x-ray scattering data to estimate the imaging parameters necessary to make corrections to the structure factor amplitudes derived from electron cryomicroscopic images of icosahedral virus particles. Using 400-kV spot-scan images of the bacteriophage P22 procapsid, we have calculated an amplitude contrast of 8.0 +/- 5.2%. The amplitude decay parameter has been estimated to be 523 +/- 188 A2 with image noise compensation and 44 +/- 66 A2 without it. These results can also be used to estimate the minimum number of virus particles needed for reconstruction at different resolutions.

Bacteriophage P22↗

Enzymatical properties of psychrophilic phosphatase I.

Phosphatase I purified from a psychrophile (Shewanella sp.) [Tsuruta et al. (1998) J. Biochem. 123, 219-225] dephosphorylated O-phospho-L-tyrosine and phospho-tyrosyl residues in phosphorylated poly(Glu4,Tyr1) random polymer (polyEY) and phosphorylated myelin basic protein (MBP) but not phosphoseryl and/or phosphothreonyl residues in phosphorylated histone H1, casein and phosphorylase a, indicating that the enzyme showed protein-tyrosine-phosphatase (PTPase, EC 3.1.3.48)-like activity in vitro. The enzyme was remarkably inhibited by diethylpyrocarbonate (DEPC), monoiodoacetic acid (MIAA), and monoiodoacetamide (MIAM). Binding of 1 mol of DEPC to 1 mol of the enzyme caused complete inhibition of the enzyme; and 0.88 mol of 1-carboxymethylated histidine per mole of the enzyme was found when 90% of enzyme activity was lost by modification with 14C-MIAA. These results indicated that this psychrophilic enzyme was a PTPase-like enzyme with histidine as its catalytic residue.

Amino Acid Sequence↗

The 80s loop of the catalytic chain of Escherichia coli aspartate transcarbamoylase is critical for catalysis and homotropic cooperativity.

The X-ray structure of the Escherichia coli aspartate transcarbamoylase with the bisubstrate analog phosphonacetyl-L-aspartate (PALA) bound shows that PALA interacts with Lys84 from an adjacent catalytic chain. To probe the function of Lys84, site-specific mutagenesis was used to convert Lys84 to alanine, threonine, and asparagine. The K84N and K84T enzymes exhibited 0.08 and 0.29% of the activity of the wild-type enzyme, respectively. However, the K84A enzyme retained 12% of the activity of the wild-type enzyme. For each of these enzymes, the affinity for aspartate was reduced 5- to 10-fold, and the affinity for carbamoyl phosphate was reduced 10- to 30-fold. The enzymes K84N and K84T exhibited no appreciable cooperativity, whereas the K84A enzyme exhibited a Hill coefficient of 1.8. The residual cooperativity and enhanced activity of the K84A enzyme suggest that in this enzyme another mechanism functions to restore catalytic activity. Modeling studies as well as molecular dynamics simulations suggest that in the case of only the K84A enzyme, the lysine residue at position 83 can reorient into the active site and complement for the loss of Lys84. This hypothesis was tested by the creation and analysis of the K83A enzyme and a double mutant enzyme (DM) that has both Lys83 and Lys84 replaced by alanine. The DM enzyme has no cooperativity and exhibited 0.18% of wild-type activity, while the K83A enzyme exhibited 61% of wild-type activity. These data suggest that Lys84 is not only catalytically important, but is also essential for binding both substrates and creation of the high-activity, high-affinity active site. Since low-angle X-ray scattering demonstrated that the mutant enzymes can be converted to the R-structural state, the loss of cooperativity must be related to the inability of these mutant enzymes to form the high-activity, high-affinity active site characteristic of the R-functional state of the enzyme.

Aspartate Carbamoyltransferase↗

Minimal-change nephrotic syndrome and acute renal failure in a patient with aged onset insulin-dependent diabetes mellitus and autoimmune thyroiditis.

A 61-year-old woman with a 2-year history of insulin-dependent diabetes mellitus (IDDM) developed nephrotic syndrome. Renal biopsy showed minimal-change nephrotic syndrome (MCNS), and no evidence of diabetic glomerulosclerosis. Although steroid therapy was initiated, plasma urea and creatinine rose and hemodialysis was required. After 4 weeks, she responded to steroids and her renal function returned to normal. MCNS, which is not associated with diabetic glomerulosclerosis, has rarely been seen in IDDM patients with nephrotic syndrome. Her human leukocyte antigen typing was A24, BW52, BW61, DR2 and DR9. This typing has been reported to be associated with both IDDM and renal disease.

Acute Kidney Injury↗

The contribution of acute toxicity in animals to occupational exposure limits of chemical substances.

The correlations of lethal doses of various industrial chemicals for rats and mice with occupational exposure limit values were investigated. 50% lethal dose (LD50) values obtained by oral (p.o.) and intraperitoneal (i.p.) injection and 50% lethal concentration (LC50) values obtained by inhalation exposure were collected from Registry of Toxic Effects of Chemical Substances (RTECS). Threshold Limit Value (Time-Weighted Average) (TLVs-TWA) and Threshold Limit Value (Short Term Exposure Limit) (TLVs-STEL) recommended by American Conference of Governmental Industrial Hygienists (ACGIH) were used as exposure limits. TLVs-TWA or TLVs-STEL and LD50 or LC50 values obtained for the rats were plotted on logarithmic scales on the ordinate and abscissa, respectively. High correlations were obtained between these parameters. The order of correlations was: TLVs-STEL vs. LC50s > TLVs-TWA vs. LC50s > TLVs-TWA vs. LD50s i.p. > TLVs vs. LD50s p.o. The same calculations for the relationship between TLVs and lethal doses in mice were also performed. The order of the three types of correlations was same as that of the rats; however, correlation coefficients for TLVs-STEL vs. LC50s and for TLVs-TWA vs. LC50s obtained in mice were smaller than those in rats. TLVs-TWA are, therefore, well correlated with LC50 values rather than LD50 values, particularly with those in rats. High correlations between TLVs-STEL vs. LC50s were also obtained, as had been expected before calculation. The equation: TLV-TWA = 10b x (LC50)a can be obtained from these plottings, where the values a and b are taken from each linear regression line. TLV-TWA for each chemical can be calculated by using LC50 and the equation. The upper and lower 95% confidence limits for calculated TLV-TWA were TLV-TWA (calculated from LC50) x 22.9 and TLV-TWA (calculated)/22.9, respectively, where LC50 for rats expressed in ppm x hr was used.

Animals↗

Subjective duration of every three-year period for 3 to 18 years of age, estimated by students.

Results indicated that both subjective time durations, one day and three years, are well described by the normal distribution if the time scale is logarithmic rather than linear. A remarkable finding obtained here is that in reference to the mean subjective time duration of the junior high school (three years), the mean subjective time durations for each of the three-year periods before elementary school were significantly longer than unity (about 1.2), and the subjective duration of the three year period of the senior high school is significantly shorter (about 0.8). When subjects transferred to other elementary schools at 6 to 11 years of age, the mean subjective time duration of the periods below 11 years of age was much longer, more than 1.3.

Adolescent↗

Imaging RNA and dynamic protein segments with low-resolution virus crystallography: experimental design, data processing and implications of electron density maps.

Single crystal diffraction data were collected from virus crystals in the resolution range of 270 to 14 A using a synchrotron X-ray source and a small-angle scattering instrument adapted for single crystal measurements. Reflections were measured from single crystals of the capsid of the double-stranded DNA bacteriophage HK97 and synthetic Flock House virus-like particles (sFHV). The quality of the low-resolution measurements was confirmed by excellent scaling statistics for both data sets. The sFHV amplitudes between 270 and 90 A resolution were closely similar to independently measured solution scattering data, and to data calculated from the Fourier transform of a uniform density sphere of 315 A diameter. A rotation function computed with the sFHV data between 70 and 20 A resolution was readily interpretable. A uniform density sphere model was used to compute phases for measured amplitudes between 270 and 68 A resolution. The calculated phases were refined and extended to 14 A resolution with real space averaging employing an external mask shape defined by the high-resolution structure. The resulting electron density map displayed regions interpretable as loosely ordered RNA that connected ordered RNA segments seen in a published 3.0 A resolution map. The published high-resolution electron density map lacked data inside 15 A resolution and the interior of the particle in that map appeared hollow. Difference electron density maps corresponding to bulk RNA were computed by subtracting the contribution of the protein shell, based on the available high-resolution atomic model, from either the cryo-electron microscopy density or the low-resolution X-ray density. Features of the RNA were closely similar in the cryo-electron microscopy and X-ray maps, demonstrating the consistency of the two imaging methods. Electron density maps computed at 14 and 6 A resolution with the X-ray amplitudes showed that RNA contributed little to the scattering beyond 14 A resolution.

Bacteriophages↗

Direct observation of an altered quaternary-structure transition in a mutant aspartate transcarbamoylase.

Time-resolved small-angle X-ray scattering (TR-SAXS) was used to monitor the structural changes that occur upon the binding of the natural substrates to a mutant version of the allosteric enzyme aspartate transcarbamoylase from Escherichia coli, in which the creation of a critical link stabilizing the R state of the enzyme is hindered. Previously, SAXS experiments at equilibrium showed that the structures of the unligated mutant enzyme and the mutant enzyme saturated with a bisubstrate analog are indistinguishable from the T and R state structures, respectively, of the wild-type enzyme (Tauc et al., Protein Sci. 3:1998-2004, 1994). However, as opposed to the wild-type enzyme, the combination of one substrate, carbamoyl phosphate, and succinate, an analog of aspartate, did not convert the mutant enzyme into the R state. By using TR-SAXS we have been able to study the transient steady-state during catalysis using the natural substrates rather than the nonreactive substrate analogs. The steady-state in the presence of saturating amount of substrates is a mixture of 60% T and 40% R structures, which is further converted entirely to R in the additional presence of ATP. These results provide a structural explanation for the reduced cooperativity observed with the mutant enzyme as well as for the stimulation by ATP at saturating concentrations of substrates. They also illustrate the crucial role played by domain motions and quaternary-structure changes for both the homotropic and heterotropic aspects of allostery.

Adenosine Triphosphate↗