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Biomedical subjects

Y Miyake

Publications and source records attributed to Y Miyake.

At least 361 records · Page 20Linked to original sources

Reductive cleavage and regeneration of the disulfide bonds in Streptomyces subtilisin inhibitor (SSI) as studied by the carbonyl 13C NMR resonances of cysteinyl residues.

Four enhanced carbonyl carbon resonances were observed when Streptomyces subtilisin inhibitor (SSI) was labeled by incorporating specifically labeled [1-13C]Cys. The 13C signals were assigned by the 15N, 13C double-labeling method along with site-specific mutagenesis. Changes in the spectrum of the labeled protein ([C]SSI) were induced by reducing the disulfide bonds with various amounts of dithiothreitol (DTT). The results indicate that, in the absence of denaturant, the Cys71-Cys101 disulfide bond of each SSI subunit can be reduced selectively. This disulfide bond, which is in the vicinity of the reactive site scissile bond Met73-Val74, is more accessible to solvent than the other disulfide bond, Cys35-Cys50, which is embedded in the interior of SSI. This half-reduced SSI had 65% of the inhibitory activity of native SSI and maintained a conformation similar to that of the fully oxidized SSI. Reoxidation of the half reduced-folded SSI by air regenerates fully active SSI which is indistinguishable with intact SSI by NMR. In the presence of 3 M guanidine hydrochloride (GuHCl), however, both disulfide bonds of each SSI subunit were readily reduced by DTT. The fully reduced-unfolded SSI spontaneously refolded into a native-like structure (fully reduced-folded state), as evidenced by the Cys carbonyl carbon chemical shifts, upon removing GuHCl and DTT from the reaction mixture. The time course of disulfide bond regeneration from this state by air oxidation was monitored by following the NMR spectral changes and the results indicated that the disulfide bond between Cys71 and Cys101 regenerates at a much faster rate than that between Cys35 and Cys50.

Bacterial Proteins↗

Effect of a thromboxane A2 receptor antagonist (AA-2414) on bronchial hyperresponsiveness to methacholine in subjects with asthma.

Bronchial hyperresponsiveness (BHR) to various stimuli is one of the major clinical features of bronchial asthma. In this study, the effect of a thromboxane A2 (TXA2) receptor antagonist, AA-2414, on BHR to methacholine was evaluated in 15 patients with asthma. The methacholine inhalation test was performed before and after oral administration of AA-2414 for 4 days (20 or 40 mg/day). The provocative concentration of methacholine producing a 20% fall in FEV1 (PC20) was measured as an index of BHR. There was a significant increase in PC20 (p less than 0.01) from 0.43 (geometric SEM, 1.42) mg/ml to 0.93 (geometric SEM, 1.43) mg/ml after 40 mg/day of AA-2414, whereas baseline values of FVC and FEV1 were not changed by the treatment. Twenty milligrams per day of AA-2414 did not alter the PC20 value nor the parameter of baseline pulmonary functions. These findings might support our hypothesis that the subthreshold concentration of TXA2 in the bronchial tissues, which has no effect on bronchomotor tone per se, may be involved in BHR in asthma. Further studies with more potent and specific TXA2 receptor antagonists are needed to confirm the conclusion.

Adult↗

Visualization of endo-beta-N-acetylglucosaminidase, lysozyme, and lysostaphin after polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulphate.

Bacteriolytic enzymes of different bond specificities, denatured by sodium dodecyl sulphate (SDS), were electrophoresed in polyacrylamide gels containing bacterial cells, then renatured after removal of SDS by diffusion. Enzyme activity was seen in sharp transparent bands resulting from bacteriolysis in the gels, while these sections containing bacterial cells appeared cloudy. Bacteriolytic enzymes including staphylococcal endo-beta-N-acetylglucosaminidase, lysozyme (N-acetylmuramidase), and lysostaphin (endopeptidase) were detected. The major bacteriolytic enzymes of Staphylococcus spp. were identified in gels after electrophoresis of crude enzyme preparations. This demonstrates the wide applicability of this method to the study of staphylococcal bacteriolytic enzymes. However, it should be noted that the method will fail to detect activities of bacteriolytic enzymes which are irreversibly inhibited by SDS.

Bacteriolysis↗

Production of parathyroid hormone-related protein in tumour xenografts in nude mice presenting with hypercalcaemia.

This study examined the pathophysiological role of parathyroid hormone-related protein (PTHrP) in humoral hypercalcaemia of malignancy (HHM). Seven human tumour xenografts were analysed in nude mice; five tumours (KEsC-2, oesophageal carcinoma; FA-6, pancreatic carcinoma; SEKI, melanoma; Lu-65A and Lu-61, lung carcinomas) were associated with hypercalcaemia and two tumours (MIA PaCa-2, pancreatic carcinoma; PLC/PRF/5, hepatocellular carcinoma) with normocalcaemia. Northern blot analyses, radioimmunoassay and bioassay confirmed the synthesis of PTHrP-like peptides by all five tumours associated with hypercalcaemia, but not by the two associated with normocalcaemia. These observations indicated a very close relationship between the production of PTHrP and the development of HHM. Gel filtration studies of three tumour tissue extracts revealed at least two different molecules with both PTHrP-like immunological and biological activities. One peak eluted at a position between PTHrP (1-141) and cytochrome C and the other at a position identical to cytochrome C. These results suggest that PTHrP molecules with a molecular size equal to or greater than cytochrome C participate as causative agents of HHM. All five tumour xenografts caused hypercalcaemia when grown to a size of 1.5 g in nude mice. Under cell culture conditions, four original cell lines, KEsC-2, FA-6, SEKI and Lu-65A secreted 450.0, 45.0, 3.6 and 3.0 pmol of immunoreactive PTHrP/1.5 x 10(9) cells (approximately equivalent to 1.5 g wet weight) 24 h-1 into their respective culture media. Since a subcutaneous infusion of 100 pmol 24 h-1 of PTHrP (1-34) into nude mice was sufficient to induce significant hypercalcaemia, we speculate that PTHrP alone released from tumour cells could induce hypercalcaemia at least in the case of KEsC-2, and possibly in FA-6. With regard to other tumours associated with hypercalcaemia, further examination of PTHrP and other compounds with bone-resorbing activity in these transplantable tumours is required to obtain a better understanding of this morbidity.

Animals↗

Mechanism of aminoglycoside enhancement of Staphylococcus aureus adherence to HeLa cells.

There is enhanced adherence of Staphylococcus aureus to HeLa cells if the organism is grown in the presence of sub-lethal concentration of aminoglycosides. In this study, we investigated the mechanism of this enhancement. Cell surface components obtained by lysosaphin digestion under hypertonic conditions were examined for binding to HeLa cells. The components considered responsible for the adherence were recovered more from aminoglycoside treated cells than from control, benzylpenicillin or chloramphenicol treated cells. Using a contact angle measurement, the bacterial cell surface was found to be more hydrophobic after growing in the presence of some aminoglycosides, and hydrophilic which decreased adherence, after growing in the presence of benzylpenicillin and ofloxacin. Spectinomycin and kasugamycin, which are both aminoglycosides which do not cause misreading, failed to enhance adherence suggesting that misreading caused by aminoglycosides plays an important role in the enhancement of adherence.

Aminoglycosides↗

Electrophoretic mobility of cefodizime-treated Staphylococcus aureus and chemiluminescence of human polymorphonuclear leucocytes.

The electrophoretic mobility of Staphylococcus aureus 209P treated with cefodizime or cefotiam was examined by microscopic electrophoresis, and the production of oxygen-derived radicals by human polymorphonuclear leucocytes (PMN) was measured by a luminol-chemiluminescence assay. S. aureus cells moved from the negative to the positive electrode. Treatment with more than 0.039 mg/L (1/256 MIC) cefodizime or 0.313 mg/L (1/4 MIC) cefotiam significantly reduced the mean mobility compared with the untreated bacterial cells. The decrease of the electrophoretic mobility of antibiotic treated bacteria indicated the decrease of the negative charge of the cell surface. Chemiluminescence of PMN when stimulated by S. aureus treated with more than 0.156 mg/L cefodizime (1/64 MIC) or 1.25 mg/L cefotiam (MIC) increased significantly compared with the untreated cells. These results suggested that the antibiotics caused a decrease of negative charge density on the cell surface of S. aureus, followed by an increase of phagocytic activity of PMN for S. aureus. Furthermore, cefodizime showed this effect even at the low drug-concentration which did not influence the growth of the bacteria cells.

Cefotaxime↗

Studies on Phe-228 and Leu-307 recombinant mutants of porcine kidney D-amino acid oxidase: expression, purification, and characterization.

Two recombinant mutants of porcine kidney D-amino acid oxidase [EC 1.4.3.3, DAO], in which Tyr(228) and His(307) are replaced with Phe and Leu, respectively, have been expressed in Escherichia coli and purified to apparent homogeneity. The molecular size and amino-terminal sequence of the two mutants were the same as those of the native DAO. Kinetic analysis revealed that the Michaelis constants of the Phe-228 and Leu-307 mutants for D-alanine were 71- and 10-fold and the inhibition constants for benzoate, a potent competitive inhibitor, were 1,189- and 18-fold greater than those of the native DAO, respectively. The maximum velocities of the Phe-228 and Leu-307 mutants were 66 and 58% that of the native DAO. The kinetically estimated dissociation constant of the Leu-307 mutant for FAD was 28-fold greater than that of the native DAO, whereas the value of the Phe-228 mutant was comparable to that of the native DAO. The Leu-307 mutant and the recombinant wild-type DAO were inactivated by D-propargylglycine (D-PG), a suicide substrate. However, the Phe-228 mutant was resistant to the inactivation. Absorption peaks of the Phe-228 mutant were blue-shifted about 10 nm from the corresponding peaks of the wild-type DAO, and the oxidized form was fully reduced by D-alanine without appearance of the purple intermediate.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Genetic and molecular properties of human and rat renin-binding proteins with reference to the function of the leucine zipper motif.

The presence of a leucine zipper motif was recognized in the deduced amino acid sequences of human and rat renin-binding proteins (RnBPs) on cloning and sequence analysis of the RnBP cDNAs. The in vitro synthesized RnBPs, with the respective cDNAs, formed heterodimers with porcine renin and homodimers. On comparison of these properties with those of porcine RnBP, the leucine zipper motif was suggested to be a functional domain common to animal RnBPs. In addition to the motif, a hydrophobic domain adjacent to the motif and 10 cysteine residues were also well conserved in the three RnBPs. Moreover, about 85% of their amino acid sequences were identical. The RnBP mRNAs were expressed in the kidneys as the same size of 1.5-kb and the genes are suggested to exist as single copies in the genomes. Despite the high similarities in genetic and molecular properties, the molecular weights of human and rat RnBPs were 43,000, which is 1,000 larger than that of porcine RnBP. The immunoreactivities of human and rat RnBPs toward anti-porcine RnBP antiserum were 88 and 8% that of porcine RnBP, respectively, and the affinities of the two RnBPs for porcine renin were remarkably less than that of porcine RnBP. Moreover, the human and rat RnBP homodimers were partly dissociated under the conditions under which porcine RnBP existed as a dimer. These results indicate distinct differences in the molecular properties among the three RnBPs, in spite of their being highly similar structurally and functionally.

Amino Acid Sequence↗

Inhibitory effect of inhaled procaterol on anaphylactic bronchoconstriction and thromboxane A2 production in guinea-pigs.

This study was designed to examine whether an inhaled beta 2-agonist, procaterol, inhibits thromboxane A2 (TXA2) production induced by antigen challenge in passively sensitized guinea-pigs in vivo. Antigen-induced bronchoconstriction was markedly inhibited by pre-treatment with procaterol. Inhaled procaterol significantly reduced in a dose-dependent manner the increment in TXB2 concentration in bronchoalveolar lavage fluid obtained 5 min after antigen challenge. Aerosol administration of procaterol significantly inhibited bronchoconstriction induced by inhaled histamine. These results suggest that inhalation of procaterol has an inhibitory effect on antigen-induced TXA2 production as well as a protective effect against bronchoconstriction induced by bronchoactive agents.

Administration, Inhalation↗

Inhibitory effect of inhalation of a thromboxane synthetase inhibitor on bronchoconstriction induced by aerosolized leukotriene C4 and thromboxane A2 analogue in anesthetized guinea pigs.

Effect of aerosol administration of a thromboxane synthetase inhibitor (OKY-046) on bronchoconstriction induced by aerosol leukotriene C4, histamine and a thromboxane A2 analogue (STA2) was studied in anesthetized, artificially ventilated guinea pigs in order to evaluate the effectiveness of inhalation of OKY-046 on an unfavorable mechanism of secondary release of thromboxane A2. 0.01-1.0 micrograms/ml leukotriene C4, 25-400 micrograms/ml histamine and 0.033-1.0 micrograms/ml STA2 inhaled from an ultrasonic nebulizer developed for small animals caused a dose-dependent increase of pressure at the airway opening (Pao), which is considered to be an index representing bronchial response. Pretreatment of the animals with aerosol OKY-046 (0.035 and 0.35 mg/animal) significantly reduced the airway responses produced by inhalation of leukotriene C4 and STA2, in a dose-dependent manner, while the pretreatment did not affect the histamine dose-response curve. These findings suggest that aerosol leukotriene C4 and STA2 activate thromboxane synthesis in the airway, and inhalation of OKY-046 may be useful for preventing the secondary release of thromboxane A2, which is an unfavorable mechanism in asthma.

Administration, Inhalation↗

Effects of antibiotics on nonopsonized adherence of Staphylococcus aureus to human polymorphonuclear leukocytes.

We investigated the effects of several antibiotics on the adherence of Staphylococcus aureus FDA 209P to polymorphonuclear leukocytes. Sublethal concentrations of aminoglycosides enhanced staphylococcal adherence to polymorphonuclear leukocytes, whereas beta-lactams, minocycline, ofloxacin and clindamycin decreased the adherence. Chloramphenicol and rokitamycin had no effect. It is likely that the adherence following antibiotic treatment is related to cell surface hydrophobicity determined by the measurement of the contact angle of 1-bromonaphthalene on a monolayer of staphylococcal cells.

Aminoglycosides↗

In vitro susceptibility of Ureaplasma urealyticum clinical isolates to new macrolides.

Nine antimicrobial agents, the new macrolides, rokitamycin and midecamycin acetate, and seven other antibiotics, tetracycline, minocycline, doxycycline, josamycin, erythromycin, spiramycin, and norfloxacin, were studied for their antimicrobial activity against 100 strains of Ureaplasma urealyticum, using a microtiter broth dilution technique. The new macrolides, rokitamycin and midecamycin acetate, had the highest activity, with the MIC against 90% of isolates tested (MIC90) being less than or equal to 0.05 microgram/ml. MICs90 of erythromycin, josamycin, doxycycline, minocycline and tetracycline ranged from 0.1 to 0.78 micrograms/ml. Norfloxacin was least active, with a MIC90 of 12.5 micrograms/ml. Five of 100 strains tested were resistant (MIC greater than or equal to 12.5 micrograms/ml) to tetracycline, and two were resistant to minocycline and doxycycline; all of these were susceptible to rokitamycin and midecamycin acetate.

Drug Resistance, Microbial↗

Incidence and characterization of Staphylococcus aureus from the tongues of children.

Three hundred and seven children who had no diseases other than dental disease were examined for their oral carriage of Staphylococcus aureus, the most common persistent human pathogen. Eighty-four percent of them were positive for staphylococci, and 33% were positive for S. aureus. Among the 100 strains of S. aureus isolated, 40 strains produced enterotoxin, and 19 strains produced exfoliative toxin. Their susceptibility to antibiotics was also investigated: Six strains demonstrated resistance to methicillin (MIC greater than or equal to 12.5 microgram/mL), and 50% of the isolates were borderline resistant (MIC of 3.13 to 6.25 micrograms/mL) to the drug. These data suggest that the mouths of children could be reservoirs of pathogenic S. aureus.

Child, Preschool↗

Inheritance of the Robertsonian translocation (1/21) in the Holstein-Friesian cattle. I. Chromosome analysis.

A new type of Robertsonian translocation (1/21) was found in Holstein-Friesian breed, and transmitted through the three generations, namely from the bull to 6 out of 11 daughters and 4 out of 7 grand-daughters/sons. Although the father of the bull was not available for cytogenetical studies, it was ascertained that 5 half-sibs of the bull had a normal karyotype. By C-banded karyotypes, the 9 translocation carriers within the three generations had a dicentric centromere in the translocated chromosome. It seems that no morphological effects have been noted to be associated with the translocation in all cases.

Animals↗

[Analysis of electrically evoked response (EER) in relation to the central visual pathway of the cat (2). Response characteristics of the lateral geniculate neurons].

To analyze the electrically evoked response (EER) in relation to the central visual pathway, the response characteristics of the lateral geniculate neurons (LGNs) of the EER in 35 anesthetized adult cats were studied. Responses of the LGNs showed interindividual variation of more than one log unit in terms of the stimulus threshold for electrical stimuli. As the stimulus intensity increased, the spikes with constant latencies were recorded, which showed bursts with much stronger stimuli. The latencies of the spikes were closely correlated with those of negative components of EER. The LGNs were divided into two major groups by the latency. The periodical and alternative excitation of these neurons contributed to form the first negative wave of EER. The latency of these two major groups of LGNs was reversed when the electrode polarity was changed. At higher stimulus intensities, the components with short latency became dominant and those with longer latency were suppressed. The above results suggested that the periodical excitation of LGNs and the formation of the prominent EER components may result from the interaction between on- and off-type retinal ganglion cells and amacrine cells. It was also suggested that the origins of the wavelets in negative waves of EER at strong stimuli are the bursts of the spikes of the visual cortex neurons.

Animals↗

Phosphoramidon-sensitive endothelin converting enzyme in rat lung.

A neutral proteinase with endothelin (ET)-1 converting activity was identified in cytosol and membrane fractions prepared from rat lung, in a ratio of 1:4, respectively. The membrane-bound proteinase was solubilized by 0.5% 3-[(3-cholamidopropyl) dimethylammonio]-1-propanesulfonate (CHAPS) with an increase in specific activity, and then was characterized. The solubilized proteinase was capable of converting big ET-1 to ET-1 with an optimum pH of 6.5, and the conversion was dose-dependently suppressed by phosphoramidon (IC50 = 0.5 microM). The molecular mass of the proteinase was estimated to be about 500 kDa by gel filtration in the presence of 0.5% CHAPS. These results indicate that rat lung contains a phosphoramidon-sensitive neutral proteinase catalyzing conversion of big ET-1 to ET-1. The proteinase may be involved in the biosynthetic pathway of ET-1 in the lung and/or the conversion of circulating big ET-1.

Animals↗

Mode of antibacterial action of cefprozil, a new cephalosporin, on Escherichia coli, Serratia marcescens and Morganella morganii.

The mode of antibacterial action of cefprozil (CFPZ, BMY-28100), a newly developed cephalosporin, was investigated using Escherichia coli K12, Serratia marcescens IFO 12648 and Morganella morganii IFO 3848 as test organisms, in comparison with the action of cefaclor (CCL). The minimum inhibitory concentrations (MICs) of CFPZ for these organisms were 1.56, 800 and 25 micrograms/ml, whereas those of CCL were 1.56, 800 and 100 micrograms/ml, respectively. The addition of a subinhibitory concentration (1/4 MIC) of ethylenediaminetetraacetic acid (EDTA), which damages the permeability barrier of the outer membrane, markedly reduced the MICs of CFPZ for E. coli and S. marcescens, compared with those of CCL, whereas the MICs of both antibiotics for M. morganii were hardly affected by the presence of EDTA. CFPZ was more stable to beta-lactamase activities from these organisms than CCL. The cross-linking reactions of peptidoglycan synthesis catalyzed by the ether-treated cells from these organisms were inhibited by a lower concentration of CFPZ than of CCL.

Bacteria↗