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Biomedical subjects

N Okamura

Publications and source records attributed to N Okamura.

At least 163 records · Page 9Linked to original sources

Purification and characterization of human microsomal dipeptidase.

Human microsomal dipeptidase (MDP, formerly referred to as dehydropeptidase-I or renal dipeptidase) [EC 3.4.13.11] was solubilized from the membrane fraction of kidney by treatment with octyl-beta-D-glucoside and purified by a procedure including ion exchange chromatography and affinity chromatography on cilastatin-immobilized Sepharose. The purified human MDP was found to be homogeneous on sodium dodecyl sulfate (SDS)-polyacrylamide gel electrophoresis. The apparent molecular weight (Mr) was estimated by SDS-polyacrylamide gel electrophoresis under non-reducing conditions to be 130 kDa, comprising a homodimer of two subunits. After treatment with endoglycosidase F, human MDP showed a single band with an apparent Mr of 42 kDa on SDS-polyacrylamide gel electrophoresis. Human MDP was found to bind to Con A-Sepharose and the activity was eluted with methyl-alpha-D-mannopyranoside, suggesting that human MDP is a glycoprotein. We also examined the substrate specificity of human MDP and found that human MDP catalyzed the hydrolysis of S(substituent)-L-cysteinyl-glycine adducts such as L-cystinyl-bis(glycine) and S-N-ethylmaleimide-L-cysteinyl-glycine, as well as the conversion of leukotriene D4 to leukotriene E4. These results suggest that MDP might play an important role in the metabolism of glutathione and leukotriene.

Amino Acids↗

Stimulatory effects of a short chain phosphatidate on superoxide anion production in guinea pig polymorphonuclear leukocytes.

Treatment of guinea pig polymorphonuclear leukocytes (PMNL) with a phosphatidate containing short-chain fatty acids, 1,2-didecanoyl-3-sn-phosphatidate (PA10), induced substantial superoxide anion (O2-) production in a dose-dependent manner, whereas phosphatidates prepared from egg lecithin and 1,2-dioleoyl-3-sn-phosphatidate (PA18:1) had no such effect. Calcium was not involved in PA10-induced O2- production, since the production was also observed in the case of addition of EGTA prior to PA10 or pretreatment of PMNL with quin-2 and EGTA to eliminate contributions of both extracellular and intracellular calcium. We have reported in previous papers that the phosphorylation of 46K protein(s), which was commonly observed in parallel with an activation of NADPH oxidase in PMNL, was increased by treatment with 10 microM 1-oleoyl-2-acetylglycerol (OAG) with little change in the O2- production (Okamura et al. (1984) Arch. Biochem. Biophys. 228, 270-277; Ohtsuka et al. (1988) Arch. Biochem. Biophys. 260, 226-231). Treatment of PMNL with a combination of PA10, which slightly increased 46K protein phosphorylation, and such a low concentration of OAG induced a marked increase in the O2- production with the increase in 46K protein phosphorylation, which was probably due to OAG action. Thus, it is likely that this protein phosphorylation plays a significant role in the stimulation of the O2- production by phosphatidate in PMNL.

Animals↗

Production of tropane alkaloids by cultured cells of a Duboisia hybrid.

The production of scopolamine-rich calli was investigated by the quantification of tropane alkaloids in a gas chromatograph equipped with a flame thermoionic detector (FTD). Stem and leaf segments from a selected strain, M-II-8-6, a hybrid between Duboisia myoporoides R. Br. and D. leichhardtii F. Muell, were used for this experiment. Stem-derived callus subcultured for over one year in the dark on Murashige-Skoog (MS) medium containing 0.1 mg/l indole-3-acetic acid (IAA) produced hyoscyamine ane scopolamine with a yield of 0.006 and 0.005% dry weight, respectively. Leaves of shoot cultures did not show any detectable levels of alkaloids. However, the leaf callus subcultured for over one year in the dark on MS medium containing 0.1 mg/l IAA produced hyoscyamine and scopolamine with a yield of 0.007 and 0.009% dry weight, respectively. These results indicate that the ability to synthesize tropane alkaloids in stem- and leaf-derived calli can be maintained on MS medium containing IAA.

Cells, Cultured↗

Decrease in bicarbonate transport activities during epididymal maturation of porcine sperm.

Kinetic studies of [14C]HCO3- and [35S]SO4(2-) transport show the existence of a common transport system for the two anions on the plasma membranes of porcine epididymal sperm. Km value for bicarbonate (8.3mM) is within the range of physiological concentration of bicarbonate. The anion transport activity is dependent on the temperature but independent of co-existence of Na+. Its pH dependency and sensitivity to the several anion transport inhibitors are similar to those observed in erythrocyte. Anion transport activity decreases during sperm maturation in epididymis.

Adenylyl Cyclases↗

Dexamethasone inhibits the cytotoxic activity of tumor necrosis factor.

Effect of dexamethasone (DEX) on the cytotoxic activity of tumor necrosis factor (TNF) was examined using murine fibroblast cell line (L929 cells). DEX protected cells from the cytotoxic action of TNF. Protection of cytotoxic action was apparent when cells were pre-treated with DEX for 12h and no protection was observed in the presence of cycloheximide. These results suggested that de novo synthesis of new proteins was required for DEX-mediated protection. Moreover, prolonged simultaneous treatment with TNF and DEX resulted in the enhancement of cell growth, suggesting that TNF acted as a growth factor when cells were protected from the cytotoxic action of TNF. These results suggested that the signal transduction system for fibroblast growth enhancing and cytotoxic action of TNF were different from each other and that the interaction between TNF and glucocorticoids may play a modulating role in some inflammatory processes in vivo.

Animals↗

Relationship of protein phosphorylation to the activation of the respiratory burst in human neutrophils. Defects in the phosphorylation of a group of closely related 48-kDa proteins in two forms of chronic granulomatous disease.

When 32P-labeled human neutrophils were activated by exposure to phorbol myristate acetate, three 48-kDa proteins (designated pp48/6.8, pp48/7.3, and pp48/7.8, from their isoelectric points) were found to have become labeled. With maximal stimulation, labeling was complete by 30 s. With lesser degrees of stimulation, the extent of labeling at 2 min correlated with rates of production by the phorbol-treated cells. Increased labeling of these 48-kDa proteins was also seen in cells exposed to f-Met-Leu-Phe. In phorbol-treated neutrophils from patients with X-linked cytochrome b558-negative chronic granulomatous disease, pp48/7.8 was labeled in a normal fashion, but pp48/6.8 and pp48/7.3 failed to take up 32P. In cells from patients with autosomal recessive cytochrome b558-positive chronic granulomatous disease, however, none of the three proteins took up 32P in response to phorbol. The three proteins appear to be very closely related, as indicated by the findings that phosphoserine was the only phosphoamino acid found in any of the three, and all three yielded identical one-dimensional phosphopeptide maps after digestion with either chymotrypsin or staphylococcal proteinase V8. These results reconcile earlier observations on protein phosphorylation in chronic granulomatous disease and provide further evidence for a relationship between the phosphorylation of this group of 48-kDa proteins and the activation of the respiratory burst oxidase.

Blood Proteins↗

Spontaneous oscillatory contraction of sarcomeres in skeletal myofibrils.

We found that the lengths of all sarcomeres spontaneously oscillated in an isolated skeletal myofibril, when both ends were fixed, submillimolar to millimolar concentrations of ATP, ADP and inorganic phosphate (Pi) were present, and Ca2+ was removed. Narrowing and widening of an H-zone and an I-band were observed corresponding to the shortening and lengthening of a sarcomere, suggesting that thick and thin filaments slide past each other. The oscillation of each sarcomere was asymmetrical, consisting of a rapid lengthening phase and a slow shortening phase. The period of oscillation was about 3s; the peak-to-peak amplitude of oscillation reached as much as 30% of the average sarcomere length. The propagation of the sarcomere oscillation along the long axis of the myofibril was observed occasionally in single myofibrils and frequently in bundles of myofibrils. The 'state'-diagram showing the concentration range of ADP and Pi in which contraction, oscillation or relaxation of myofibrils occurs in the presence of ATP and the absence of Ca2+ suggested that the oscillation is a third state of skeletal muscle located in between the contracting and relaxing states.

Adenosine Diphosphate↗

Further evidence for the involvement of the phosphorylation of 46K protein(s) in the regulation of superoxide anion production in guinea pig polymorphonuclear leukocytes.

Treatment of guinea pig polymorphonuclear leukocytes (PMNL) with arachidonate at concentrations of less than 20 microM induced slight stimulation of superoxide anion (O2-) production with little enhancement of the phosphorylation of the 46K protein(s). The stimulation of the phosphorylation of those protein(s) has been observed in parallel with an activation of NADPH oxidase in our previous studies (N. Okamura et al. (1984) Arch. Biochem. Biophys. 228, 270-277; T. Ohtsuka et al. (1986) Biochem. Biophys. Acta 888, 332-337; T. Ohtsuka et al. (1987) J. Biochem. 101, 897-903). On the other hand, the phosphorylation of the same protein(s) was increased by the treatment of PMNL with 10 microM 1-oleoyl-2-acetylglycerol (OAG), a permeable diacylglycerol, with little change in O2- production. Treatment of PMNL with a combination of such low concentrations of arachidonate and OAG, induced marked increase in O2- production in accordance with the increase in the phosphorylation of 46K protein(s) which was probably due to OAG action. Thus, it is likely that this protein phosphorylation is a prerequisite or regulatory to the stimulation of the O2- production by arachidonate in PMNL.

Animals↗

Quantitative evaluation of vascular permeability in the gerbil brain after transient ischemia using Evans blue fluorescence.

Mongolian gerbils were used to evaluate brain edema during restoration of flow following bilateral carotid occlusion for 1 h. We have modified the method for fluorometric measurement of Evans blue to monitor vascular protein leakage (vasogenic edema). The extraction of extravasated Evans blue was performed by homogenizing the whole brain in 50% trichloroacetic acid. The supernatant was diluted fourfold with ethanol and the Evans blue fluorescence was measured. The tissue blank was negligible. Evans blue content of the plasma was similarly determined and the ratio of tissue to plasma Evans blue content was calculated. Furthermore, Evans blue fluorescence was used for microscopic investigation. It is suggested that Evans blue fluorescence can be applied for quantification of protein leakage with much more sensitivity and accuracy than the colorimetric absorbance method, as well as for tissue localization of protein leakage.

Animals↗

Differences among Shigella spp. in susceptibility to the bactericidal activity of human serum.

Clinical isolates of Shigella spp. were examined for their susceptibility to human serum. The susceptibility of the strains to immune and nonimmune human serum was dependent upon the size of the bacterial inoculum and the concentration of serum. There were differences among Shigella spp. in susceptibility to human serum: S. sonnei strains were the least susceptible, strains of S. boydii and S. flexneri serotype 6 were intermediate, and those of S. flexneri other than serotype 6 and S. dysenteriae were the most susceptible. Experiments in which heat-treated (56 degrees C for 30 min, or 50 degrees C for 20 min) serum was used, and analysis of activation of complement by lipopolysaccharides (LPS) from each Shigella sp., suggested that LPS composition, especially the O antigen polysaccharide chains, contributes to the differences among Shigella spp. in susceptibility to human serum.

Blood Bactericidal Activity↗

Large plasmid in Shigella boydii is responsible for epithelial cell penetration.

A large plasmid in a virulent Shigella boydii 5 strain was transferred to plasmid-cured avirulent strains of S. boydii 5, S. boydii 12, S. sonnei form II, and Escherichia coli K12. The transconjugants acquired the ability to invade tissue culture cells, which indicated that the large plasmid in S. boydii is responsible for epithelial cell invasiveness.

Animals↗

Solubilization and characterization of calcitonin gene-related peptide binding site from porcine spinal cord.

The binding site for calcitonin gene-related peptide (CGRP) was solubilized with 3-[(3-cholamidopropyl)dimethylammonio]-1-propane sulfonate (CHAPS) in an active form from porcine spinal cord. 125I-labeled human alpha-CGRP (125I-CGRP) binding to the solubilized protein was determined by filtration using a GF/B glass filter. The maximal binding activity (approximately 60% of the crude membrane fraction) was obtained with 5 mM CHAPS. 125I-CGRP binding to the solubilized protein was of high affinity, saturability, and high specificity, having KD and Bmax values of 3.69 pM and 338 fmol/mg of protein, respectively. The binding activity was eluted in a single peak with a molecular mass of 400,000 daltons by gel filtration on TSK gel G4000SW. These results suggest that the solubilized protein may be responsible for the specific binding site.

Animals↗

Immunoglobulin subclasses in chronic tonsillitis.

The distribution and proportion of immunoglobulin-producing cells in palatine tonsil, including IgG and IgA subclasses, have been examined in chronic tonsillitis using an immunofluorescence method. Results obtained indicate that the percentage ratios of IgG1:IgG2:IgG3:IgG4 were 53.1:35.9:4.7:6.3. Higher percentages of IgG1- and lower percentages of IgG2-producing cells were found among 3 types of tonsillitis. Proportional ratios of IgA1:IgA2 were approximately 80:20, and a slight elevation of IgA2-producing cells was observed in chronic tonsillitis.

Antibody-Producing Cells↗

Positive inotropic effect of calcitonin gene-related peptide mediated by cyclic AMP in guinea pig heart.

The mechanism of cardiac actions of rat calcitonin gene-related peptide (CGRP) was analyzed on isolated guinea pig hearts. CGRP exerted a positive inotropic effect in a dose-dependent manner on the electrically driven left atria but not on the ventricles. Immunohistochemical studies demonstrated that CGRP-like immunoreactive nerves were distributed densely in the myocardia of the atria but only sparsely in those of the ventricles. The CGRP-induced augmentation of the contraction was accompanied by the shortening of the time to peak force and the increase in the relaxation velocity. The positive inotropic response to CGRP was significantly enhanced by isobutylmethylxanthine and was attenuated by adenosine. CGRP increased the action potential amplitude and prolonged action potential duration at the level of 50% repolarization in the left atria. In the preparations, which were partially depolarized with an increase in extracellular potassium, CGRP induced slow response action potentials. These electrophysiological results indicate that CGRP causes an increase in the slow inward Ca2+ current. The cyclic AMP content in the left atria significantly increased following the addition of CGRP, the time course of which was nearly consistent with that of the augmentation of the contractile force. In the membrane preparation of the atria, the activity of adenylate cyclase was enhanced by CGRP in a dose-dependent manner. These effects of CGRP are qualitatively similar to those of beta-adrenoceptor stimulation. It is concluded that the CGRP-induced response in the guinea pig atria is attributed to the activation of adenylate cyclase via stimulation of its specific receptor and the subsequent increase in the intracellular cyclic AMP level.

Action Potentials↗

Phosphorylation of the oxidase-related 48K phosphoprotein family in the unusual autosomal cytochrome-negative and X-linked cytochrome-positive types of chronic granulomatous disease.

Activation of 32P-loaded neutrophils with phorbol myristate acetate causes the labeling of a family of three 48K proteins that focus near neutral pH. The relationship between these phosphoproteins and the activation of the respiratory burst has been supported by the previous finding that phosphorylation was defective in the two most common types of chronic granulomatous disease (CGD): X-linked cytochrome-negative (X/-) and autosomal cytochrome-positive (A/+). In this report, these studies have now been extended to the rare A/- and X/+ forms of the disease. In all three patients with A/- CGD examined, the two most acidic 48K proteins failed to undergo enhanced phosphorylation in response to phorbol stimulation, a finding similar to that seen in X/- patients. In contrast, neutrophils from two patients with X/+ CGD appeared to phosphorylate the neutral 48K proteins in a normal fashion. It thus appears that the different phosphorylation patterns seen in chronic granulomatous disease are a reflection of the genetic heterogeneity of this disorder. These findings lend further support to the conclusion that the 48K phosphoprotein family is related to the respiratory burst, although not necessarily in a straightforward manner.

Adult↗

The activating effects of bicarbonate on sperm motility and respiration at ejaculation.

Mature porcine sperm preserved in the cauda epididymis are quiescent. At ejaculation, they are mixed with the seminal vesicle fluid containing HCO3- and are rapidly activated. The role of HCO3- on the sperm activation process at ejaculation was studied in vitro. HCO3- quickly increased the motility, respiration rate and cAMP content of the porcine epididymal sperm. The extent of activation was proportional to the pCO2 in the medium. The activating effect of HCO3- on the motility was observed even in the absence of fructose as well as in the presence of KCN. 8-Bromoadenosine 3',5'-cyclic monophosphate and theophylline showed similar activating effects to that of HCO3-. However, HCO3(-)-free seminal plasma, Ca2+, amino acids, intermediates of the Krebs cycle, substrates of respiration and increases in the intracellular pH, extracellular pH or ionic strength of the medium had no effect. Fructose sustained the active state of the sperm and gradually increased both the motility and respiration rate when the dose of HCO3- was low. The anion channel blocker enhanced the activating effect of HCO3-. These results suggest that, upon ejaculation, HCO3- is a unique activator in vivo which makes the quiescent sperm motile via the HCO3(-)-adenylate cyclase-cAMP system, to which an endogenous HCO3- derived from metabolic CO2 may be related.

Animals↗

Reduced sensitivity to catecholamine in Werner's syndrome fibroblasts.

The beta-adrenergic receptor-coupled adenylate cyclase system has been investigated in normal and Werner's syndrome fibroblasts. The basal levels of cAMP in Werner and normal control cells were similar, whereas the isoproterenol-induced increase in cAMP levels was far less for Werner cells than for control cells. In the broken cell preparations isoproterenol stimulated the adenylate cyclase of only control cells, not of Werner cells, although NaF or prostaglandin E1 stimulated the enzyme of both cells to the same extent. The beta-adrenergic receptor concentrations analyzed with hydrophilic radioligand were nearly equal in Werner and in control cells. A reduction of functional activity of the beta-adrenergic receptor in Werner cells is thus suggested.

Adenylyl Cyclases↗