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I Kusaka

Publications and source records attributed to I Kusaka.

At least 37 records · Page 2Linked to original sources

Patch clamp studies on ion pumps of the cytoplasmic membrane of Escherichia coli. Formation, preparation, and utilization of giant vacuole-like structures consisting of everted cytoplasmic membrane.

Formation of giant protoplasts from normal Escherichia coli cells resulted in the formation of giant vacuole-type structures (which we designate as provacuoles) in the protoplasts. Electron microscopic observation revealed that these provacuoles were surrounded by a single membrane. We detected inner (cytoplasmic) membrane proteins in the provacuolar membrane but not outer membrane proteins. Biochemical analyses revealed that the provacuoles consist of everted cytoplasmic membranes. We applied the patch clamp method to the giant provacuoles. We have succeeded in measuring current that represents inward movement of H+ because of respiration and to ATP hydrolysis by the FoF1-ATPase. Such current was inhibited by inhibitors of the respiratory chain or FoF1-ATPase. This method is applicable for analyses of ion channels, ion pumps, or ion transporters in E. coli or other microorganisms.

Cytoplasm↗

Association of endogenous insulin secretion and mode of therapy with body fat and serum leptin levels in diabetic subjects.

Insulin is one of the hormonal regulators of leptin synthesis and participates in adipose tissue maintenance. The present study was undertaken to clarify the association of endogenous insulin secretion and mode of therapy with body fat and serum leptin levels in diabetic subjects. We measured the fasting serum C-peptide level, as an estimate of endogenous insulin secretion, and the serum leptin level in 176 Japanese diabetic subjects (79 men and 97 women; age, 55.9+/-14.3 years; body mass index [BMI], 23.8+/-4.1 kg/m2 [mean+/-SD]). Thirty-one subjects were treated with diet therapy alone, 66 with sulfonylurea (SU), and 79 with insulin (including 29 with type I diabetes mellitus). Body fat was analyzed by the impedance method. Serum leptin levels significantly correlated with the BMI and body fat and were higher in women, mainly because of their greater body fat. Serum C-peptide concentrations positively correlated with body fat and serum leptin in subjects treated with diet and SU. In insulin-treated type II diabetic subjects, both serum C-peptide and the daily insulin dose were weakly associated with body fat and serum leptin. In those subjects, despite a lower percent body fat and body fat mass, serum leptin concentrations (10.3+/-8.4 ng/mL) were comparable to the levels in subjects treated with diet (8.8+/-8.5 ng/mL). When compared within the same BMI and body fat groups (BMI 20 to 25 and > 25 kg/m2) including the control subjects matched for age and sex, serum leptin levels were higher in insulin-treated type II diabetic subjects versus the control subjects and diabetic patients treated with diet or SU. Stepwise regression analysis for all of the diabetic subjects showed that both the serum C-peptide level and exogenous insulin administration, as well as the BMI, gender, and age, were determinants of the serum leptin level. In conclusion, endogenous insulin secretion is closely associated with body fat and serum leptin in diabetic subjects treated with diet therapy and SU. In Japanese insulin-treated type II diabetic subjects, both endogenous and exogenous insulin are associated with body fat and serum leptin, which is maintained at levels comparable to or somewhat higher than the levels in control subjects and diabetic patients treated without insulin.

Adipose Tissue↗

Exaggerated urinary excretion of aquaporin-2 in the pathological state of impaired water excretion dependent upon arginine vasopressin.

The present study was undertaken to determine whether urinary excretion of aquaporin-2 (UAQP-2) is of value to diagnose the pathological state of water retention and hyponatremia. UAQP-2 under ad libitum water drinking was 429 fmol/mg creatinine in the patients with water retention, a value significantly greater than that of 153 fmol/mg creatinine in the normal subjects. An acute oral water load test (20 mL/kg BW) was performed in 7 normal subjects (22-25 yr old) and 10 patients with water retention and hyponatremia (55-75 yr old). The percent excretion of the water load was only 30% in the patient group compared with 70% in the control group (P < 0.01). In the control group, minimal urinary osmolality was as low as 131 mosmol/kg H2O, which was responsible for the decrease in plasma arginine vasopressin (AVP) levels after the reduction in plasma osmolality. In the patient group, minimal urinary osmolality was 320 mosmol/kg H2O, and free water clearance remained below 0.6 mL/min after the water load. This impaired water excretion was consistent with the nonsuppressible levels of plasma AVP despite hypoosmolality. The nadir of UAQP-2 was obtained at 60-90 min. The minimal UAQP-2 was reduced to 284 fmol/mg creatinine, a value significantly greater than that of 76 fmol/mg creatinine in the control group. Similar results were obtained in the 6 patients with hypopituitarism, who had impaired water excretion and marked hyponatremia. Water excretion was totally normalized after the replacement of hydrocortisone (excretion of water load, 31% vs. 102%; P < 0.01). Hydrocortisone replacement also significantly reduced the minimal UAQP-2 from 225 to 49 fmol/mg creatinine after the acute oral water load, a value comparable to that in the control subjects. These results indicate that UAQP-2 is a potent marker to diagnose the pathological state of impaired water excretion and hyponatremia, dependent upon AVP, in patients with water retention and hypopituitarism.

Adult↗

Contribution of a missense mutation (Trp64Arg) in beta3-adrenergic receptor gene to multiple risk factors in Japanese men with hyperuricemia.

Epidemiological data reveal that hyperuricemia is a risk factor of atherosclerosis. The risk is possibly caused by a link between hyperuricemia and insulin resistance-related metabolic syndrome. Recently it has been proposed that a missense mutation (Trp64Arg) in the beta3-adrenergic receptor (beta3-AR) gene may contribute to the accumulation of multiple risk factors related to insulin resistance. The present study was undertaken to further clarify an association between the Trp64Arg mutation and the metabolic syndrome in 47 Japanese men with hyperuricemia, who are substantially at high risk of atherosclerosis. One patient (2%) had the homozygous mutation, 12 (26%) were heterozygous for the mutation, and 31 (72%) had no mutation found by the PCR-RFLP analysis. The Trp64Arg mutation was not related to past maximal body mass index (BMI), BMI and waist/hip ratio. The subjects with the heterozygous mutation showed a slightly higher incidence of impaired glucose tolerance and diabetes mellitus in the 75 g oral glucose challenge (67%), as compared with those without the mutation (39%). Serum insulin response at 60 min and the sum of serum insulin in the glucose challenge were greater in the former subjects than those in the latter subjects (P=0.041 and 0.076, respectively). An increase in serum lipoprotein(a) was also observed in the subjects with the heterozygous mutation, but the Trp64Arg mutation was not associated with other dyslipidemia, blood pressure or ischemic changes on the electrocardiogram. These results indicate that the heterozygous mutation of Trp64Arg in the beta3-AR gene partly contributes to the accumulation of multiple risk factors in male subjects with hyperuricemia. A larger prospective study is necessary to elucidate a possible role of the Trp64Arg mutation in atherosclerotic diseases in future.

Adult↗

Antithyroid therapy improves bony manifestations and bone metabolic markers in patients with Graves' thyrotoxicosis.

OBJECTIVE: Abnormal bone metabolism in patients with Graves' thyrotoxicosis is well documented, but the precise time-course of its recovery remains poorly understood. The present study was undertaken to clarify longitudinal improvement in bony manifestations, especially in cortical bone, and bone metabolic markers in thyrotoxicosis. DESIGN: Two year prospective follow-up study in patients with Graves' disease. PATIENTS: Ten consecutive patients with Graves' disease (seven males and three females, of mean (+/-SEM) age 39.3 +/- 3.9 years) were enrolled in the study and treated with antithyroid drugs. Thirteen sex- and age-matched patients with the disease in remission served as controls. MEASUREMENTS: Bony manifestations were evaluated both by fine cortical bone striations in the metacarpals on magnified roentgenograms and lumbar bone mineral density (BMD) measurement. Urinary deoxypyridinoline (dPYR) and serum pyridinoline cross-linked telopeptide domain of type I collagen (ICTP) were monitored as markers of bone resorption, as well as serum osteocalcin (OC), carboxy-terminal propeptide of type I procollagen (PICP) and alkaline-phosphatase (ALP) as markers of bone formation. RESULTS: Initial elevated free thyroid hormone levels were normalized within a month of starting therapy. Striation indices of the metacarpals were 1.89 +/- 0.16 before therapy, higher than those of 0.49 +/- 0.12 in the controls (P < 0.0001); the indices gradually decreased to 1.00 +/- 0.20 (12 months) and 0.48 +/- 0.12 (24 months). Lumbar BMD Z-scores increased from -0.22 +/- 0.46 to 0.21 +/- 0.47 (12 months) and 0.68 +/- 0.48 (24 months) (P = 0.0029). Before therapy, urinary dPYR and serum ICTP concentrations were much higher than the control values (dPYR, +553%; ICTP, -396%, P < 0.0001), which declined promptly in the 2nd month. Serum OC, PICP and ALP were also significantly higher than in controls at first (OC, +287%; PICP, +225%; ALP, +196%), and remained elevated until 4 or 8 months. CONCLUSIONS: Bone resorption and cortical bone striations occur in untreated patients with Graves' thyrotoxicosis. The bone resorption rapidly ameliorates after normalization of thyroid hormone levels. In contrast, the accelerated bone formation persists for at least 4-8 months, suggesting positive uncoupling of bone remodelling. This dominant bone formation could result in the improvement in cortical bone striations and the increase in bone mineral density of trabecular bone.

Adolescent↗

Extracellular ATP promotes cellular growth of renal inner medullary collecting duct cells mediated via P2u receptors.

The present study was undertaken to determine whether extracellular adenosine 5'-triphosphate (ATP) promotes cellular proliferation of cultured rat renal inner medullary collecting duct cells. Extracellular ATP increased inositol 1,4,5-triphosphate (IP3) production and cellular free calcium concentration - [Ca2+]i - in a dose-dependent manner. ATP also caused a transient cellular acidification. Extracellular ATP activated mitogen-activated protein (MAP) kinase and [3H]thymidine incorporation in a dose-dependent manner. However, such effects were not obtained with adenosine 5'-diphosphate, adenosine monophosphate, and adenosine. In addition, uridine triphosphate, a P(2u) purinergic agonist, increased IP3 production and activated MAP kinase. 2-Methylthio ATP, a P(2y) purinergic agonist, also increased IP3 production, but did not affect the MAP kinase activity. We also examined the effect of arginine vasopressin on cellular growth. Arginine vasopressin did not alter MAP kinase activity and [3H]thymidine incorporation in cultured rat renal inner medullary collecting duct cells. These results indicate that extracellular ATP activates phospholipase C mediated through P(2u) and P(2y) purinergic receptors and promotes cellular proliferation mediated through P(2u) purinergic receptors in renal inner medullary collecting duct cells.

Adenosine Triphosphate↗

Cellular signaling and proliferative action of AVP in mesangium of SHR: effect of low density lipoprotein.

The present study was undertaken to determine whether low density lipoprotein (LDL) modulates the cellular action of arginine vasopressin (AVP) in cultured glomerular mesangial cells of spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto rats (WKY). The AVP-induced cellular signal transduction, including inositol 1,4,5-trisphosphate (IP3) production, fura-2 intracellular calcium measurements and cellular alkalinization, was significantly greater in cells of SHR than those of WKY. This is based on an increase in AVP V1 receptor number in cells of the SHR. Also, the AVP activation of mitogen-activated protein (MAP) kinase and [3H]thymidine incorporation was significantly exaggerated in cells of SHR compared with those of WKY. LDL at a concentration of 10 micrograms/ml augmented the cellular signaling and proliferative action of AVP in cells of WKY, but not in those of SHR. Since [3H]AVP receptor binding was not affected by the LDL pretreatment, LDL modulates the signal transduction between a location distal to the AVP receptors and proximal from the production of IP3 and diacylglycerol. These results indicate that an increase in AVP receptor capacity has a profound effect on the AVP-induced cellular signaling and proliferation, and that LDL has a slight alteration on the action of AVP in glomerular mesangial cells of SHR.

Animals↗

The activation of phospholipase D participates in the mitogenic action of arginine vasopressin in cultured rat glomerular mesangial cells.

The present study was undertaken to determine whether phospholipase D participates in the mitogenic action of arginine vasopressin (AVP) in cultured rat glomerular mesangial cells. AVP promptly increased the phosphatidylethanol formation in a concentration-dependent manner, which indicates the activation of phospholipase D. When cells were preincubated with 2,3-diphosphoglycerate or carbobenzyloxy-leucine-tyrosine-chloromethylketone (zLYCK), inhibitors of phospholipase D, the 1 x 10(-7) M AVP-produced phosphatidylethanol was significantly attenuated. Also, inhibitors of protein kinase C, staurosporine and calphostin C, reduced the AVP-induced increase in phosphatidylethanol. AVP activated mitogen-activated protein (MAP) kinase in a concentration-dependent manner. Such an activation was significantly reduced by 2,3-diphosphoglycerate, zLYCK, or staurosporine. Also, AVP stimulated [3H]thymidine incorporation, an effect significantly less in the presence of 2,3-diphosphoglycerate or zLYCK. Similar results were obtained with exogenous bacterial phospholipase D. Both MAP kinase and [3H]thymidine incorporation were not altered by 2,3-diphosphoglycerate or zLYCK per se. These results indicate that AVP activates phospholipase D and promotes cellular growth mediated through phospholipase D, in addition to a phospholipase C-dependent signal transduction, in glomerular mesangial cells.

2,3-Diphosphoglycerate↗

Inhibition by adrenomedullin of arginine vasopressin-activated mitogen-activated protein kinase in rat glomerular mesangial cells via cAMP production.

The present study was undertaken to determine whether adrenomedullin modulates the arginine vasopressin (AVP)-activated mitogen-activated protein (MAP) kinase in cultured rat glomerular mesangial cells. AVP dose-dependently increased cellular free calcium, and this increase was unaffected by adrenomedullin. Adrenomedullin increased cellular cAMP production in a dose-dependent manner and AVP activated MAP kinase in a dose-dependent manner. When cells were preincubated for 15 min with adrenomedullin at concentrations of 1 X 10(-8) M or higher, the AVP-activated MAP kinase was significantly reduced. In addition, the activation of MAP kinase by phorbol-12-myristate-13-acetate (PMA) was significantly inhibited by adrenomedullin. Similarly, forskolin also diminished the activation of MAP kinase by AVP and PMA. The inhibition by adrenomedullin or forskolin of AVP-activated MAP kinase disappeared when cells were preexposed to H-89, an inhibitor of protein kinase A. These results indicate that adrenomedullin inhibits the AVP activation of MAP kinase mediated through cAMP in glomerular mesangial cells and that the site of action of adrenomedullin is behind the site of activation of protein kinase C.

Adrenomedullin↗

Extracellular ATP promotes cellular growth of glomerular mesangial cells mediated via phospholipase C.

The present study was undertaken to determine whether extracellular ATP promotes cellular growth of glomerular mesangial cells. ATP increased inositol 1,4,5-trisphosphate (IP3) production and cellular free calcium concentration ([Ca2+]i) in a dose-dependent manner. None of ADP, AMP or adenosine caused an increase in IP3 production or [Ca2+]i mobilization. Also, ATP activated mitogen-activated protein (MAP) kinase and 3H-thymidine incorporation and increased the absorbance by colorimetric assay in a dose-dependent manner. Again, either of ADP, AMP or adenosine had no effect. These results indicate that extracellular ATP binds to P2 purinergic receptors and activates phospholipase C in glomerular mesangial cells. Such a signal transduction promotes cellular growth of mesangium.

Adenosine↗

Morphological changes and reorganization of actinfilaments in human myeloid leukemia cells induced by a novel protein phosphatase inhibitor, tautomycin.

A protein phosphatase inhibitor, tautomycin induces blebs on the surface of human myeloid leukemia K562 cells within 10 min. In this paper we examined the cytoskeleton of tautomycin-treated cells. In the presence of tautomycin, cells with blebs turned into segmented forms with smooth surfaces after 15 min and into smooth round shapes without microprotuberance after 60 min. Observation with fluorescence microscopy showed that F-actin detached from the plasma membrane at the site of the blebs. Further treatment with tautomycin induced the accumulation of F-actin at the segmentation centers. Under electron microscopy, an electron dense ring-structure was detected at the segmentation center. Tautomycin did not induce major changes of the microtubule network although F-actin accumulated near the microtubule organizing center. The amount of F-actin increased in tautomycin-treated cells. These results indicate that the morphological changes are induced by reorganization of actinfilaments.

Actin Cytoskeleton↗

Partial purification and reconstitution of inositol 1,4,5-trisphosphate receptor/Ca2+ channel of bovine liver microsomes.

The binding of inositol-1,4,5-trisphosphate [Ins(1,4,5)P3] to bovine liver microsomes was characterized. The Ins(1,4,5)P3 receptor of the microsomes was solubilized by 1% Triton X-100 and purified by sucrose density gradient, Heparin-Sepharose, DEAE-Toyopearl, ATP-Agarose, and Ins(1,4,5)P3-Sepharose column chromatographies. More than 1,000-fold enrichment of the Ins(1,4,5)P3-binding activity was achieved. Kd values of the binding activity were 2.8 nM in microsomes and 3.0 nM in the partially purified receptor, respectively, and the binding activity was optimal in the medium containing 100 mM KCl and at pH between 7.5 and 8.5. The presence of Ca2+ failed to inhibit the binding. Phosphatidylethanolamine (PE), phosphatidylcholine (PC), phosphatidylserine (PS), phosphatidylinositol (PtdIns), and phosphatidylinositol-4-monophosphate [PtdIns(4)P] showed no effect on the Ins(1,4,5)P3 binding. However, soybean phospholipids asolectin and phosphatidylinositol-4,5-bisphosphate [PtdIns(4,5)P2] strongly inhibited the binding activity. PtdIns(4,5)P2 inhibited the activity competitively with a half-maximal inhibitory concentration of 30 micrograms/ml. The partially purified Ins(1,4,5)P3 receptor was reconstituted into proteoliposomes. Fluorescence measurements using Quin 2 indicated that Ins(1,4,5)P3 stimulated Ca2+ influx into the proteoliposomes. The EC50 of Ins(1,4,5)P3 on Ca2+ influx was 50 nM. This result strongly suggest that Ins(1,4,5)P3 binding protein of liver microsomes acts as a physiological Ins(1,4,5)P3 receptor/Ca2+ channel.

Animals↗

Membrane-bound respiratory system of Enterobacter cloacae strain HO1 grown anaerobically with chromate.

Chromate has been demonstrated to be an electron acceptor in the respiratory chain of anaerobically grown Enterobacter cloacae strain HO1. By using potentiometric titration and low temperature spectroscopy, the spectral absorption of the anaerobic membrane vesicles of this organism in the presence of chromate was resolved into six peaks at 548, 549, 550, 555, 556, and 558 nm in the alpha band of the reduced minus oxidized spectra. The spectra elicited by chromate are attributed to cytochromes c548, c549, c550, b555, b556, and b558. Among these cytochromes, c548 was found to be specifically involved in electron transfer to chromate.

Anaerobiosis↗

Calcium channel blockers inhibit bacterial chemotaxis.

The effect of several Ca2+ channel blockers, which inhibit the voltage-dependent Ca2+ uptake in Bacillus subtilis, on chemotactic behaviour of the bacterium was studied. Nitrendipine, verapamil, LaCl3 and omega-conotoxin were tested and these blockers inhibited chemotactic behaviour in the bacterium toward L-alanine. Among these blockers, omega-conotoxin was the most effective inhibitor of chemotaxis. EGTA was also as effective as omega-conotoxin. In contrast, these blockers, did not inhibit the motility and the growth of the bacterium. These results suggest that internal Ca2+ plays an important role in the sensory system of bacterial chemotaxis.

Bacillus subtilis↗

Guanine nucleotide-induced Ca2+ release in permeabilized murine thymocytes.

GTP and IP3 induced Ca2+ release from an internal store in permeabilized murine thymocytes loaded with Ca2+ by ATP. Ca2+ release was dependent on the concentration of GTP: half-maximal release with 0.5 microM and maximal release with 10 microM. The GTP effect was completely abolished by 100 microM GTP gamma S, GMPPNP and UTP. None of the other nucleotides used except ITP induced Ca2+ release. When GTP was added after the effect of IP3 had virtually subsided, and vice versa, further Ca2+ release occurred, which led to the conclusion that the mechanism of GTP-mediated Ca2+ release may be different from that of IP3-mediated release.

Animals↗

Characterization of a Ca2+ uniporter from Bacillus subtilis by partial purification and reconstitution into phospholipid vesicles.

Ca2+ was accumulated by right-side-out membrane vesicles of Bacillus subtilis following imposition of a diffusion potential, inside-negative, owing to K+-efflux via valinomycin. Uptake was dependent on the magnitude of the membrane potential. This voltage-dependent Ca2+ uptake was inhibited by Ca2+ channel blockers such as nitrendipine, verapamil and LaCl3, and was competitively inhibited by Ba2+ and Sr2+. The system showed saturation kinetics with an apparent Km for Ca2+ of about 250 microM. Proteins responsible for the voltage-dependent Ca2+ uptake were partially purified by preparative isoelectric focusing in a Sepharose bed. A fraction at pH 5.28-5.33 contained the activity. The characteristics of Ca2+ uptake in reconstituted proteoliposomes were the same as those in membrane vesicles (sensitive to Ca2+ channel blockers; inhibited by Ba2+ and Sr2+). In addition, uptake was not influenced by a pH gradient imposed on the vesicles. The apparent Km for Ca2+ in the reconstituted system was about 260 microM. The specific activity was increased about 50-fold by purification with isoelectric focusing.

Bacillus subtilis↗

Purification and characterization of Ca2+/H+ antiporter from Bacillus subtilis.

Ca2+ was accumulated in inside-out membrane vesicles of Bacillus subtilis when NADH was used as an energy source. A delta pH (acid interior) could also drive Ca2+ accumulation in the membrane vesicles and the accumulation was inhibited by carbonylcyanide p-trifluoromethoxyphenylhydrazone and nigericin plus K+. These results indicate the presence of a Ca2+/H+ antiporter (exchanger) in this organism. The antiporter was isolated and purified to homogeneity from the membrane proteins by chromatography on hydroxyapatite, diethylaminoethyl(DEAE)-Toyopearl 650 M and butyl-Toyopearl 650 M. The purified antiporter has a molecular mass of about 45 000 daltons and an isoelectric point of 5.0. The fluorescence quenching of a cyanine dye (3,3'-dipropylthiodicarbocyanine iodide [diS-C3-(5)] during Ca2+ accumulation in proteoliposomes by the purified antiporter showed the generation of a membrane potential (interior negative) suggesting a H+/Ca2+ stoichiometry above 2 in the transport. This was also supported by the result that the K+-diffusion potential, interior positive, stimulated the Ca2+ uptake in the presence of a delta pH. The apparent Km for Ca2+ of the antiporter was about 40 microM and La3+ inhibited the transport. Amino acid analysis of the purified antiporter indicated the presence of large amounts of glutamic and aspartic acids and small amounts of histidine, lysine and arginine. This is consistent with the low isoelectric point (about 5.0) of the protein.

Amino Acids↗