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Y Hata

Publications and source records attributed to Y Hata.

At least 253 records · Page 14Linked to original sources

Diabetes mellitus-induced enhancement of prostaglandin F2 alpha-responses is inhibited by lipoxygenase- but not cyclooxygenase-inhibitors in mesenteric veins and arteries of mouse and rat.

The mechanisms responsible for diabetes mellitus-induced enhancement of prostaglandin (PG) F2 alpha response were investigated in vascular smooth muscles isolated from diabetic mice and rats. Streptozocin (150 mg/kg, i.v. bolus, 6 week-elapsed)-ddY mice and (60 mg/kg, i.v. bolus)-Wistar rats and genetically diabetic GK-rats were used. The responses to PGF2 alpha were enhanced in small blood vessels such as mesenteric arteries (diabetic rats) and veins (diabetic mice) and they were reduced in large blood vessels such as the aorta and vena cava (diabetic rats). The enhanced response to PGF2 alpha in diabetic blood vessels was significantly inhibited by nordihydroguaiaretic acid (NDGA) (0.03 mM) and phenidone (0.05 mM), lipoxygenase inhibitors, cycloheximide (1 mg/kg, i.v.), a protein synthesis inhibitor and actinomycin D (2.8 mg/kg, i.v.), a RNA polymerase inhibitor, but neither inhibited by cyclooxygenase inhibitors, a thromboxane antagonist, nor Ca2+ antagonists. The PGF2 alpha response was also enhanced with aging alone, whereas the extent of enhancement was less than that with diabetes mellitus, and not significantly blocked by NDGA. These results demonstrate that diabetes mellitus-induced imbalance in the regulation of the eicosanoid metabolic pathways (suppressed cyclooxygenase and accelerated lipoxygenase) may cause the enhancement of PGF2 alpha-induced responses in small blood vessels.

Aging↗

Subcortical low intensity in early cortical ischemia.

PURPOSE: To describe subcortical low intensity on T2- and proton density-weighted MR images in early cortical ischemia and to discuss a cause of these findings. METHODS: Nine patients with early cortical ischemia were studied with proton density- and T2-weighted images, and T1-weighted images at 1.5 T. Gadolinium enhancement was added in six cases. RESULTS: In all cases there was high to intermediate intensity in the cortex and low intensity in the subcortical white matter (subcortex) on the proton density- and T2-weighted images. No significant signal abnormalities were shown on T1-weighted images in the subcortex; gyriform enhancement was seen in the affected cortex in all of the six patients studied with gadolinium. Of the four patients with follow-up MRs, the subcortical low intensity changed to high intensity in two and remained low in two patients in the chronic stage. Neither hemorrhage nor calcification was seen on CT. CONCLUSION: Iron accumulation in the subcortex caused by disruption of the axonal transportation and continuous production of free radicals caused by the hypoxic-ischemic state most likely reduces the signal intensity of the subcortex on the proton density- and T2-weighted images. The subcortical low intensity on the proton density- and T2-weighted images is an important diagnostic sign of early cortical ischemia.

Adolescent↗

[Apolipoprotein C gene and molecular biology].

The biological structure and function of genes encoding the polypeptide components of apolipoprotein C are of importance because of the central role they play in the regulation of triglycerides rich lipoprotein metabolism. On this paper, we summarized the current knowledge of apolipoprotein C-I, C-II and C-III gene and the molecular structure. An improved understanding of the structural relationship of apolipoprotein C will help elucidating the mechanism of triglycerides metabolism.

Amino Acid Sequence↗

Synergism of taxol and gallium nitrate in human breast carcinoma cells: schedule dependency.

Since Taxol (paclitaxel, NSC-125973) arrests cells in mitosis and gallium nitrate (NSC-15200) inhibits cell replication in the S phase, and the two drugs have different biochemical targets, we tested the hypothesis that the combination of these drugs may be synergistic in human breast carcinoma cells. MDA-MB-435 human breast carcinoma cells were grown in monolayer in culture. Taxol and gallium inhibited cell proliferation with IC50 = 13 nM and 180 microM, respectively. In clonogenic assays, Taxol and gallium yielded IC50 = 2 nM and 25 microM, respectively. Synergism was observed in both cell proliferation and colony formation assays depending on the treatment schedule. Gallium (300 microM) 24 h prior to Taxol (10 nM) synergistically decreased cell proliferation to 6.5% of untreated cells, which was 50% of the predicted value. In clonogenic assay, gallium (40 microM) given 16 h prior to Taxol (2 nM) yielded 8.7% colony formation of the untreated cells, which was 44% of the predicted value. Combination chemotherapy with Taxol and gallium with this protocol schedule may be useful in the treatment of human breast carcinoma.

Antineoplastic Combined Chemotherapy Protocols↗

[Preoperative and postoperative variations of human hepatocyte growth factor (hHGF) in hepatectomized patients].

We clinically analyzed significance of serum human hepatocyte growth factor (hHGF) concentrations (ng/ml) before and after hepatectomies. We examined 39 hepatectomized patients (Group H) and 8 non-hepatectomized patients as control (Group C). In group H, hHGF levels elevated significantly on postoperative 1st, 3rd, 5th, and 7th days (0.59 +/- 0.24, 0.47 +/- 0.23, 0.38 +/- 0.16, 0.38-0.14, respectively) compared with the preoperative value (0.27 +/- 0.11). On the 3rd day hHGF levels in Group H (0.45 +/- 0.22) were significantly higher than those in Group C (0.30 +/- 0.06). Nineteen cases of 2-segmentectomy and 8 cases of partial resection showed significantly higher hHGF levels on the 3rd day than those in Group C. In 12 patients with liver cirrhosis, hHGF levels were significantly higher on the 5th and 21st days than those in 27 patients without cirrhosis. Three patients with hepatic failure showed significantly higher hHGF levels correlated conversely with preoperative serum albumin and hHGF levels on the 1st day after operation significantly correlated with operative time, blood loss during the operation. It was suggested that serum hHGF level correlated with hepatic functional reserve. We concluded that serial measurement of hHGF was useful for evaluation of postoperative damage of hepatic functions, and prolonged high hHGF levels might suggest hepatic failure.

Adult↗

[Evaluation of arterial infusion chemotherapy for advanced gallbladder cancer using implantable port].

Seven patients with advanced gallbladder cancer were treated by arterial infusion chemotherapy. Five patients had unresectable tumor, and two had liver metastases after resection of primary tumor. The response rate was 42.9% (3 PR), and the 1-year survival rate was 35.7%. No severe side effect was found. We conclude that arterial infusion chemotherapy is effective for advanced gallbladder cancer, and that a more effective regimen and adjuvant therapy should be established.

Aged↗

[Morgagni's hernia].

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Diagnosis, Differential↗

Surgical procedure and results of repair of massive tears of the rotator cuff.

One hundred eighty-seven patients (189 shoulders) were treated surgically between 1970 and 1992 for massive rotator cuff tears using either a tendon-to-tendon repair or the McLaughlin procedure. The age of the patients ranged from 20 to 86 years; 95% of them were 45 years or older. The average followup was 6 years 9 months. Excellent or good functional results were attained in 93% of patients. Thirty-three percent of those who underwent tendon to tendon repair complained of pain after overuse compared with only 18% who had the McLaughlin Procedure.

Adult↗

[Establishment and characterization of a human small cell lung carcinoma cell line (MT-428) derived from the patient who showed neurological paraneoplastic syndrome].

A new human small cell lung carcinoma (SCLC) cell line, designated MT-428, was derived from a patient who showed neurological paraneoplastic syndrome (combined with subacute cerebellar degeneration and peripheral sensory neuropathy) and was established in tissue culture. This cell line exhibited small cell (variant type) morphology as observed by phase contrast and electron microscopy. The MT-428 cells had a doubling time of 72 hours. Chromosomal analysis showed complicated rearrangements at short and long chromosomes with a modal number of 68. Several tumor markers, NSE, TPA and CPK-BB, were detected in culture medium. This cell line had a cloning efficiency of 1.3% in 0.8% methylcellulose. Finally, it should be noticed that autoantibody against MT-428 cell was demonstrated in serum of the patient. We concluded that the MT-428 cell line may provide a suitable model for studies of neurological paraneoplastic syndrome.

Animals↗

Bile salts stimulate mucous glycoprotein secretion from cultured rabbit gastric mucosal cells.

Resistance of gastric mucosa to damage is increased after exposure to mild irritants such as bile salts (adaptive cytoprotection). Mucus secretion also contributes to gastric cytoprotection. We investigated whether bile salts stimulate mucous glycoprotein secretion from cultured rabbit gastric mucosal cells. Because prostaglandins (PGs) stimulate mucus secretion, we assessed the role of endogenous PG release in bile salt-stimulated mucus secretion. Because Ca2+ plays a role in PGE2 release, the role of extracellular Ca2+ on PGE2 release and mucus secretion by bile salts was also studied. Rabbit gastric mucosal cells were prepared with collagenase and ethyl-enediaminetetraacetic acid. These cells were cultured as described previously. Cytotoxicity of bile salts was quantified by measuring chromium 51 release from prelabeled cells. PGE2 was measured by radioimmunoassay. Mucous glycoprotein secretion was assessed by tritiated glucosamine release assay. Deoxycholate (DC) and glycodeoxycholate (GDC) stimulated tritiated glucosamine release in doses that were not cytotoxic to the cultured cells. DC stimulated PGE2 release that was blocked by deprivation of extracellular Ca2+. GDC did not stimulate PGE2 release. Neither DC-stimulated nor GDC-stimulated mucus secretion was affected by indomethacin. Deprivation of extracellular Ca2+ did not affect DC-stimulated or GDC-stimulated mucus secretion. Bile salts stimulated mucous glycoprotein secretion from cultured rabbit gastric mucosal cells. This effect occurred independently of changes in endogenous PGE2 or extracellular Ca2+ concentrations.

Animals↗

[A case of simultaneous operation of recurrent aortic arch aneurysm and lung cancer].

A simultaneous operation was successfully performed on a 70-year-old man with recurrent aortic arch aneurysm and squamous cell carcinoma of the lung. Via a left thoracotomy, left lower lobectomy with lymph node resection was performed, and via the same incision, aneurysmectomy with graft replacement was performed under the hypothermic cerebral circulatory arrest. The patient was readmitted because of brain metastasis 10 months later, and died 11 months postoperatively. The present report suggests that selected cases of thoracic aortic aneurysm with malignant tumor are safely able to undergo simultaneous operations. This is the first report in Japan of aortic arch aneurysmectomy and lobectomy performed during the course of one operation.

Aged↗

Sequential impact of tiazofurin and ribavirin on the enzymic program of the bone marrow.

Tiazofurin and ribavirin are clinically used inhibitors of IMP dehydrogenase (DH), binding to the NAD and IMP sites, respectively, of the target enzyme. In patients with chronic granulocytic leukemia in blast crisis, daily tiazofurin infusions decreased the high IMP DH activity in blast cells and resulted in 77% response (G. Weber. In: R. A. Harkness et al., Purine and Pyrimidine Metabolism in Man, Vol. VII, Part B, pp. 287-292, 1991). However, patients relapsed in a few weeks with emergence of high IMP DH activity (G. Tricot et al., Int. J. Cell Cloning, 8: 161-170, 1990). The present study showed that the tiazofurin-induced depression of IMP DH activity in rat bone marrow can be maintained by ribavirin injection. Tiazofurin (150 mg/kg, i.p., once a day for 2 days) decreased IMP DH activity to 10% and ribavirin (250 mg/kg, i.p., once a day for the subsequent 3 days) maintained the enzymic activity at 20 to 30% of control values. In control rats where no ribavirin was given, IMP DH activity of the tiazofurin-treated rats rapidly returned to the range of untreated animals. The decrease of IMP DH activity (t1/2 = 2.6 h) sharply preceded that of the bone marrow cellularity (t1/2 = 17.4 h). In addition to the target enzyme, IMP DH, tiazofurin also decreased activities of the guanylate metabolic enzymes, guanine phosphoribosyltransferase and GMP reductase, and the pyrimidine salvage enzymes, deoxycytidine and thymidine kinases with t1/2 of 2.6, 4.7, 6.0, 3.4, and 6.5 h, respectively. In cycloheximide-treated rats, where much of protein biosynthesis was blocked, the t1/2(8) of these five enzymes in bone marrow were shorter, 1.6, 4.3, 3.0, 0.6, and 0.8 h, respectively. Thus, the impact of tiazofurin in the bone marrow entails a decrease in the activity of the target enzyme, IMP DH, and also of other enzymes in purine and pyrimidine biosynthesis as a result of the enzyme half-lives shortened by this drug. These novel observations should assist in achieving better protection and recovery of bone marrow during and after chemotherapy.

Animals↗

Synaptic vesicle fusion complex contains unc-18 homologue bound to syntaxin.

Three synaptic proteins, syntaxin, SNAP-25 and synaptobrevin, were recently identified as targets of clostridial neurotoxins that irreversibly inhibit synaptic vesicle fusion. Experiments searching for membrane receptors for N-ethylmaleimide-sensitive fusion protein (NSF), which has an important role in membrane fusion, revealed an ATP-dependent interaction of the same three synaptic proteins with NSF and its soluble attachment proteins. Thus, two independent approaches identify syntaxin, synaptobrevin and SNAP-25 as components of the synaptic vesicle fusion machinery, but their mode of action is unclear. We have now discovered a brain protein of relative molecular mass 67,000 (67K) which binds stably to syntaxin. Amino-acid sequencing and complementary DNA cloning revealed that the 67K protein is encoded by the mammalian homologue of the Caenorhabditis elegans gene unc-18. In C. elegans, unc-18 belongs to a group of genes defined by mutations with a paralytic phenotype and accumulations of acetylcholine, suggesting a defect in neurotransmitter release. The binding of the mammalian homologue of unc-18 (Munc-18) to syntaxin requires the N terminus of syntaxin whereas that of SNAP-25 involves a more C-terminal sequence. Our data suggest that Munc-18 is a previously unidentified essential component of the synaptic vesicle fusion protein complex.

Amino Acid Sequence↗

Phosphorylation of synaptotagmin I by casein kinase II.

Synaptotagmin I is an abundant synaptic vesicle protein that binds Ca2+ in a phospholipid-dependent manner and is thought to function in synaptic vesicle exocytosis. We have now studied the phosphorylation of synaptotagmin I. Synaptotagmin I is one of the major substrates in brain for casein kinase II, which phosphorylates synaptotagmin at a single threonine. The phosphorylation site was mapped using recombinant proteins to threonine 128 of synaptotagmin I, which is located in the sequence between the transmembrane region and the C2 domain repeats of synaptotagmin I. The phosphorylation site of synaptotagmin I is also present in synaptotagmin II and is evolutionarily conserved between different species. Preceding the phosphorylation site, synaptotagmins I and II contain a lysine-rich sequence. Casein kinase II phosphorylation of many substrates is strongly stimulated by the addition of polylysine, but phosphorylation of synaptotagmin I by casein kinase II is not. In recombinant proteins, removal of the lysine-rich sequence of synaptotagmin I makes its phosphorylation dependent on exogenous polylysine, suggesting that the lysine-rich sequence in synaptotagmin serves as an endogenous polylysine stimulation signal for casein kinase II. Our data demonstrate that synaptotagmin I is an efficient substrate for casein kinase II at a conserved site with a possible modulatory role in nerve terminal function.

Amino Acid Sequence↗

Three-dimensional structure of the glutathione synthetase from Escherichia coli B at 2.0 A resolution.

Glutathione synthetase (gamma-L-glutamyl-L-cysteine: glycine ligase (ADP-forming) EC 6.3.2.3: GSHase) catalyzes the synthesis of glutathione from gamma-L-glutamyl-L-cysteine and Gly in the presence of ATP. The enzyme from Escherichia coli is a tetramer with four identical subunits of 316 amino acid residues. The crystal structure of the enzyme has been determined by isomorphous replacement and refined to a 2.0 A resolution. Two regions, Gly164 to Gly167 and Ile226 to Arg241, are invisible on the electron density map. The refined model of the subunit includes 296 amino acid residues and 107 solvent molecules. The crystallographic R-factor is 18.6% for 17.914 reflections with F > 3 sigma between 6.0 A and 2.0 A. The structure consists of three domains: the N-terminal, central, and C-terminal domains. In the tetrameric molecule, two subunits that are in close contact form a tight dimer, two tight dimers forming a tetramer with two solvent regions. The ATP molecule is located in the cleft between the central and C-terminal domains. The ATP binding site is surrounded by two sets of the structural motif that belong to those respective domains. Each motif consists of an anti-parallel beta-sheet and a glycine-rich loop.

Adenosine Triphosphate↗

Stabilization of xylanase by random mutagenesis.

Four heat-resistant mutants of xylanase (N56, N102, N104 and F1) were obtained by random mutagenesis. The mutant genes had the following amino acid changes: N56, Ser-26 to Trp, Gly-38 to Asp and Thr-126 to Ser; N102, Gly-38 to Asp; N104, Gly-38 to Ser and Arg-48 to Lys; F1, Ser-12 to Cys. Kinetic studies showed that N104 is stabilized by an increase in the activation enthalpy, while the other mutants are stabilized by a decrease in the activation entropy.

Endo-1,4-beta Xylanases↗