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Biomedical subjects

K Tagawa

Publications and source records attributed to K Tagawa.

At least 127 records · Page 7Linked to original sources

Hepatic accumulation of pyrophosphate during acetate metabolism.

Accumulation of pyrophosphate induced by acetate administration was investigated in rat liver in situ and in perfused rat liver. Intraperitoneal injection of acetate into rats increased the pyrophosphate concentration in the liver to about 2 mumol/g liver, which was 200 times that in control liver. Perfusion of liver with acetate alone did not result in accumulation of pyrophosphate. However, the further addition of a Ca2+-mobilizing hormone, such as noradrenaline or angiotensin II, together with glucagon to the perfusion medium containing 1 mM acetate caused accumulation of pyrophosphate to a similar level to that observed in vivo. Acetate, glucagon and a Ca2+-mobilizing hormone were all required for accumulation of pyrophosphate in perfused liver. Omission of Ca2+ from the perfusion medium or addition of a Ca2+-antagonist reduced the accumulation significantly. The two kinds of hormones, glucagon and an alpha-agonist, either singly or in combination, did not affect the rate of acetate utilization. These results show that liver cells accumulate a large amount of pyrophosphate during acetate metabolism at high intracellular levels of Ca2+ that can be realized by the synergistic actions of the two kinds of hormones.

Acetates↗

HBs antigen subtypes among acute hepatitis patients in Japan: evidence of imported hepatitis.

HBs antigen subtypes were determined among 137 acute hepatitis patients in Japan. The distribution among the 99 male patients was 40 adr, 37 adw, one ayw, and 21 undetermined while that among the 38 female patients was 19 adr, 11 adw, and eight undetermined. The distribution among the male patients was different from that among HBs antigen carriers in Japan, suggesting that they were exposed not only to domestic HBs antigen carriers, but also to other sources. Thirty-one (29 males and two females) of the 137 patients (22.6%) were found to have been abroad at some time during the incubation period. The distribution among them was seven adr, 21 adw, and three undetermined. The majority had the same subtypes that are prevalent in the countries they visited, supporting the hypothesis that most of them had contracted the disease overseas. The remaining 106 patients had a distribution of the subtypes similar to that of domestic HBs antigen carriers. "Imported hepatitis" would be an important cause of acute type B hepatitis in Japan.

Acute Disease↗

Peroxidative injury of the mitochondrial respiratory chain during reperfusion of hypothermic rat liver.

Mitochondrial dysfunction in ischemic liver has been demonstrated to be due to decrease in the intramitochondrial level of ATP and the subsequent disruption of the proton barrier of the inner membrane (Watanabe, F., Hashimoto, T. and Tagawa, K. (1985) J. Biochem. 97, 1229-1234). In this study, another injury process, impairment of the electron-transfer system, which occurred during reoxygenation of ischemic liver, was studied during reperfusion of cold preserved liver and during cold incubation of isolated rat-liver mitochondria. The sites of the respiratory chain that were sensitive to peroxidative damage were ubiquinone-cytochrome c oxidoreductase and NADH-ubiquinone oxidoreductase. These enzymic activities decreased with increase in lipid peroxidation. Incubation of submitochondrial particles with t-butyl hydroperoxide or with an NADPH-dependent peroxidation system decreased the enzymic activities of the electron-transport system. These data strongly suggested that lipid peroxidation during reoxygenation of ischemic liver impaired the electron-transfer system. Thus, mitochondria of ischemic liver suffer from two different types of injury: increase in proton permeability during anoxia, and decrease in enzymic activities of the electron-transport system during reoxygenation.

Animals↗

Angiotensin II-induced increase in inositol 1,4,5-trisphosphate in cultured rat mesangial cells: evidence by refined high performance liquid chromatography.

Angiotensin II-induced change in inositol phosphates were studied in cultured rat mesangial cells prelabeled with [3H]myo-inositol. By using anion-exchange high performance liquid chromatography, we could analyzed the change in inositol mono-, bis-, and tris-phosphate more rapidly and easily with higher resolution than the previously reported methods. Angiotensin II rapidly increased inositol 1,4,5-trisphosphate and inositol 1,4-bisphosphate within 15 sec, followed by an increase in inositol 1-monophosphate at 30 sec. Angiotensin II-induced increases in inositol phosphates were dose-dependent and completely blocked by saralasin. These results indicate that angiotensin II induces the production of inositol phosphates including inositol 1,4,5-trisphosphate, an intracellular Ca2+-releasing factor, in cultured rat mesangial cells.

Angiotensin II↗

Hepatic epithelioid hemangioendothelioma in a young female.

Epithelioid hemangioendothelioma in a young female is reported. Her symptoms were right upper quadrant pain and low-grade fever. Laboratory examinations showed an increased number of white blood cells and an elevated erythrocyte sedimentation rate. Plasma factor VIII:C was increased. The hepatic lesions were demonstrated as low-density areas by CT scan, and multiple nodules with central depression on the surface of the liver were identified by peritoneoscopy. The biopsy specimens showed spindle-shaped tumor cells set in the fibrous and myxohyalinous tissue. The tumor cells were positive for factor VIII-related antigen and Weibel-Palade bodies. The patient received transcatheter arterial embolization therapy using Gelfoam and mitomycin C following which the plasma level of factor VIII was normalized and regression of the tumors was observed.

Adolescent↗

Binding properties of 9K protein to F1-ATPase: a counterpart ligand to the ATPase inhibitor.

A regulatory subunit of yeast mitochondrial ATP synthase, 9K protein, formed an equimolar complex with F1-ATPase in the presence of ATP and Mg2+, indicating that the binding of the protein to the enzyme took place in a similar manner to that of ATPase inhibitor. The ATP-hydrolyzing activity of F1-ATPase decreased 40% on binding of the 9K protein, and the remaining activity was resistant to external ATPase inhibitor. The apparent dissociation constant of the F1-ATPase-9K complex was determined by gel permeation chromatography to be 3.7 X 10(-6) M, which was in the same order of magnitude as that of enzyme-ATPase inhibitor complex (4.2 x 10(-6) M). When added simultaneously the binding of the inhibitor and 9K protein to F1-ATPase were competitive and the sum of their bindings did not exceed 1 mol per mol of enzyme. However, the binding of each protein ligand to F1-ATPase took more than 1 min for completion, and when one of these two proteins was added 10 min after the other, it did not replace the other. These observations strongly suggest that membrane-bound F1-ATPase always binds to either the 9K protein or ATPase inhibitor in intact mitochondria and that the complexes with the two ligands are active and inactive counterparts, respectively.

Binding, Competitive↗

On the structure of old yellow enzyme studied by specific limited proteolysis.

Limited proteolysis of brewer's yeast old yellow enzyme (OYE) was carried out with bovine pancreatic alpha-chymotrypsin. The reaction proceeded with a decrease of the NADPH oxidase activity, generating specifically two peptides (designated as 34K and 14K fragments) with apparent molecular weights of 34,000 and 14,000, respectively. The same proteolytic treatment of apo OYE resulted in rapid and complete digestion of the protein. The 34K and 14K fragments are so intimately associated with each other that the isolation of each peptide from the other in the native form was unsuccessful. However, the complex of the two fragments was separated from the intact OYE and termed "nicked OYE." Nicked OYE still retained FMN and showed a visible-absorption spectrum slightly modified from that of intact OYE. Nicked OYE showed decreased affinity toward rho-bromophenol as compared to intact OYE. Nicked OYE exhibited lower Km and Vmax values than intact OYE in the NADPH oxidase reaction. The 34K and 14K fragments could be separated from each other by reversed-phase HPLC under denaturing conditions and the amino acid sequences of the two fragments and intact OYE in the amino terminal regions were determined. The N-terminal sequence of the 34K fragment coincided with that of intact OYE, indicating that the 34K fragment lies in the N-terminal side of OYE. The N-terminal sequence of the 14K fragment was found to show homology with the site of flavodoxin where it forms an electron-transfer complex with cytochrome c. The characteristic feature of this region is the presence of acidic residues and is shared by the FMN domain of NADPH-cytochrome P-450 reductase. We interpret these findings as indicating that OYE has a physiological role as an electron transfer component.

Amino Acid Sequence↗

Levels of purine compounds in a perfusate as a biochemical marker of ischemic injury of cold-preserved liver.

Biochemical markers of ischemic injury of rat liver were studied in an extracorporeal perfusion system. During anoxic perfusion, purine compounds appeared in the perfusate as soon as they were formed in the liver and their recovery in the perfusate balanced the loss of adenine nucleotides from the liver. In contrast, cytosolic aspartate aminotransferase did not appear in the perfusate at slow rates of liver perfusion or during hypothermic perfusion. The production of purine compounds was further investigated in hypothermically preserved liver in connection with the restoration of some metabolic functions of liver. The amount of purine compounds released into the perfusate was found to be closely related to the degrees of damage of the hepatic functions of gluconeogenesis, ureogenesis, and mitochondrial respiration on reperfusion. These results indicate that release of purine compounds into the perfusate is a good marker of ischemic damage.

Adenine Nucleotides↗

Chilaiditi's syndrome in schizophrenic patients.

The condition that a part of the digestive tract interposes between the liver and diaphragm has been called Chilaiditi's syndrome. Although it has been reported that this condition had a higher rate of incidence in patients of mental hospitals than in other individuals, there are hardly any enlightening papers of this condition in the domain of psychiatry. Three schizophrenic patients who had this condition are described in this paper. Many factors such as meteorism, the medication of antipsychotic drugs and negative symptoms of schizophrenic patients are considered as risk factors that bring about this condition in them. Psychiatrists should pay more attention to this condition in the chest roentgenograms of patients because this state can possibly develop into more serious conditions such as ileus.

Adult↗

31P NMR studies on the isolated perfused mandibular gland of the rat.

Phosphorus nuclear magnetic resonance (31P NMR) was used to study energy metabolism in the rat mandibular gland. The gland was isolated, perfused arterially and set in the NMR tube. At rest, 7 resonance peaks were observed and 6 peaks identified from low field as: 1) sugar phosphates (SP) and nucleotide monophosphate (NMP), 2) inorganic phosphate (Pi), 3) creatine phosphate (PCr), 4) gamma-nucleotide triphosphate (NTP) and beta-nucleotide diphosphate (NDP), 5) alpha-NTP, alpha-NDP, NAD+, and NADH, 6) an unknown peak, and 7) beta-NTP. From the results of high performance liquid chromatography (HPLC), NTP consisted mainly of ATP and GTP, and UTP was not detected. The tissue contents of ATP and GTP in the perfused gland were determined by HPLC as 1.86 +/- 0.03 and 0.37 +/- 0.01 mmol/kg wet tissue (S.E., n = 5). From 31P NMR and HPLC data, the tissue levels of creatine phosphate, ADP, and sugar phosphates were estimated as 3.3, 0.4, and 4.2 mmol/kg wet tissue, respectively. The cessation of perfusion decreased the tissue levels of PCr and ATP and increased those of Pi and SP. On the other hand, administration of acetylcholine (1 microM), which is an optimal dose for secretion, decreased PCr and increased Pi but did not change SP. The ATP was unchanged initially and slowly decreased to the lower level during sustained secretion. These findings suggest that a sustained secretion requires more energy from ATP hydrolysis rather than initial secretion.

Acetylcholine↗