PubMed HealthSearch

Biomedical subjects

T Watabe

Publications and source records attributed to T Watabe.

At least 37 records · Page 2Linked to original sources

Sulphotransferase-mediated activation of the carcinogen 5-hydroxymethyl-chrysene. Species and sex differences in tissue distribution of the enzyme activity and a possible participation of hydroxysteroid sulphotransferases.

Sulphation of the carcinogen 5-hydroxymethyl-chrysene (5-HCR) to the active metabolite 5-HCR sulphate occurred at significant rates in all of hepatic cytosols prepared from the male and female experimental animals, rats, mice, guinea-pigs and hamsters. The 5-HCR-sulphating activity was also found in kidney cytosols of all the experimental animals used, while their activities were much less than those of hepatic cytosols. In the male mice, the enzyme activity of testis was higher than any other examined tissue. Small intestine and adrenal of male and female guinea-pigs had relatively high enzyme activities. Small enzyme activities were also found in a variety of extrahepatic tissues of some of these animals. Marked species and sex differences (female much greater than male in the rat and mouse) were observed in the hepatic enzyme activity. In the female rat liver which showed the highest 5-HCR-sulphating activity among the examined tissues of all the animals, a typical hydroxysteroid sulphotransferase inhibitor, dehydroepiandrosterone (DHA) sulphate (1 mM), potently and competitively inhibited the sulphation of 5-HCR as well as that of DHA, a typical substrate for hydroxysteroid sulphotransferases. On the contrary, the phenol sulphotransferase inhibitors, pentachlorophenol and 2,6-dichloro-4-nitrophenol, had only a little effect on these enzyme activities even at a concentration of 50 microM that showed a potent inhibition of the phenol sulphotransferase activity. These results suggest that 5-HCR be sulphated in the female rat liver by hydroxysteroid sulphotransferases, but not by phenol sulphotransferases.

Animals

Glutathione conjugation of the fluorophotometric epoxide substrate, 7-glycidoxycoumarin (GOC), by rat liver glutathione transferase isoenzymes.

The fluorophotometric substrate, 7-glycidoxycoumarin (GOC), was examined for the assay of epoxide-glutathione (GSH)-conjugating activities of seven major GSH transferases (GSTs) isolated from rat liver cytosols. GST 7-7 (GST-P), isolated from the liver cytosol of rats bearing hepatic hyperplastic nodules, catalysed the GSH conjugation of GOC at a higher rate than any other examined GST isolated from the normal rat liver cytosol. GSTs 3-3, 3-4 and 4-4 (group 3-4 enzymes) had specific activities towards GOC by one fifth to one third of that of GST 7-7. GSTs 1-1, 1-2 and 2-2 (group 1-2 enzymes) had very low activities towards this epoxide. A kinetic study indicated that GST 7-7 showed the largest kappa cat/Km value for the catalytic reaction of GOC-GSH conjugation among the GSTs. In spite of their much smaller kappa cat values, group 3-4 enzymes showed much larger kappa cat/Km values for GOC than the group 1-2 enzymes, because GOC had a much higher affinity for group 3-4 enzymes than for group 1-2 enzymes. A comparative study was also done with GSH conjugations of styrene 7,8-oxide (STO) and 1-chloro-2,4-dinitrobenzene by the GSTs. Unlike GOC, the conjugation of STO was mediated at rates about twice as high by group 3-4 enzymes than by GST 7-7. STO was also a very poor substrate for group 1-2 enzymes.

Animals

Enzymic conversion of 11,12-leukotriene A4 to 11,12-dihydroxy-5,14-cis-7,9-trans-eicosatetraenoic acid. Purification of an epoxide hydrolase from the guinea pig liver cytosol.

(11S,12S)-Epoxy-5,14-cis-7,9-trans-eicosatetraenoic acid (11,12-leukotriene A4) was nonenzymically converted to seven compounds: two diastereomers of (12S)-hydroxyeicosatetraeno-delta-lactones (major products), two diastereomers of (5,12S)-dihydroxyeicosatetraenoic acid and three stereoisomers of (11,12S)-dihydroxyeicosatetraenoic acid. Among these compounds, (11R,12S)-dihydroxy-5,14-cis-7,9-trans-eicosatetraenoic acid proved to be the only enzymic product. This hydrolysis activity was present in the cytosol fractions of various tissues of guinea pig such as liver, adrenal gland, small intestine, and brain. We purified the epoxide hydrolase to an apparent homogeneity from the guinea pig liver. The enzyme had a molecular weight of 60,000 as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and an isoelectric point of 7.3. The partial amino acid sequence was different from that of the microsomal enzyme. Km and Vmax values for 11,12-leukotriene A4 were 18 microM and 2.4 mumol/min/mg protein, respectively. These results indicate that 11,12-dihydroxyeicosatetraenoic acid is enzymically synthesized from 11,12-leukotriene A4 by the action of the cytosolic epoxide hydrolase in vitro.

Animals

7-ethenyloxycoumarin as a new substrate for fluorophotometric assay of hepatic microsomal epoxidizing activities.

7-Ethenyloxycoumarin (7-vinyloxycoumarin, VOC) was metabolized by rat liver microsomes in the presence of a reduced nicotinamide adenine dinucleotide phosphate-generating system to 7-hydroxycoumarin (HOC) and glycolaldehyde via the unstable epoxide, 7-(epoxyethoxy)coumarin, as an obligatory intermediate which had a half life of 5.4 min in 0.1 M phosphate buffer, pH 7.4, at 37 degrees C. The epoxide of VOC accumulated in the microsomal incubation mixture in the presence of the epoxide hydrolase inhibitor, 3,3,3-trichloropropene 1,2-oxide, was isolated and identified. HOC and glycolaldehyde were auto-decomposition products of the putative highly unstable intermediate, 7-(1',2'-dihydroxyethoxy)coumarin, mostly formed by microsomal epoxide hydrolase from the epoxide. Direct fluorophotometry of HOC made it possible to determine epoxidizing activities of very small quantities of the microsomes from untreated rat liver (greater than or equal to 5 micrograms protein). VOC was epoxidizied by rat liver microsomal cytochrome P-450, inducible by 3-methylcholanthrene (3-MC) and phenobarbital (PB), and the microsomal epoxidation reactions were inhibited by IgG preparations raised against the major cytochrome P-450 components isolated from 3-MC- and PB-pretreated rat liver microsomes. In the untreated, 3-MC- and PB-pretreated rat liver microsomes, at least two monooxygenase components with different affinity were strongly suggested by a kinetic study, carried out using the antibodies, to be involved in the epoxidation of VOC.

Animals

[Case report: hemiballism due to a putaminal cavernous hemangioma].

A rare case of reversible hemiballism due to putaminal pathological process in a 51-year-old woman is described. She was hospitalized for evaluation of hemiballism and muscle weakness on the left side. A cranial computed tomography scan demonstrated a high density lesion in the right putamen with enhancement on delayed scan. Angiographic examination revealed no apparent abnormalities. Magnetic resonance imaging with T1 weighted showed a isodense lesion in the right putamen, while T2 weighted image revealed a ring like low signal area around a high signal lesion. These findings were compatible with the diagnosis of cavernous hemangioma. In order to establish the final diagnosis, CT-guided stereotaxic biopsy was carried out. But histological specimen showed only gliosis and calcification. Immediately after the biopsy, a small hemorrhage took place in the right putamen extending to the head of caudate nucleus head. Following this episode, hemiballism ceased, however, it gradually returned along with absorption of hemorrhage. The speculated pathophysiology of this on-and-off hemiballism was as follows; it initially developed as the result of suppression of inhibitory fibers from the striatum to the pallidum by a minor hemorrhage of putaminal cavernous hemangioma, and ceased by declining the activities of the pallidum due to interruption of excitatory fibers from the thalamus and the cortex to the striatum.

Brain Neoplasms

Covalent binding of 4-nitrobenzyl mercaptan S-sulfate to the sulfhydryl groups of hepatic cytosolic proteins and bovine serum albumin with mixed disulfide bond formation.

4-Nitrobenzyl [35S]mercaptan S-sulfonic acid ([35S]NBM S-sulfate), a new type of reactive metabolite of the thiol [35S]NBM in rat liver cytosol fortified with 3'-phosphoadenosine 5'-phosphosulfate, bound rapidly and covalently at pH 7.4 and 37 degrees C to the sulfhydryl groups of rat liver cytosolic proteins with formation of disulfide bonds. From the radioactive proteins was isolated and identified the sole amino acid adduct, S-([35S]NBM)cysteine, after their acid hydrolysis under the anaerobic conditions. Bovine serum albumin (BSA), a model protein with a single SH group, also reacted readily with radioactive NBM S-sulfate to form a disulfide bond in stoichiometric manner. S-([35S]NBM)-cysteine was also isolated and identified as the sole amino acid adduct from the well-washed, radioactive BSA after the same anaerobic acid hydrolysis. A normal hepatic level of GSH not only retarded the BSA-NBM adduct formation completely, but also detached the radioactivity from BSA by the reduction of the disulfide bond with formation of [35S]NBM and its disulfide. Of twenty-one amino acids examined at pH 7.4 and 37 degrees C, only cysteine reacted with NBM S-sulfate and afforded S-(NBM)cysteine with concomitant formations of S-sulfocysteine, cystine, NBM, and its disulfide.

Animals

Effect of subcutaneous injection of a long-acting analogue of somatostatin (SMS 201-995) on plasma thyroid-stimulating hormone in normal human subjects.

SMS 201-995 (SMS), a synthetic analogue of somatostatin (SRIF) has been shown to be effective in the treatment of the hypersecretion of hormones such as in acromegaly. However, little is known about the effects of SMS on the secretion of thyroid-stimulating hormone (TSH) in normal subjects. In this study, plasma TSH was determined with a highly sensitive immunoradiometric assay, in addition to the concentration of SMS in plasma and urine with a radioimmunoassay, following subcutaneous injection of 25, 50, 100 micrograms of SMS (4 subjects/dose) or a placebo (6 subjects) to normal male subjects, at 0900 h after an overnight fast. The plasma concentrations of SMS were dose-responsive and the peak levels were 1.61 +/- 0.09, 4.91 +/- 0.30 and 8.52 +/- 1.18 ng/ml, which were observed at 30, 15 and 45 min after the injection of 25, 50 and 100 micrograms of SMS, respectively. Mean plasma disappearance half-time of SMS was estimated to be 110 +/- 3 min. Plasma TSH was suppressed in a dose dependent manner and the suppression lasted for at least 8 hours. At 8 hours after the injection of 25, 50 and 100 micrograms of SMS, the plasma TSH levels were 43.8 +/- 19.4, 33.9 +/- 9.4 and 24.9 +/- 3.2%, respectively, of the basal values. The results suggest that SMS suppresses secretion of TSH from the normal thyrotrophs in man and thus also that attention should be paid to possible hypothyroidism during the long-term treatment of patients such as those with acromegaly with this potent analogue of SRIF.

Adult

Cryoelectron microscopy of vitrified Sendai virions.

Morphology of vitrified Sendai virions was studied by transmission type electron microscopy. Almost all the virions appeared to be completely spherical, although their diameters differed. A possibly continuously long nucleocapsid was seen running helically in an envelope. Spikes were seen on the virion surfaces. The results indicate pleomorphism of Sendai virions in size but not in shape.

Freezing

Role of endogenous arginine vasopressin in potentiating corticotropin-releasing hormone-stimulated corticotropin secretion in man.

Exogenously administered vasopressin (VP) augments ACTH secretion stimulated by CRH. This study was performed to elucidate the role of endogenous VP in potentiating CRH-induced ACTH secretion in man. Synthetic human CRH (100 micrograms) was injected iv into seven normal men after they had been water loaded (20 mL/kg; 60 and 30 min before CRH injection; WL-CRH test) and water deprived (water restriction for 18 h before CRH injection; WD-CRH test). Blood samples were obtained before and 5, 15, 30, 60, 90, and 120 min after CRH injection at 0900 h for determination of plasma ACTH, cortisol, arginine vasopressin (AVP), CRH, and catecholamine levels and osmolality. Urine was obtained immediately before and 120 min after CRH injection for determination of osmolality. The mean plasma AVP levels were significantly higher during the WD-CRH test [1.8 +/- 0.4 (+/- SE) to 1.9 +/- 0.4 pmol/L] than during the WL-CRH test (0.6 +/- 0.1 to 0.9 +/- 0.1 pmol/L). The mean plasma ACTH and cortisol levels rose significantly from basal (4.5 +/- 0.6 pmol/L and 320 +/- 20 nmol/L, respectively) to peak values of 14.0 +/- 2.1 pmol/L at 30 min and 700 +/- 50 nmol/L at 60 min, respectively, during the WD-CRH test. During the WL-CRH test, mean basal plasma ACTH and cortisol levels were 3.5 +/- 0.7 pmol/L and 420 +/- 50 nmol/L, respectively, and reached peak values of 7.7 +/- 1.1 pmol/L at 60 min and 550 +/- 40 nmol/L at 30 min, respectively. Both the mean peak levels and integrated ACTH and cortisol responses were significantly higher during the WD-CRH than during the WL-CRH test. There was no significant difference between the plasma CRH and catecholamine concentrations in both tests. These results suggest that endogenous AVP potentiates CRH-stimulated ACTH secretion and, thus, plays a physiologically significant role in regulating CRH-stimulated ACTH and cortisol secretion in man.

Adrenocorticotropic Hormone

Dehydroepiandrosterone sulfate (DHEA-S) and 3', 5'-cyclic adenosine monophosphate (cAMP) production in a cultured human adrenocortical carcinoma cell line (SW-13).

Very little has been known of the biochemical function of a human adrenocortical carcinoma cell line, SW-13. In this study, the production of several adrenal steroids and 3', 5'-cyclic adenosine monophosphate (cAMP) were investigated in this cell line. The cells were incubated in L-15 medium containing 0.1% bovine serum albumin with several reagents in an atmosphere of 5% CO2 and 95% air for 2 hours at 37 degrees C. Aldosterone (Ald), corticosterone (B), cortisol (F), dehydroepiandrosterone sulfate (DHEA-S) and cAMP were simultaneously assayed by specific radioimmunoassays in the medium and cells. Significant increases in cAMP production were observed by cholera toxin (10 ng/ml) and forskolin (10 nM), both direct stimulators of adenylate cyclase, in the cAMP concentration without an increase in the steroids. The DHEA-S concentration in the medium was significantly increased by angiotensin-II (10(-7)M), noradrenalin (3 X 10(-5) M), adrenalin (3 X 10(-5) M) or alpha-melanocyte-stimulating hormone (alpha-MSH, 10(-7) M), none of which was associated with cAMP production. Neither adrenocorticotropin (10(-10) M) nor human chorionic gonadotropin (500 mIU/ml) stimulated the release of the steroids or cAMP production. A calcium ionophore, A23187 (10(-7) M), and 12-O-tetradecanoylphorbol-13-acetate (10(-8) M), a direct stimulator of protein kinase C, stimulated the release of DHEA-S, but not those of Ald, B and F. The results suggest that SW-13 retains functioning adenylate cyclase which, however, is not linked with steroidogenesis and that DHEA-S is produced probably by the mechanisms which involve protein kinase C system or calcium ion. This report provides the first demonstration of cAMP and DHEA-S production in SW-13 and suggests that this cell line is potentially useful for investigating the mechanisms of steroidogenesis in the human adrenal cortex.

Adrenal Cortex Neoplasms

[A case of multiple superficial temporal artery pseudoaneurysms following craniotomy].

A case of multiple superficial temporal artery (STA) pseudoaneurysms following craniotomy is reported and a review of the literature is made. The patient was a 17-year-old male who was hospitalized as he developed right hemiparesis 4 hours after golf ball injury to the left temporal region. He had been diagnosed as hemophilia A one year prior to the injury. CT scan showed right parietal intracranial hematoma with mass effect when he was submitted to emergency craniotomy. At surgery a linear scalp incision was made over the left temporal area after high factor VIII concentrates (con-VIII), 2,000 units, were administered. His postoperative course was uneventful and hemiparesis improved substantially, however two pulsatile masses along the incision scar over the scalp were noticed some 40 days after the hematoma removal. There was another pulsating mass in the left wrist where an arterial cannulation was made at the time of craniotomy. Selective angiograms showed two left STA pseudoaneurysms and left radial pseudoaneurysm was also demonstrated. The left STA was embolized with Gelfoam pieces through catheterization after administration of con-VIII, and the radial artery aneurysm was surgically resected. There was no evidence of recurrence of these lesions during the follow-up period of eight months. Among over 130 cases of STA pseudoaneurysms reported, there was no case with hemophilia and also no such a case described which developed after craniotomy on reviewing the literature. And it was proved that con-VIII has enabled a patient to tolerate embolization procedure through catheterization.

Adolescent

Diurnal rhythm of plasma immunoreactive corticotropin-releasing factor in normal subjects.

Plasma corticotropin-releasing factor (CRF), corticotropin (ACTH) and cortisol levels were simultaneously determined by radioimmunoassays at 0600 h, 1200 h, 1800 h and 2200 h in six normal subjects, in order to examine whether the diurnal rhythm in plasma CRF exists and how it correlates to the diurnal rhythm in plasma ACTH and cortisol concentration. The highest CRF level was observed at 0600 h (7.0 +/- 1.2 pg/ml) and significantly lower levels (p less than 0.01) at 1800 h (1.7 +/- 0.2 pg/ml) and 2200 h (1.9 +/- 0.4 pg/ml). A clear diurnal rhythm was demonstrated in plasma ACTH and cortisol levels, with the highest values at 0600 h (44.6 +/- 8.1 pg/ml and 15.9 +/- 2.0 micrograms/dl, respectively) and the lowest at 2200 h (12.3 +/- 2.8 pg/ml and 4.6 +/- 1.0 micrograms/ml, respectively). These results suggest that the diurnal rhythm in ACTH and cortisol is under the regulation, at least in part, of the diurnal rhythm in CRF secretion.

Adrenocorticotropic Hormone

Long-chained 1-mercapto-n-alkanes as potent inhibitors toward liver alcohol dehydrogenase.

Long-chained 1-mercapto-n-alkanes showed potent inhibitory effects on horse liver alcohol dehydrogenase (HLADH). The inhibitory effect of the thiols was enhanced by increasing the number of the alkyl carbon atoms up to 10-12 and steeply lowered by further increase in the carbon number. The HLADH activity was almost completely inhibited in competitive manner by an equivalent concentration of 1-mercapto-n-decane or -n-dodecane to that of the subunit of the dimeric zinc enzyme; inhibition constant Ki was 0.55 nM for the former. The present study strongly suggests that the thiols interact simultaneously with at least two sites of HLADH; the primary one could be the zinc atom in the active site of the enzyme, interacting with the sulfhydryl groups, and the other a hydrophobic binding site for the their alkyl carbons.

Alcohol Dehydrogenase

Inversion of enantioselectivity in glutathione conjugation of 9,10-dihydrobenzo[a]pyrene 7,8-oxide in hepatic cytosol of rats following induction of hepatic hyperplastic nodules by chemical carcinogens.

Enantiomers of 9,10-dihydrobenzo[a]pyrene 7,8-oxide (DBPO) were stereoselectivity conjugated with glutathione (GSH) specifically at benzylic carbon (C7) in normal Sprague--Dawley (SD) rat liver cytosol: (7R,8S)-(+)- greater than (7S,8R)-(-)-DBPOs. In contrast, in liver cytosol of SD rats bearing hepatic hyperplastic nodules induced with chemical carcinogens, (7S,8R)-(-)-DBPO was preferentially conjugated with GSH to (7R,8S)-(+)-DBPO. GSH S-transferases (GSTs) having sub-unit protein 4 were strongly suggested to play an important role in the preferential conjugation of (7R,8S)-(+)-DBPO in the normal rat liver cytosol, while the preferential conjugation of (7S,8R)-(-)-DBPO in the liver cytosol of the rat bearing hepatic hyperplastic nodules, was most likely to be attributable to GST 7-7, a characteristically induced protein in the hepatic hyperplastic nodules.

Animals

Sulphotransferase-mediated covalent binding of the carcinogen 7,12-dihydroxymethylbenz[a]anthracene to calf thymus DNA and its inhibition by glutathione transferase.

The carcinogen, 7,12-dihydroxymethylbenz[a]anthracene (DHBA), bound covalently through its 7-methylene carbon to calf thymus DNA via DHBA 7-sulphate, a regiospecifically formed, reactive metabolite, when incubated with rat liver cytosol in the presence of 3'-phosphoadenosine 5'-phosphosulphate (PAPS). The hydroxysteroid sulphotransferase inhibitor, dehydroepiandrosterone sulphate, strongly retarded the covalent binding of DHBA to DNA as well as the DHBA 7-sulphate formation from DHBA in the biological system, while pentachlorophenol and dichloronitrophenol showed little effect on these reactions. DHBA 7-sulphate was a good substrate for rat liver cytosolic glutathione (GSH) transferases, so that the PAPS-dependent covalent binding of DHBA to DNA could be markedly retarded in the presence of GSH with concomitant formation of a significant amount of the stable conjugate, S-(12-hydroxymethylbenz[a]anthracen-7-yl)methylglutathione. From DNA, incubated with DHBA in the presence of the hepatic cytosol and PAPS as well as with DHBA 7-sulphate alone, two purine base adducts were isolated after hydrolysis. The purine base adducts accounted for 70% of the total covalent binding of the carcinogen or its 7-sulphate to the nucleic acid and were identified with synthetic specimens as N6-(12-hydroxymethylbenz[a]anthracen-7-yl)-methyladenine and N2-12-hydroxymethylbenz[a]anthracen-7-yl)-methylguanine. The ratio of the adenine to guanine adducts was 1:2.5 with DNA, incubated with DHBA in the presence of hepatic cytosol and PAPS as well as with various concentrations of DHBA 7-sulphate.

Animals