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Biomedical subjects

R Kato

Publications and source records attributed to R Kato.

At least 397 records · Page 22Linked to original sources

Acetyltransferase and sulfotransferase which activate mutagens and carcinogens through O-esterification mechanisms.

The regulatory mechanism of acetyltransferase and sulfotransferase, which are involved in the activation of carcinogenic arylamines and their N-hydroxy derivatives, has been studied. Cytosolic N-acetylation of 2-aminofluorene (2-AF) in hamster liver and skin showed tri-modal distribution in the presence of acetyl CoA, whereas no clear segregation was detected in the N-hydroxyarylacetamide-supported N-acetylation and acetyl CoA-dependent O-acetylation of N-hydroxy-Glu-P-1. From hamster livers, two forms of acetyltransferase, AT-I and AT-II, were purified and characterized to have different catalytic and chemical properties. AT-I was detectable in all the hamsters examined, but AT-II was detected only in the animals showing high rates of 2-AF N-acetylation. Cross-matings of the intra- and inter-phenotypes of three different acetylators (rapid, intermediate, and slow) indicate the genetic inheritance of the arylamine N-acetylation, which follows a Mendelian co-dominant trait. Cytosolic sulfotransferase catalyzes the activation of N-hydroxyarylamines and N-hydroxyarylacetamides through the enzymatic O-sulfonylation. The reaction often shows a sex-related difference in rats. Among three sulfotransferases isolated (HAST I, II, and PST I), the level of HASTs was correlated with the 3'-phosphoadenosine 5'-phosphosulfate (PAPS)-dependent activating capacity of N-hydroxy-2-acetylaminofluorene (N-hydroxy-AAF) in rat livers. In addition, hepatic content of HASTs was decreased by hypophysectomy and restored by the intermittent administration of growth hormone, which mimics the male secretory profile. These results indicate that the sex-related difference in secretory profile of pituitary growth hormone is a major determinant of the male-dominant sulfation in this species.(ABSTRACT TRUNCATED AT 250 WORDS)

2-Acetylaminofluorene↗

Pharmacogenetics and polymorphism of human P-450 which activates and detoxicates xenobiotics and carcinogens.

Stereoselective hydroxylation of mephenytoin is expressed polymorphically in the Japanese population: the occurrence of the poor metabolizer was approximately 20% in Japanese, which was 5 to 8 times higher than that in Caucasians. Microsomal 4'-hydroxylation of S-mephenytoin, but not of R-mephenytoin, was correlated to the content of cytochrome P-450 human-2. P-450 human-2 cDNA was cloned and expressed in yeast cells. The expressed P-450 showed stereoselectivities similar to those in human livers for hydroxylations of mephenytoin and hexobarbital enantiomers. The P-450 catalyzed benzo[a]pyrene and tolbutamide hydroxylations and cyclophosphamide oxidation, but showed low activity for the mutagenic activation of IQ (2-amino-3-methylimidazo [4, 5-f]quinoline). Two cDNAs (MP-8 and lambda hPA6), which are two amino acids mutated and deleted, respectively, from P-450 human-2 cDNA were expressed in yeasts. These two expressed P-450s revealed complete loss of the stereoselectivity in the hydroxylation of mephenytoin and hexobarbital. These results indicate that many xenobiotics and carcinogens are detoxicated and activated by the human liver in quite different manners among individuals by reason of genetic differences.

Aryl Hydrocarbon Hydroxylases↗

Bonding ability of light cured composite resin to enamel and dentin promoted by various bonding systems--microleakage and bond strength studies.

The purpose of this study was to estimate bond strength between light cured composite resin and enamel or dentin, and marginal sealing ability of composite resin promoted by five commercial bonding systems. At first, tensile bond strength between light cured composite resin and enamel or dentin promoted by these bonding systems were measured. Next, class V cavities were prepared at cementoenamel junction of extracted human molars and filled with light cured composite resin, using the same bonding systems. Microleakage around the restoration was estimated by dye penetration test. All bonding systems presented high bond strength and good marginal sealing between composite resin and enamel. The bonding systems which presented high bond strength between composite resin and enamel or dentin inhibited microleakage around restoration effectively. However, no bonding system could inhibit microleakage completely at the cementum/dentin-composite resin interface.

Bisphenol A-Glycidyl Methacrylate↗

Alpha 1-adrenergic stimulation and beta 2-adrenergic inhibition of DNA synthesis in vascular smooth muscle cells.

Effects of catecholamines on DNA synthesis in vascular smooth muscle cells (VSMC) were investigated in a chemically defined medium that included insulin, transferrin, and sodium selenite. Smooth muscle-rich preparation was obtained from rat aortic media and VSMC were further purified by cell cloning. A clone that was positive for smooth muscle actin and was negative for the coagulation factor VIII was used in this study. The fetal calf serum-induced proliferation was enhanced by alpha-adrenergic and inhibited by beta-adrenergic stimulation. When cells of low passages were used, dose-response curves for norepinephrine were biphasic; when cells were subconfluent, norepinephrine stimulated DNA synthesis at as low as 1 nM and was apparently ineffective at more than 100 nM. When cells were confluent, the effect of norepinephrine was inhibitory at lower concentrations (less than 1 nM) and stimulatory at relatively higher concentrations. Cells of higher passages exhibited only inhibitory effects of the amine. Stimulatory and inhibitory effects on DNA synthesis were mediated through alpha 1- and beta 2-adrenergic receptors, respectively. Thus, the alpha 1-agonist phenylephrine was more potent than the alpha 2-agonist clonidine in stimulating DNA synthesis. An alpha 1-adrenergic antagonist, prazosin, was more effective than the alpha 2-adrenergic antagonist yohimbine in antagonizing the stimulatory effect of norepinephrine. beta-Adrenergic agonists inhibited DNA synthesis with IC50 values in the nanomolar range; the rank order of potency of agonists was isoproterenol greater than salbutamol greater than or equal to (-)-epinephrine much greater than (-)-norepinephrine, consistent with beta 2-receptor specificity. (+)-Epinephrine or (+)-norepinephrine, the stereoisomers of the catecholamines, were ineffective. The inhibitory effects of norepinephrine were reversed by beta-adrenergic antagonists, with the rank order of potency of pindolol greater than butoxamine greater than atenolol, consistent with beta 2-receptor specificity. The dose-response curves of norepinephrine, therefore, seemed to be determined by a balance between alpha 1-receptor-mediated stimulation and beta 2-receptor-mediated inhibition of DNA synthesis. Minimum time required for exhibiting alpha 1-adrenergic or beta 2-adrenergic effects was between 6 and 15 hr, suggesting that the G0 or G1 phase of the cell cycle might be the site of action. These results show that catecholamines dually modulate DNA synthesis in VSMC through specific adrenergic receptors.

Animals↗

[Replacement of superior vena cava with resection of Hodgkin's disease of the thymus: a case report].

A 31-year-old male was diagnosed to have malignant thymoma with superior vena cava occlusion. At operation, we performed extended resection of tumor and superior vena cava, and replacement with ringed PTFE graft. Histological diagnosis was nodular sclerotic type of Hodgkin's disease of thymus. He received radiation with Liniac and chemotherapy post operatively, and post operative venography revealed graft patent. He is doing well 3 years after surgery.

Adult↗

[A case of major pulmonary laceration caused by blunt open chest trauma successfully treated by operation].

A 42-year-old man had his right arm pulled into a belt conveyer and his right upper extremity was amputated only partially leaving the scapula and the clavicle. A penetrating wound was present at the third intercostal space and the rupture of the upper lobe of the lung was diagnosed through this wound. After tracheal intubation, operation was performed under general anesthesia. The penetrating wound at the third intercostal space was widened and the thoracic cavity was examined. The rupture existed between S1 and S2 and it extended to subsegmental bronchus. The ruptured upper lobe was resected. The defect in the chest wall was reconstructed with mobilized anterior serratus muscle and major pectoral muscle after stabilizing the fractured ribs by inserting Kirschner wire into the marrow of the fractured ribs. Postoperative course was uneventful and the wound healed primarily without infection. The patient was sent to a rehabilitation facility 52 days after injury.

Adult↗

Cloning and sequence analysis of a rat liver cDNA encoding hydroxysteroid sulfotransferase.

Nothing has been known of the cDNAs encoding sulfotransferases (STs) that catalyze sulfation of steroids and xenobiotics. In the present study, a female Sprague-Dawley (SD) rat liver cDNA library was screened with rabbit anti-serum raised against hydroxysteroid ST a (STa) purified from female SD rat liver cytosol. The cDNA isolated from the library consisted of 1,028 base pairs which had an open reading frame of 852 base pairs encoding the entire rat ST subunit of 284 amino acids. The N-terminal amino acid sequences of STa and the rat liver hydroxysteroid ST, bile acid ST I, both elucidated previously by the chemical method, had a strong homology with that deduced from the cDNA. Northern blot analysis of total RNAs from female and male rat livers showed a marked sex difference (female much greater than male) in the expressed level of the mRNA for the predicted ST subunit protein. A remarkable sex difference (female much greater than male) was also observed by immuno-blot analysis in the level of the hydroxysteroid ST protein(s) cross-reacting with the anti-serum in the rat liver cytosols.

Amino Acid Sequence↗

Serotonin-stimulated protein phosphorylation in aortic smooth muscle cells.

The effects of serotonin on the formation of inositol phosphates and protein phosphorylation were examined in cultured smooth muscle cells. Serotonin stimulated the formation of [3H]inositol monophosphate, [3H]inositol bisphosphate and [3H]inositol trisphosphate. This effect was prevented by 5-HT2 specific antagonist, 6-methyl-1-(1-methylethyl)ergoline-8-carboxylic acid, 2-hydroxy-1-methylpropyl ester [Z]-2-butenedioate (LY53857). Serotonin stimulated the phosphorylation of many polypeptides, among which a 20 kDa polypeptide was the most prominent. The phosphorylation was also inhibited by LY53857. LY53857 alone produced no effects on protein phosphorylation. The 20 kDa polypeptides were also phosphorylated by the addition of 12-O-tetradecanoylphorbol-13-acetate. These results suggest that serotonin stimulates protein phosphorylation through 5-HT2 receptors and possibly activates protein kinase C in intact vascular smooth muscle cells.

Animals↗

[The mechanism of postoperative tetany in Graves' disease].

The levels of serum calcium (Ca), inorganic phosphate (P) and mid-molecular parathyroid hormone (PTH) were measured in 37 patients with Graves' disease (12 in hyperthyroid state, 25 in euthyroid state followed by subtotal thyroidectomy), 6 with papillary carcinoma of the thyroid, 8 with benign nodular goiter and 19 healthy control subjects in order to investigate the change in these levels before and after thyroidectomy. The levels of serum Ca and P of the hyperthyroid patients with Graves' disease were 9.73 +/- 0.30 mg/dl and 4.47 +/- 0.44 mg/dl, respectively, which were significantly higher than those of healthy control subjects. No significant difference in the levels of serum PTH was observed between hyperthyroid patients with Graves' disease and healthy control subjects. The levels of serum Ca, P and PTH of euthyroid patients with Graves' disease were not significantly different from those of healthy control subjects. In the patients with Graves' disease who had undergone subtotal thyroidectomy followed by postoperative tetany, serum Ca and serum PTH decreased significantly from 9.39 +/- 0.45 mg/dl to 7.90 +/- 0.33 mg/dl and from 406.6 +/- 164.4 pg/ml to 229.9 +/- 136.0 pg/ml, respectively, after surgery, but there was no change in serum P. In the patients without postoperative tetany, serum Ca and serum P decreased significantly after surgery from 9.65 +/- 0.36 mg/dl to 9.15 +/- 0.33 mg/dl and from 4.03 +/- 0.46 mg/dl to 3.47 +/- 0.54 mg/dl, respectively, without any change in the levels of serum PTH. In the patients with papillary carcinoma or benign nodular goiter without postoperative tetany, the levels of serum Ca, P and PTH did not change after surgery. In the patients with papillary carcinoma followed by postoperative tetany, serum Ca decreased significantly after surgery with concomitant decrease of serum PTH. It was concluded that excessive thyroid hormones influenced Ca metabolism, and the transient tetany following subtotal thyroidectomy for Graves' disease seemed to be due to both the absorption of Ca by hungry bone and parathyroid hypofunction.

Adolescent↗

Complete cDNA sequence of a major 3-methylcholanthrene-inducible cytochrome P-450 isozyme (P-450AFB) of Syrian hamsters with high activity toward aflatoxin B1.

Cytochrome P-450AFB is major isozyme inducible by 3-methylcholanthrene in Syrian golden hamsters and shows high potency toward aflatoxin B1 activation. We have isolated and sequenced cDNA clones to P-450AFB by immunoscreening a hamster liver cDNA library in lambda gt11. The longest clone contains an open reading frame of 1482 nucleotides and encodes a protein of 494 amino acids with a molecular weight of 57,420. The sequence of P-450AFB shares a 73% and 65% homology with that of mouse P-450 15 alpha (IIA3) and rat P-450a (IIA1), respectively, indicating that P-450AFB is a unique gene of the P-450IIA subfamily. The apparent concentration of a mRNA species hybridizable to the clone as well as the concentration of a protein immunoreactive to P-450AFB was increased significantly by the treatment with 3-methyl-cholanthrene, which indicates that the increase in P-450AFB protein is due mainly to an elevation of the mRNA.

Aflatoxin B1↗

Suppression in the expression of a male-specific cytochrome P450, P450-male: difference in the effect of chemical inducers on P450-male mRNA and protein in rat livers.

Hypophysectomy of male adult rats caused a 70% decrease in the hepatic level of mRNA hybridized to two specific oligonucleotide probes for the sequence of coding and 3'-noncoding regions of P450(M-1) (H. Yoshioka et al., (1987) J. Biol. Chem. 262, 1706-1711), which corresponds to P450-male. Treatment of hypophysectomized male and female rats with subcutaneous injection of human growth hormone twice a day for 7 days increased the mRNA to a level similar to that of normal male rats. In contrast, the mRNA was decreased by treatment with continuous infusion. These results correlated well with those on the amounts of P450-male protein, indicating that growth hormone regulates the hepatic level of P450-male protein mainly by acting at the pretranslational step. Treatment of adult male rats with phenobarbital (PB), dexamethasone (Dex), or 3-methylcholanthrene (MC) decreased the content of P450-male protein by 68, 36, and 46%, respectively. The content of P450-male protein was also decreased to 65% in Dex-treated hypophysectomized male rats, but was not changed by treatment of hypophysectomized male rats with PB or MC, suggesting that PB and MC decrease P450-male protein through a pituitary growth hormone-mediated process. However, the level of mRNA hybridizable to the P450-male oligonucleotide probe was not decreased, but rather it increased in PB- or Dex-treated hypophysectomized male rats. A similar inconsistent change in protein and mRNA was also observed in PB-treated normal rats. These results indicate that PB and Dex have an additional effect of increasing the hepatic level of the specific mRNA of P450-male/(M-1) or a closely related form. Noncoordinate changes in the level of P450-male protein and mRNA also suggest that the hepatic level of P450-male protein is regulated by plural mechanisms: pretranslational and translational regulation in which pituitary growth hormone and/or other endocrine factors are involved.

Animals↗

Thyroid hormone suppression of hepatic levels of phenobarbital-inducible P-450b and P-450e and other neonatal P-450s in hypophysectomized rats.

Mechanism of developmental suppression of cytochrome P-450 (P-450) in rat livers was studied using Western blots. The contents of phenobarbital (PB)-inducible P-450b and P-450e, expressed constitutively in livers, were higher in neonate than in adult rats. The contents were also 10 approximately 50 fold higher in hypophysectomized than in intact adult male rats. Administration of L-triiodothyronine (T3, 50 micrograms/kg) or human growth hormone (4 U/kg) reversed almost completely the increased amounts of P-450b and P-450e. T3-induced suppression was also observed on two other neonatal P-450s (P-450 6 beta-1 and P-448-H), which are expressed in neonatal periods in livers. The postnatal developmental profiles of hepatic P-450b were correlated inversely with that of serum free T3 level in rats reported (Walker et al. (1980) Pediat. Res. 14, 249). These results suggest, in addition to pituitary growth hormone (Yamazoe et al. (1987) J. Biol. Chem. 262, 7423), the possible involvement of T3 on the suppressive regulation of PB-inducible and other neonatal P-450s.

Animals↗

Endothelin-mediated stimulation of DNA synthesis in vascular smooth muscle cells.

Effects of endothelin on DNA synthesis were investigated in two clones of vascular smooth muscle cells, 1YB4 and A7r5. The peptide stimulated DNA synthesis in both clones with apparent EC50 of less than 1 ng/ml. More than 17 h was required before initiating endothelin-stimulated DNA synthesis. The platelet-derived growth factor at a concentration which had no effects by itself on DNA synthesis enhanced the effect of low concentrations of endothelin. A calcium antagonist, nifedipine, inhibited endothelin-induced DNA synthesis. These data suggest that endothelin stimulates DNA synthesis in vascular smooth muscle cells through nifedipine-sensitive mechanisms that can be modulated by platelet-derived growth factor.

Animals↗

Cytochrome P450 in livers of diabetic rats: regulation by growth hormone and insulin.

The effects of pituitary and pancreatic hormones on the change in hepatic cytochrome P450s were studied in alloxan- or streptozotocin-induced male rats. In two major sex-specific forms, P450-male and P450(6 beta-1), the former was decreased in chronic (5 week) diabetes to only less than one-third of controls and the latter was also reduced in early (1 week) diabetes. In contrast, a main phenobarbital-inducible form, P450b, was enhanced 25- to 30-fold in these diabetic rats. 3-Methylcholanthrene-inducible P448H was also elevated 3-fold in alloxan-induced diabetes. These changes in hepatic contents of P450-male, P450-6 beta-1, and P450b, which are under the regulation of pituitary growth hormone, associated well with the reported results of time-dependent changes in growth hormone levels in diabetes (G.S. Tannenbaum (1981) Endocrinology 108, 76-82), suggesting that the change in growth hormone level is a factor responsible for alterations in hepatic cytochrome P450s. Normalizing effects of insulin on these forms were also studied. Treatment of diabetic rats with insulin reversed the decreased amounts of both P450-male protein and mRNA. Insulin also normalized hepatic contents of P450b, P4506 beta-1, and P448H. However, the treatment of hypophysectomized rats with insulin had no effect, and treatment of diabetic rats with growth hormone or a suppressing agent of somatostatin, cysteamine, showed trivial effects on P450-male and P450b. These results suggest that insulin does not act directly as a substitute of growth hormone, but exerts its effect indirectly through the normalization of a growth hormone-mediated process(es) in diabetic rats.

Alloxan↗

Calcium uptake-dependent and -independent mechanisms of inositol trisphosphate formation in adrenal chromaffin cells: comparative studies with high K+, carbamylcholine and angiotensin II.

When [3H]inositol prelabelled cultured bovine adrenal chromaffin cells were stimulated with 56 mM KCl (high K+), 300 microM carbamylcholine (CCh) or 10 microM angiotensin II (Ang II), a rapid accumulation of [3H]IP3 was observed. At the same time, high K+ or CCh induced rapid increases in 45Ca2+ uptake, but Ang II did not induce a significant 45Ca2+ uptake. The concentration-response curve for KCl-induced [3H]IP3 accumulation coincided well with that for KCl-induced 45Ca2+ uptake into the cells. Nifedipine, a Ca2+ channel antagonist, inhibited the high K(+)-induced [3H]IP3 accumulation and 45Ca2+ uptake with a similar potency. Nifedipine at a similar concentration range also inhibited CCh-induced 45Ca2+ uptake. Although nifedipine inhibited CCh-induced [3H]IP3 accumulation, the potency was approximately 300-fold less than that for the inhibition of 45Ca2+ uptake. Nifedipine failed to affect the Ang II-induced [3H]IP3 accumulation. BAY K 8644 (2 microM), a Ca2+ channel activator, plus partially depolarizing concentration of KCl (14 mM), induced 45Ca2+ uptake and [3H]IP3 accumulation. Ionomycin (1 microM and 10 microM), a Ca2+ ionophore, also induced 45Ca2+ uptake and [3H]IP3 accumulation in a concentration-dependent manner. Pretreatment of the cells with protein kinase C activator, 100 nM 12-O-tetradecanoyl phorbol-13-acetate, for 10 min, partially inhibited CCh and Ang II-induced [3H]IP3 accumulation, but failed to inhibit the high K(+)-induced accumulation. Furthermore, the effects of high K+ and Ang II on the IP3 accumulation was additive. Ang II and CCh induced a rapid and transient increase in inositol 1,4,5-trisphosphate (1,4,5-IP3) accumulation (5 s) followed by a slower accumulation of inositol 1,3,4-trisphosphate (1,3,4-IP3). High K+ evoked an increase in 1,3,4-IP3 accumulation but obvious accumulation of 1,4,5-IP3 could not be detected. In Ca2(+)-depleted medium, high K(+)-induced [3H]IP3 accumulation was completely abolished, whereas [3H]IP3 accumulation induced by CCh and Ang II was partially inhibited. These results demonstrate the existence of the Ca2+ uptake-triggered mechanism of IP3 accumulation represented by high K+, and also the Ca2+ uptake-independent mechanism of IP3 accumulation represented by Ang II in cultured bovine adrenal chromaffin cells. Mechanism of CCh-induced IP3 accumulation has an intermediate property between those of high K+ and Ang II.

Adrenal Medulla↗

Inhibition by lipoxygenase inhibitors of 7-bromomethylbenz[a]anthracene-caused epidermal ornithine decarboxylase induction and skin tumor promotion in mice.

7-Bromomethylbenz[a]anthracene (BrMBA) has been shown to have a tumor-promoting action in mouse skin without an initial direct interaction with protein kinase C, which is believed to be a receptor for phorbol ester tumor promoters such as 12-O-tetradecanoylphorbol-13-acetate (TPA). An application of BrMBA to mouse dorsal skin caused epidermal ornithine decarboxylase (ODC) induction in a dose-dependent manner with a peak of activity at 12 h after the application. A single topical application of BrMBA failed to induce mouse ear edema formation, i.e. inflammation. However, repeated applications of BrMBA, i.e. twice a week for 3-4 times, caused a significant edema. Unlike TPA, BrMBA failed to stimulate the superoxide anion generation of rabbit peritoneal polmorphonuclear leukocytes. Lipoxygenase inhibitors such as 3,4,2',4'-tetrahydroxychalcone, nordihydroguaiaretic acid, quercetin and 2,3,5-trimethyl-6-(12-hydroxy-5,10-dodecadiynyl)-1,4-benzoquinone (AA861) effectively inhibited BrMBA-caused epidermal ODC induction and ear edema formation. In addition, BrMBA-caused skin tumor promotion was also potently inhibited by 3,4,2'4'-tetrahydroxychalcone and quercetin. These results indicate that a mechanism susceptible to lipoxygenase inhibitors plays a role not only in the TPA-caused but also in the BrMBA-caused epidermal ODC induction, skin inflammation and tumor promotion. It seems unlikely that superoxide anion generation is involved in the mechanism of BrMBA-caused skin tumor promotion.

Animals↗