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Biomedical subjects

Y Yamazoe

Publications and source records attributed to Y Yamazoe.

At least 19 recordsLinked to original sources

Hormonal regulation of rat renal cytochrome P450s by androgen and the pituitary.

The hormonal regulation of rat renal cytochrome P450s, P450 4A2 (K-5) and K-2, was investigated. The level of P450 4A2 in male rats was five times that in female rats and accounted for some 90% of total cytochrome P450, measured photometrically. Lauric acid omega- and (omega-1)-hydroxylation activities of renal microsomes of male rats were also higher than those of female rats. The sex differences in lauric acid hydroxylation activity seemed to arise from the differences in P450 4A2 concentrations, according to an immunochemical study. P450 K-2 was a female-dominant form in rat kidneys. The level of P450 K-2 in renal microsomes of male rats was one-tenth that of P450 4A2. Castration of male rats decreased the levels of P450 4A2 and treatment of castrated male rats with testosterone reversed the decrease. The castration of male rats decreased the lauric acid hydroxylation of the renal microsomes to the level of female rats. The administration of testosterone to castrated male rats reversed the decrease. Hypophysectomy of male rats decreased the level of P450 4A2 and the administration of growth hormone reversed the decrease when intermittent injections mimicking the male secretory pattern were given, although continuous administration mimicking the female secretory pattern did not. Castration of male rats did not affect the level of P450 K-2, but testosterone decreased its level. Hypophysectomy of male rats increased the level of P450 K-2 and growth hormone decreased its level in hypophysectomized rats. These results suggested that the expression of P450 4A2 was regulated by androgen or growth hormone and regulation of P450 4A2 was different from that of P450 K-2. To explore the regulation of renal cytochrome P450 further, testosterone was given to control (intact) or hypophysectomized adult female rats. P450 4A2 was induced in the kidneys of both control and hypophysectomized female rats to close to the level of male rats. Thus, P450 4A2 was directly regulated by testosterone as well as growth hormone, and the regulation of the male-dominant form in rat kidneys was different from that of the male-specific form in the rat liver, which is regulated mostly by growth hormone.

Animals

Predictive factors for intrahepatic recurrence of hepatocellular carcinoma after partial hepatectomy.

To establish useful predictors of the intrahepatic recurrence of hepatocellular carcinoma (HCC) after partial hepatectomy, retrospective analyses of clinical and pathologic factors were done in 112 of 206 patients treated by partial hepatectomy. The absence or presence of intrahepatic recurrence was confirmed by a follow-up study. Cancer-free survival rates after 1, 2, 3, and 5 years were 54.8%, 36.7%, 32.5%, and 25.6%, respectively. The significant factors affecting recurrence were tumor size, number of tumors, cancer cell infiltration of the fibrous capsule of the tumor, portal involvement, and stage of the tumor, but the grade of anaplasia according to Edmondson-Steiner's classification and the severity of associated liver cirrhosis did not show a correlation with the incidence of recurrence. According to Akaike's Information Criteria (AIC), tumor number is useful for predicting early prognosis, and capsular infiltration is a good indicator of long-term survival. However, portal involvement gives much prognostic information throughout the entire postoperative period.

Adult

N-nitrosodialkylamine dealkylation in reconstituted systems containing cytochrome P-450 purified from phenobarbital- and beta-naphthoflavone-treated rats.

Five cytochrome P-450 forms were purified from livers of rats pretreated with phenobarbital (PB) or beta-naphthoflavone (BNF), and the oxidative dealkylation of N-nitrosodialkylamines by the reconstituted cytochrome P-450 systems was measured. PB-II (P450IIB1) showed very high N-nitrosomethybutylamine (NMBA) debutylase activity, high NMBA demethylase activity and high N-nitrosomethyl-benzylamine (NMBeA) debenzylase activity, suggesting that the increase following PB treatment in hepatic microsomal NMBA debutylation and NMBeA debenzylation was due to the induction of PB-II. BNF-H (P450IA2) showed very high NMBA debutylase and high NMBeA debenzylase activities, and BNF-L (P450IA1) showed NMBA debutylase and high NMBeA debenzylase activities. These results suggested that the increase by BNF pretreatment in hepatic microsomal NMBA debutylation was due mainly to the induction of BNF-H and in some part to that of BNF-L. PB-II also showed very high dealkylation activity of lipophilic N-nitrosodialkylamines with long alkyl moieties. On the other hand, BNF-H dealkylated N-nitrosodipropylamine (NDPA), N-nitrosomethylbutylamine (NMBA) and N-nitrosoethylbutylamine (NEBA) at higher rates than N-nitrosodibutylamine (NDBA). BNF-L dealkylated NEBA at higher rates than NMBeA and NDBA. These results reveal that substrate specificity of each cytochrome P-450 form in N-nitrosodialkylamine metabolism is different from each other and several forms of cytochrome P-450 support each N-nitrosamine dealkylase activity in mammalians.

Animals

Sex-specific cytochrome P450 as a cause of sex- and species-related differences in drug toxicity.

Male rats are the most frequently used experimental animals in drug toxicity tests. However, there are clear sex-related differences in toxicity of various drugs and chemicals in rats. These differences, in most cases, are closely connected with the sex-related differences in hepatic drug metabolisms. Recent studies indicate the existence of sex-specific cytochrome P450, such as P450-male (2C11) and P450-female (2C12) and P450(6) beta (3A2) in rat livers, and also show that their expression levels are markedly different between male and female rats. The expressions of sex-specific P450s are regulated by growth hormone, thyroid hormone, sex hormones and other chemicals. On the other hand, there are no or few cytochrome P450s that show the sex-related differences in species other than rats and mice. Although there are orthologous cytochrome P450s in viewpoints of amino acid sequence and substrate specificity in experimental animal species and humans, their expressions are not regulated by hormonal factors in most of the species. These differences may cause clear species differences, if male animals are used, in the toxicity caused by various drugs and chemicals. Thus we can predict the sex-related difference in drug toxicity on the basis of difference in the expression levels of sex-specific cytochrome P450s.

Animals

Histopathological prediction of liver metastasis after curative resection of colorectal cancer.

To estimate the risk of liver metastasis after curative resection of colorectal cancer, resected specimens from 290 patients (45 with metachronous liver metastasis) were examined and the relationships between 10 histopathological variables and liver metastasis were analysed using our application of the Akaike information criterion (AIC). Of the 10 variables examined, the depth of venous invasion (Vd) had the greatest prognostic value for metastasis, followed by the number of venous invasions, the number of lymphovascular invasions, lymph node metastasis and type of infiltration. The prediction of liver metastasis was further improved by combining Vd with lymphocyte infiltration, mucinous production, interstitial fibrosis or depth of penetration, although these four variables per se were minimally informative for metastasis. We conclude that the prediction of liver metastasis is best achieved by combining Vd with other variables. Our risk group classification, and the estimated probability of liver metastasis for each group, are shown.

Adenocarcinoma

Sulfotransferase-mediated DNA binding of N-hydroxyarylamines(amide) in liver cytosols from human and experimental animals.

Characteristics of cytosolic sulfotransferase-mediated binding of carcinogenic N-hydroxyarylamines(amide) have been investigated and compared among experimental animal species and humans in vitro. Human cytosols exhibited significant sulfating activities towards 2-hydroxyamino-6-methyldipyrido[1,2-a:3',2'-d]imidazole (N-hydroxy-Glu-P-1), N-hydroxy-2-aminofluorene (N-hydroxy-AAF) and N-hydroxy-2-acetylaminofluorene (N-hydroxy-AAF), but had no detectable activity toward 2-hydroxyamino-3-methyl-imidazo[4,5-f]quinoline (N-hydroxy-IQ). Although the extent of the covalent binding of these N-hydroxyarylamines(amide) differed significantly among individuals, clear correlations were observed among the sulfation of N-hydroxyarylamines (amide) and also with p-nitrophenol sulfation. Hepatic cytosols from mouse, rat, guinea-pig, hamster, rabbit, dog and monkey also mediated the binding of N-hydroxy-Glu-P-1, N-hydroxy-AF and N-hydroxy-AAF, while only rat cytosols showed detectable DNA binding of N-hydroxy-IQ. Among the species examined, rat showed the highest capability for activating these N-hydroxyarylamines(amides). Significant sex-related differences were detected in rat, dog and monkey for all substrates examined, except N-hydroxy-IQ. Clear correlations were observed in the animal species between N-hydroxyarylamines(amide), but not with p-nitrophenol. Using an ion-exchange chromatographic system, sulfating activity of p-nitrophenol in human livers was separated into two fractions and the PAPS-dependent DNA binding of N-hydroxy-AF was supported mainly by the later fraction. On Western blots, an immunoreactive protein was detected in these fractions using an antibody raised against rat hepatic N-hydroxy-AAF sulfotransferase. The band was also detected in human hepatic cytosols with considerable individual variation in their amounts. These results indicate the involvement of a closely related form(s) of sulfotransferase in the PAPS-mediated activation of N-hydroxyarylamines(amide) in human as well as in the experimental animal species.

Animals

Hepatic triiodothyronine sulfation and its regulation by growth hormone and triiodothyronine in rats.

The regulatory mechanism of cytosolic sulfation of T3 has been studied in rat liver. Sulfation of T3 is sexually differentiated in adult rats of Sprague-Dawley (SD), Fisher 344, and ACI strains. In SD strain, the male animals showed 4 times higher sulfating activity than did the females. The specific activity was decreased by hypophysectomy of male adult rats, but was not affected in the females. Thus, the sex-difference was abolished in the hypophysectomized condition. Supplement of human GH intermittently twice daily for 7 days, to mimic the male secretory pattern, increased T3 sulfating activity in both sexes of hypophysectomized rats, whereas continuous infusion to mimic a female secretory pattern had no appreciable effect. Cytosolic sulfation of T3 was decreased by 25 to 30% by thyroidectomy or propylthiouracil treatment of male adult rats, and was restored by the supplementation of T3 (50 micrograms/kg daily for 7 days) to thyroidectomized rats. Administration of T3 in hypophysectomized rats almost completely restored the sulfating activity in the males and increased the activity in the females. Cytosolic T3 sulfation was inhibited by the addition of known inhibitors of phenol sulfotransferase, pentachlorophenol or 2,6-dichloro-4-nitrophenol. These results indicate a role of pituitary GH in hepatic sulfation of thyroid hormones in rats. The data obtained also raise the possibility that GH may modify the effect of thyroid hormones on the pituitary by a feed-back mechanism through changing the level of a sex-dominant phenol sulfotransferase(s) in rat livers. T3 was also sulfated in hepatic cytosols of mouse, hamster, rabbit, dog, monkey, and human.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Effects of gamma-interferon and FK506 on resting B cell proliferation of New Zealand black/white F1 mice.

We examined the effects of gamma-interferon (gamma-IFN) and the new immunosuppressant FK506 on resting B cell proliferation of New Zealand black/white F1 hybrid (B/W F1) mice, an animal model of human systemic lupus erythematosus (SLE). gamma-IFN and FK506 inhibited in a dose-dependent manner both B cell proliferation and autoantibody production of resting B cells respectively. There was a synergistic interaction between gamma-IFN and FK506 in their inhibition and they did not exhibit cell cytotoxicity. This in vitro synergism of gamma-IFN and FK506 may have clinical application in that low doses of gamma-IFN and FK506 combinations may be effective to correct polyclonal B cell activation of patients with SLE.

Animals

[Enzymes involved in metabolic activation of carcinogenic chemicals and their hormonal regulation].

Mechanisms of metabolic activation of carcinogenic chemicals, especially arylamines, are discussed together with characteristics of enzymes involved in the activation in the liver and extrahepatic tissues. In rodents, drug and carcinogen metabolizing activities often show clear age- and sex-related differences and also vary in diseased states. The current understanding of the roles of pituitary growth hormone and thyroid hormone on changes of hepatic drug metabolizing enzymes is shown in relation to the developmental changes and alteration in patho-physiological conditions.

Acetyltransferases

Effect of repeated oral doses of a novel immunosuppressive macrolide lactone on hepatic mixed-function oxidase system in the rat. Comparative study with ciclosporin.

Effect of pretreatment of rats with FK506((-)-(1R,9S,12S,13R,14S,17R,18E,21S,23S,24R,25S,27R)-17-allyl-1,14- dihydroxy-12-[(E)-2-[(1R,3R,4R)-4-hydroxy-3methoxycyclohexyl]-1- methylvinyl]-23,25-dimethoxy-13,19,21,27-tetramethyl-11,28-dioxa-4- azatricyclo-[22.3.1.0(4.9)]octacos-18-ene-2,3,10,16-tetrone hydrate, CAS 104987-11-3) on microsomal cytochrome P-450 system and oxidations of the administered drug and other model substrates were studied and compared with those of a pharmacologically related drug, ciclosporin (cyclosporin A). Oral treatment of male Sprague-Dawley rats with FK506 (0.4, 2 or 10 mg/kg/d) for 7 days did not decrease microsomal content of total cytochrome P-450 in livers, but rather increased the content in groups with the dose of 0.4 or 10 mg/kg to the levels of 126-130% of the control. Microsomal NADPH-cytochrome c reductase activities were decreased up to 67% of the control with the increasing dose of FK506 and to 62% in a group treated orally with cyclosporin A (25 mg/kg/d for 7 days), although another microsomal electron-transport component, cytochrome b5, was rather increased in all the treated groups. Treatment with FK506 or cyclosporin A did not reduce but slightly increased microsomal activities of aniline hydroxylation, p-nitroanisole O-demethylation and O-ethoxyresorufin O-deethylation. Microsomal depropylation of 7-propoxycoumarin, a typical P-450IIIA-substrate, was also not reduced in all dose groups of FK506, while it was decreased by the treatment with 25 mg/kg cyclosporin A.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

A gene structure of testosterone 6 beta-hydroxylase (P450IIIA).

Genomic clones of a rat testosterone 6 beta-hydroxylase have been isolated and characterized as the first gene (P450/6 beta A) among P450IIIA subfamily. This gene spans about 25Kb and consists of 13 exons, which is the largest number of exons among cytochrome P-450 genes reported previously. The nucleotide sequence of the exon region showed high similarity to those of P450PCN2 and P450PCN1 cDNA (Gonzalez, F.J. et al. (1987) Mol. Cell. Biol. 2969-2974), but several replacements and deletions of nucleotide were found between the P450/6 beta A gene and both cDNAs, indicating the existence of multiple P450IIIA genes in rats.

Animals

An arylamine acetyltransferase (AT-I) from Syrian golden hamster liver: cloning, complete nucleotide sequence, and expression in mammalian cells.

A cDNA clone (designated hamAT101) encoding an arylamine acetyltransferase, AT-1, was isolated from a hamster liver lambda gt11 cDNA library using a specific polyclonal antibody raised against AT-1. The cloned cDNA insert consisted of 1181 nucleotides, including an open reading frame of 870 nucleotides encoding 290 amino acid (Mr 33,503). The isolated cDNA displayed high sequence similarity to those of chicken, rabbit, and human acetyltransferases. In Northern blots, the hamAT101 cDNA probe hybridized to an RNA band of 18S in the livers of both slow and rapid acetylator phenotypes. To confirm that hamAT101 cDNA encodes the monomorphic but not the polymorphic protein, the isolated cDNA was expressed in monkey kidney cells (COS-1 cells) using the vector p91023(B). A protein with a molecular weight similar to that of AT-1 was detected upon Western blotting in the 9000 x g supernatant from the transfected cells. The activity toward four different substrates of the 9000 x g supernatant was also examined. In agreement with the results of purified AT-1, the cDNA-expressed protein exhibited a high capacity for N-acetylation of 4-aminoazobenzene and 2-aminofluorene, and O-acetylation of 2-hydroxyamino-6-methyldipyrido [1,2-a:3',2'-d] imidazole, whereas no activity was found for the N-acetylation of p-aminobenzoic acid. These results, in addition to the RNA blot hybridization, indicate that hamAT101 encodes the hamster acetyltransferase AT-1.

Amino Acid Sequence

Cytochrome P-450 human-2 (P-450IIC9) in mephenytoin hydroxylation polymorphism in human livers: differences in substrate and stereoselectivities among microheterogeneous P-450IIC species expressed in yeasts.

The cDNA of a P-450 human-2 and the two other closely related cDNAs, MP-8 (two deduced amino acids substituted) and lambda hPA6 (two deduced amino acids deleted) were expressed in Saccharomyces cerevisiae cells, and their catalytic and chemical properties were compared to identify which cDNA encodes a major S-mephenytoin 4'-hydroxylase in human livers. In immunoblots, P-450 human-2 cDNA-derived protein in yeasts was stained at the position identical with P-450 human-2 purified from liver and a major protein in microsomes of 19 Japanese livers. MP-8- and lambda hPA6-derived proteins were immunostained at positions near, but distinct from P-450 human-2, and were not detected in those 19 livers. All three proteins expressed in yeasts catalyzed hydroxylation of mephenytoin, hexobarbital, benzo[a]pyrene and tolbutamide, although the rates of the hydroxylation of most of the drugs by P-450 human-2 were higher than those of the two others. In addition, these expressed proteins showed clear differences in the hydroxylation of chiral substrates: P-450 human-2 catalyzed the hydroxylation of S-mephenytoin five times faster than that of the R-enantiomer. Similar high enantioselectivities were also observed on the hydroxylation of R- and S-hexobarbital. However, MP-8- and lambda hPA6-derived proteins catalyzed hydroxylation of these two drugs with less or almost no stereoselectivity. These results indicate that only a few amino acid alterations cause dramatic changes in both the chemical and catalytic properties of P-450 human-2.

Base Sequence

Purification of hepatic N-hydroxyarylamine sulfotransferases and their regulation by growth hormone and thyroid hormone in rats.

From liver cytosols of male Sprague-Dawley rats, two N-hydroxyarylamine sulfotransferases (HASTs) which sulfate N-hydroxy-2-acetylaminofluorene and a phenolsulfotransferase (PST-I) have been purified about 290-, 690-, and 210-fold, respectively, by the use of DEAE-anion exchange, Blue-Sepharose CL-6B, DEAE-HPLC, and ATP-agarose affinity chromatography. All three enzymes showed almost the same molecular weight of 33 kDa on SDS-polyacrylamide gel electrophoresis. In Western blots using antibody raised against HAST I, the two HASTs, but not PST-I, were detected. The content of total HAST in male rats was estimated as 4-5 micrograms/mg cytosolic protein, about 4 times higher than that in female rats. Direct comparison of the DEAE-HPLC elution profiles of cytosol showed that HAST I and HAST II were male-dominant and male-specific, respectively, in their expression in the livers. Hypophysectomy decreased the level of HAST by 60% in male rats, but had no obvious effect in female rats. Intermittent injection of growth hormone to mimic the male secretory pattern raised the content in hypophysectomized rats of both sexes close to that in intact male rats, while the continuous infusion of growth hormone to mimic the female secretory pattern showed limited effects. In addition, the administration of triiodothyronine stimulated HAST in hypophysectomized rats of both sexes, and the extent of stimulation was nearly the same as observed in the male-type growth hormone treatment. PST-I, in contrast to HAST, showed no clear sex-related difference in hepatic content, and was not apparently affected by growth hormone or triiodothyronine.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Regulations of male-dominant P-450Md mRNA in rat liver by hormonal factors and xenobiotics.

Male-dominant P-450Md mRNA was undetectable in the livers of newborn rats. In female rat livers, the mRNA appeared at 17 days of age and then decreased to very low levels in the adult periods. The level of P-450Md mRNA in female rats was increased by phenobarbital or dexamethasone treatment, whereas the level in the males was depressed by methylcholanthrene. Hypophysectomy decreased the level of P-450Md mRNA in male rat livers, and continuous infusion or twice-daily injections of growth hormone to hypophysectomized rats caused further suppression or clear restoration, respectively, of the mRNA level.

Animals

Difference in the susceptibility of two phenobarbital-inducible forms, P450IIB1 and P450IIB2, to thyroid hormone- and growth hormone-induced suppression in rat liver: phenobarbital-inducible P450IIB2 suppression by thyroid hormone acting directly, but not through the pituitary system.

Suppression of two major phenobarbital-inducible cytochrome P-450s, P450IIB1 and P450IIB2, by thyroid hormone was studied and compared with growth hormone (GH)-induced suppression in rats in vivo and hepatocytes in primary culture in vitro. Treatment of adult male rats with 50 micrograms/kg triiodothyronine (T3) reduced the constitutively expressed amounts of P450IIB1 (up to 1 pmol/mg of protein) and P450IIB2 (2-5 pmol/mg of protein) to 42% and 3% of their levels in nontreated controls. Thyroidectomy increased the hepatic contents of P450IIB2 (to levels of 50-80 pmol/mg of protein) and, to a lesser extent, P450IIB1 (1-5 pmol/mg of protein) in male and female rats. Supplement of T3 to thyroidectomized rats reversed the increased contents to levels similar to those observed in normal rats. Hypophysectomy also increased both P450IIB1 and P450IIB2 protein, and their levels in both sexes were similar to that of P450IIB2 in thyroidectomized rats. Treatment of hypophysectomized rats with T3 as well as human GH suppressed hepatic contents of P450IIB1 and P450IIB2. In a hepatocyte culture including 2 mM phenobarbital, T3 and GH suppressed both P450IIB1 and P450IIB2. Other thyroid hormone derivatives, including thyroxine, D-T3, and reversed T3, also showed suppressive effects, in parallel with the potencies for their stimulatory action that have been reported. These results indicate that thyroid hormone may suppress both P450IIB1 and P450IIB2 by a direct effect on the liver, but not by an indirect effect through the modulation of pituitary GH synthesis. The high susceptibility of hepatic P450IIB2 to thyroid hormone-induced suppression also indicates that constitutive and phenobarbital-induced levels of P450IIB2 are suppressively regulated preferentially by thyroid hormone, in contrast to the high susceptibility to GH of P450IIB1 in rat liver. In addition, a difference in the suppressive mechanisms of thyroid hormone and GH was suggested by the difference in susceptibility to cycloheximide.

Animals