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Biomedical subjects

N Ohgiya

Publications and source records attributed to N Ohgiya.

9 recordsLinked to original sources

Effect of aminoguanidine on optic nerve involvement in experimental diabetic rats.

The effect of aminoguanidine (AG) on structural abnormalities in optic nerve fibers was evaluated in streptozotocin-induced diabetic rats. Morphometry of myelinated optic nerve fibers showed a partial amelioration on the reduction of the axon size but complete preservation of myelin size with low dose (25 mg kg-1 body weight) AG treatment. High dose (100 mg kg-1 body weight) AG completely prevented myelinated nerve fiber atrophy. These findings indicated that nonenzymatic glycation contributes to the development of optic nerve changes in diabetic rats.

Animals↗

Purification and properties of a new beta-naphthoflavone inducible cytochrome P-450, aryl hydrocarbon hydroxylase from rat kidney.

In rat kidney, beta-naphthoflavone induced 53 kDa and 55 kDa proteins, which were both recognized by the antibodies against rat liver cytochrome P-450 1A1 (55kDa). The major inducible 53 kDa protein was purified from the beta naphthoflavone-treated rat kidney and shown to be a new cytochrome P-450 having a high aryl hydrocarbon hydroxylase activity. Purified cytochrome P-450, named P-450KAh, was homogeneous on SDS-polyacrylamide gel electrophoresis, and the apparent molecular weight was estimated to be 53 kDa. The absorption spectra of the oxidized form of P-450KAh showed a Soret peak at 416 nm, a characteristic of low-spin hemoprotein, and the Soret peak of the reduced cytochrome P-450-CO complex was at 446 nm. In the reconstituted system, purified P-450KAh showed high catalytic activity for benzo[a]pyrene hydroxylation and 7-ethoxycoumarin O-deethylation. P-450KAh could activate genotoxicities of not only B[a]P, but also 2-acetylaminofluorene and aflatoxin B1 on the umu test. These catalytic properties of P-450KAh were almost the same as those of P-4501A1, a major P-450 form having arylhydrocarbon hydroxylase in liver microsomes of 3-methylcholanthrene-treated rats, and P-450KAh could not be distinguished from P-4501A1 even by immunochemical analysis. However, the electrophoretic peptide patterns after alpha-chymotrypsin or trypsin treatment of P-450KAh were different from those of P-4501A1, and the NH2-terminal 11 amino acid sequence of the P-450 was also different from that of P-4501A1 and any other P-450s of rat.

Amino Acid Sequence↗

[Enkephalin-inactivating enzymes].

The inhibitory effects of opioid peptides such as [Met5]-enkephalin and [Met5]-enkephalin-Arg6 on the electrically-evoked contractions of guinea-pig ileum, mouse vas deferens and rat vas deferens were enhanced by aminopeptidase inhibitors such as amastatin and bestatin, a peptidyl dipeptidase A inhibitor like captopril, and endopeptidase-24.11 inhibitors such as phosphoramidon and thiorphan. The magnitude of the enhancement by each peptidase inhibitor depended on both the preparation and opioid peptide employed. Additionally, enkephalin had been shown to be almost exclusively hydrolyzed at least in the ileal and striatal guinea pig membrane preparation by 3 kinds of enzymes, amastatin-sensitive aminopeptidase(s), captopril-sensitive peptidyl dipeptidase A and phosphoramidon-sensitive endopeptidase-24.11, which were indicated to be located very close to opioid receptors.

Aminopeptidases↗

Effects of the subcutaneous administration of enkephalins on tail-flick response and righting reflex of developing rats.

The s.c. administration of [Met5]-enkephalin to 10-day-old rats pretreated with the mixture of 3 peptidase inhibitors, amastatin, captopril and phosphoramidon, produced the inhibition of tail-flick response and loss of righting reflex. When infant rats were pretreated with the mixture of any combination of two peptidase inhibitors, however, the change in both the response and the reflex were not produced at all by enkephalin injection, indicating that 3 kinds of enzymes, amastatin-sensitive aminopeptidase(s), captopril-sensitive peptidyl dipeptidase A and phosphoramidon-sensitive endopeptidase 24.11, played an important role in the inactivation of enkephalin after its systemic administration. Additionally, the fact that the two enkephalin-induced effects were more effectively antagonized by naloxone, a relatively selective mu-opioid antagonist, than by naltrindole, a specific delta-antagonist, or by nor-binaltorphimine, a specific kappa-antagonist, showed that these two effects were produced by the interaction of enkephalin with mu receptors. Moreover the involvement of mu receptors in the production of these two effects was shown by the fact that the s.c. administration of [D-Ala2,N-Me-Phe4,Gly5-ol]-enkephalin, a selective mu agonist, also produced these two effects which were more effectively antagonized by naloxone than by naltrindole or nor-binaltorphimine. Since the magnitude of the two effects induced by enkephalins in 15-day-old rats was significantly lower than that in 10-day-old rats, and the two enkephalin-induced effects were not produced at all in 20-day-old rats, a maturation-induced decrease in the permeability of the blood-brain barrier against opioid peptides was indicated.

Aging↗

Decrease of cytochrome P-450 having arylhydrocarbon hydroxylase and increase of UDP-glucuronyltransferase glucuronizing phenolic xenobiotics in rat liver nodule.

Microsomal arylhydrocarbon (benzo[a]pyrene) hydroxylase activity in hyperplastic nodules in the livers of rats was decreased by feeding 2-acetylaminofluorene in their diet to 10% of that without 2-acetylaminofluorene feeding. By immunoblotting analysis with the antibodies raised against P-450/B[a]P, which is a form of cytochrome P-450 catalyzing benzo[a]pyrene hydroxylation in liver microsomes of untreated rats, it was shown that P-450/B[a]P content was decreased in the microsomes prepared from the nodular tissues. Microsomal UDP-glucuronyltransferase activity toward phenolic xenobiotics such as 1-naphthol and 4-nitrophenol was increased by 4.5-5.0-fold in the nodular tissues. This increase was inhibited by the addition of antibodies raised against GT-1, a form of UDP-glucuronyltransferase glucuronizing phenolic xenobiotics. Immunoblotting analysis with the antibodies against GT-1 showed that a protein band corresponding to GT-1 was increased in the microsomes from nodular tissues. The increased UDP-glucuronyltransferase also had about 4,000 daltons "high mannose" oligosaccharide(s) like GT-1. The decreases of P-450/B[a]P and increases of GT-1 were observed mainly in nodular foci of the liver tissues. These results indicate that in liver nodules, decreased cytochrome P-450-dependent benzo[a]pyrene hydroxylase activity and increased UDP-glucuronyltransferase activity toward phenolic xenobiotics result from the decrease of the P-450 corresponding to P-450/B[a]P and the increase of the GT corresponding to GT-1.

2-Acetylaminofluorene↗

Purification and properties of cytochrome P-450 generally acting as a catalyst on benzo[a]pyrene hydroxylation from liver microsomes of untreated rats.

A form of cytochrome P-450 generally catalyzing benzo[a]pyrene (B[a]P) hydroxylation was purified from liver microsomes of untreated rats on the basis of the catalytic activity. The purification procedures consisted of cholate solubilization and chromatography in 3 steps, on DEAE-Toyopearl (at room temperature), hydroxylapatite, and CM-Toyopearl columns. Cytochrome P-450 purified in this way (named P-450/B[a]P) was homogeneous on SDS-polyacrylamide gel electrophoresis, and the molecular weight was estimated to be 51,000. The absorption spectra of the oxidized form of P-450/B[a]P showed a Soret peak at 417 nm, characteristic of low-spin hemoprotein, and the Soret peak of the reduced cytochrome P-450-CO complex was at 451 nm. Immunochemical analysis of P-450/B[a]P indicated that P-450/B[a]P is immunologically distinct from P-450b (a major phenobarbital-inducible form of P-450) and P-450c (a major 3-methylcholanthrene-inducible form of P-450, which highly catalyzes the hydroxylation of B[a]P). B[a]P hydroxylase activity in liver microsomes of untreated rats was inhibited to about 20% by the P-450/B[a]P antibody. These results demonstrate that P-450/B[a]P is a different form of P-450 from P-450b and P-450c, and generally catalyzes B[a]P hydroxylation in liver microsomes of untreated rats.

Amino Acid Sequence↗

Purification and properties of UDP-glucuronyltransferase from kidney microsomes of beta-naphthoflavone-treated rat.

Rat kidney microsomal UDP-glucuronyltransferase activities toward phenoic xenobiotics were enhanced about 4-5-fold by treatment of the animal with beta-naphthoflavone. The transferase activity toward serotonin, an endogenous substrate, was also enhanced about 7.5-fold. A form of UDP-glucuronyltransferase was purified from kidney microsomes of beta-naphthoflavone-treated rat by solubilization with sodium cholate and two steps of column chromatography, the first with DEAE-Toyopearl (fast flow rate liquid chromatography:FFLC) and the second with UDP-hexanolamine Sepharose 4B (affinity chromatography). These procedures gave about 39-fold purification and 11.5% yield of the transferase activity toward 1-naphthol. The preparation, tentatively termed "GT-2," was highly purified as judged from the single protein band (Mr 54,000) on sodium dodecylsulfate (SDS)-polyacrylamide slab gel electrophoresis. It catalyzed the glucuronidation of not only phenolic xenobiotics such as 1-naphthol, 4-nitrophenol, and 4-methylumbelliferone but also serotonin. From the result that apparent molecular weight of GT-2 was reduced to 50,000 by endo-beta-N-acetylglucosaminidase H (Endo H)-treatment, GT-2 was found to be a 50,000 Da polypeptide carrying "high mannose" type oligosaccharide chain(s). The NH2-terminal sequence of 20 residues of GT-2 was determined to be Asp-Lys-Leu-Leu-Val-Val-Pro-Gln-Asp-Gly-Ser-His-Trp-Leu-Ser-Met-Lys-Glu- Ile-Val . It was observed that there are two amino acids substitutions in the seven NH2-terminal residues in comparison with GT-1, which was purified from liver microsomes of 3-methylcholanthrene-treated rat. The NH2-terminal sequence of GT-2 was found to be homologous with the NH2-terminal sequence from the 26th to 46th amino acid residue of various UDP-glucuronyltransferase cloned by other investigators.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylglucosaminidase↗