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Biomedical subjects

M Komori

Publications and source records attributed to M Komori.

At least 19 recordsLinked to original sources

Mutagenic activation of 3-methoxy-4-aminoazobenzene by mouse renal cytochrome P450 CYP4B1: cloning and characterization of mouse CYP4B1.

A new P450 responsible for mutagenic activation of 3-methoxy-4-aminoazobenzene (3-MeO-AAB) which is a potent procarcinogen was purified from renal microsomes of male mice using an index of umu gene expression. The purified P450 had high bioactivation toward 3-MeO-AAB and also 2-aminofluorene and 2-aminoanthracene. The antibody against this P450 completely inhibited mutagenic activation of 3-MeO-AAB of mouse renal microsomes. With immunoblotting, this form was present abundantly in renal microsomes of male mice but not in those of female mice. This P450 was also present in pulmonary microsomes of male and female mice but not in hepatic microsomes. The NH2-terminal amino acid sequence analysis indicated that this form belonged to the CYP4B subfamily. Thus, mouse kidney cDNA library was screened with rat CYP4B1 probe. The cDNA-deduced amino acid sequence of isolated cDNA consisted of 511 amino acids and bore 90, 86, and 84% similarities to rat, rabbit, and human CYP4B1, respectively. The NH2-terminal amino acid sequence of the purified renal P450 and amino acid sequence of BrCN-digested peptides from the purified P450 agreed with the cDNA-deduced amino acid sequence. These results suggest that CYP4B1 is a major form in renal microsomes of male mice and plays a major role in mutagenic activation of 3-MeO-AAB. In extrahepatic tissue, CYP4B1 may contribute to chemical carcinogenesis.

Amino Acid Sequence

Effect of iron as a new type of phosphate binder in hemodialysis patients.

Hyperphosphatemia is one of the major problems requiring management in the majority of hemodialysis patients and they require phosphate-binding agents to control the hyperphosphatemia. Aluminum hydroxide and calcium compounds are used currently as phosphate-binding agents to treat hyperphosphatemia, but these compounds can cause undesirable side effects. Therefore, the development of new phosphate-binding agents is imperative. It is well known that oral and intravenous administration of iron causes hypophosphatemia. We hypothesized that this side effect of iron may be beneficial for the treatment of hyperphosphatemia in hemodialysis patients. Consequently, we conducted a fundamental and clinical investigation of the effects of iron administration. Membrane permeability of phosphorus in a mixture of sodium ferrous citrate and dessicated aluminium hydroxide in the presence of hydrogenated lecithin as a phosporic compound was examined. Fifteen patients undergoing hemodialysis were treated with 150 mg of sodium ferrous citrate given orally for eight weeks. The permeability of the filtering membrane to phosphorus decreased in accordance with the dosage of sodium ferrous citrate and dessicated aluminum hydroxide. The degree of phosphate-binding effect of sodium ferrous citrate was larger than that of dessicated aluminum hydroxide. Serum phosphorus decreased significantly during the experiment. These results suggest that the oral administration of sodium ferrous citrate as a new phosphate binder is a useful therapeutic method for hemodialysis in patients with hyperphosphatemia.

Administration, Oral

New aerodynamic aspects of nasal patency.

In considering possible aerodynamic indicators of subjective nasal stuffiness, we measured nasal resistance, acceleration change of nasal airflow, and alteration of differential pressure and compared those with the degree of severity of sensation of nasal obstruction in 75 patients. The acceleration change of airflow and alteration of differential pressure are presented as an equation: y = ax2 + bx + c, in which "a" represents the approximate shape of the curve. Nasal resistance, on either inspiration or expiration, and coefficient "a" of acceleration change the rapid phase from inspiration to expiration correlated well with subjective nasal patency, while coefficient "a" of acceleration change the rapid phase from expiration to inspiration and alteration of differential pressure either the rapid phase from inspiration to expiration or from expiration to inspiration did not correlate well with perception of nasal blockage. It seems that measurement of respiratory acceleration of airflow of quiet nasal breathing is a useful indicator of subjective nasal patency.

Acceleration

Comparison of heme environment at the putative distal region of P-450s utilizing their external and internal nitrogenous ligand bound forms.

Thr-303 to Lys-mutated P-450 2E1, as well as Thr-301 to Lys-mutated P-450 2C2, had absorption spectra characteristic of a nitrogenous ligand-bound form of P-450, such as the pyridine complex of P-450 2E1; (i) in the ferric state, the red-shifted Soret band, compared with the typical low-spin type spectrum of P-450, and the more intense beta band than the alpha band and (ii) in the ferrous state, two Soret peaks at around 447 and 422 nm, the relative intensities of which depended on pH, indicating the existence of two interconvertible states. The equilibrium between the two states of the mutated P-450 2E1 appeared to be shifted toward the 422 nm state, compared with the mutated P-450 2C2. The corresponding mutant of P-450 2C14 had similar spectral properties to those of both mutated P-450s except that the shorter of the two Soret bands of its ferrous form was relatively broad and appeared at 418 nm. These findings suggest that the epsilon-amino-nitrogen of the Lys of the mutated P-450s is located in the appropriate position to occupy the sixth coordination position with the heme iron and spatial differences exist in the essentially conserved structure of the distal heme domain among the three ferrous Lys-mutated P-450s.

Base Sequence

Different mechanisms of regioselection of fatty acid hydroxylation by laurate (omega-1)-hydroxylating P450s, P450 2C2 and P450 2E1.

P450 2C2 as well as P450 2E1 [Fukuda, T. et al. (1993) J. Biochem. 113, 7-12] catalyzed the hydroxylation of medium chain fatty acids, although the regioselectivity of substrates of the former contrasted with that of the latter. Whereas P450 2E1 hydroxylated C9-C18 fatty acids at the omega-1 position and to a much lesser extent at the omega and omega-2 positions, P450 2C2 hydroxylated C9-C13 fatty acids at different positions dependent on the chain length of fatty acids. Among the fatty acids used as the substrate, undecanoate was hydroxylated at the omega-1 position almost exclusively by P450 2C2. The proportion of omega-hydroxylated products produced by P450 2C2 was markedly increased with decreasing chain length of fatty acids, while the hydroxylation positions were enlarged to the omega-3 position with tridecanoate. When the conserved Thr at the putative distal helix was replaced with Ser, the substrate regioselectivity of the two P450s was affected in different manners. The mutation of P450 2C2 did not change the hydroxylation positions of C9-C12 fatty acids, but caused a significant decrease in the proportion of the omega-1 hydroxy analog in the total products. In sharp contrast to P450 2C2, the mutated P450 2E1 gave additional products to those with the wild-type P450, and the number of different products increased with increasing chain length of the fatty acids. Thus, the products of palmitate hydroxylation were identified as omega-1, omega-2, omega-3, omega-4, omega-5, omega-6, and omega-7 monohydroxy isomers using gas chromatography-electron impact mass spectrometry.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

A major glucocorticoid-inducible P450 in rat liver is not P450 3A1.

A new P450 3A cDNA (RL33) has been cloned from a liver cDNA library of untreated male rat. RL33 is 2032 nucleotides in length and has an open reading frame of 502 amino acid residues. The nucleotide sequence of its 5'-noncoding region is completely identical with that of a genomic clone of P450 3A1 isolated by Burger et al. [Proc. Natl. Acad. Sci. USA 89, 2145-2149 (1992)]. Compared with rat P450 3A1, P450 RL33 showed 98 and 97% identities in the nucleotide and deduced amino acid sequences, respectively, with the deletion of 2 amino acids and substitution of 12 amino acids. These residues were localized around amino acids 107-230. Recently Kirita and Matsubara have isolated the same P450 3A cDNA (cDEX) from dexamethasone (DEX)-treated rat liver [Arch. Biochem. Biophys. 307, 253-258 (1993)]. Northern blot analysis using an oligonucleotide probe specific for P450 RL33/cDEX revealed that P450 RL33/cDEX mRNA was induced strongly by pregnenolone 16 alpha-carbonitrile and DEX and weakly by phenobarbital (PB) and triacetyloleandomycin. We constructed a P450 3A cDNA library by the reverse transcriptase-polymerase chain reaction using common primers to P450 RL33/cDEX, 3A1, and 3A2, and subcloned the cDNAs into pUC119. The expression level of P450 RL33/cDEX mRNA was investigated by identifying each clone with the above oligonucleotide probe. P450 RL33/cDEX mRNA represented over 70% of the total P450 3A mRNA from untreated, PB-, and DEX-treated rat liver. These results indicated that the major DEX-inducible form of P450 3A is P450 RL33/cDEX and not P450 3A1.

Amino Acid Sequence

[Monocular indirect argon laser photocoagulation for advanced retinopathy of prematurity].

A retrospective study of monocular indirect argon laser retinal photocoagulation for retinopathy of prematurity (ROP) was performed on 53 eyes of 36 premature infants, admitted to the neonatal intensive care unit (NICU) of Juntendo hospital from Jan. 1988 to Dec. 1990. The argon laser beam was delivered from an argon laser source located in the outpatient clinic to the NICU through a 50-meter fiber-optic cable. Thirty-eight eyes of 27 infants showing stage 3 middle substage of ROP retained a mild grade of cicatrical ROP. Fifteen eyes of 8 infants showed "Plus disease". Five eyes of these retained a severe grade of cicatrical ROP. The success rate of ROP treatment by laser photocoagulation was more satisfactory than in xenon are photocoagulation with cryotherapy. This method has slight technical difficulties, but the infants could be treated in a supine position in the incubators. Thus, monocular indirect argon laser retinal photocoagulation is a useful method in the treatment of ROP.

Combined Modality Therapy

A novel P450 expressed at the high level in rat brain.

Only P450 2D mRNA could be detected in Northern blot analysis of rat brain poly(A)+ RNA using probes from eight different P450s involved in drug metabolism. Four cerebral P450 cDNAs were isolated from a rat brain cDNA library using rat P450 2D2 cDNA as a probe, three of which were identified to rat P450 2D4. The expression of 2D4 mRNA was investigated by the reverse transcriptase-polymerase chain reaction and southern blot analysis using an oligonucleotide probe specific for P450 2D4. P450 2D4 mRNA was expressed at the high level in brain. Furthermore, it was detected in all other tissues examined, although to a lesser extent except in the liver and small intestine. However, total mRNAs of other P450 2D members (2D1, 2D2, 2D3, and 2D5) were mainly expressed in liver. The total level of expression of these mRNAs varied markedly among tissues. These results suggest that P450 2D4 may have a specific physiological function in the brain.

Animals

Transgenic Drosophila carrying mammalian cytochrome P-4501A1: an application to toxicology testing.

Transgenic Drosophila which carry a canine cytochrome P-450 were established and evaluated for its value on toxicology testing. Dah1, a cDNA clone for the canine hepatic P-4501A1, was ligated between the promoter of Drosophila heat-shock protein gene and the terminator of actin 5C gene, and then microinjected into Drosophila embryos with a transposon P element. The injected DNA was stably integrated into chromosomal DNA in germ line cells. After heat-shock treatments, transgenic larvae produced mRNA and a detectable amount of protein that cross-reacted with antibodies against rat P-4501A1. The ability of transgenic flies to activate procarcinogens was monitored in the DNA repair test with the endpoint being preadult mortality of repair-defective mei-9a mei-41D5/Y males. Heat-shock treatments of larvae showed that the repair-defective males carrying the P-4501A1 transgene were killed by lower concentrations of 7,12-dimethylbenz[a]anthracene than their non-transgenic or non heat-shocked counterparts. Coadministration of alpha-naphthoflavone, one of the inhibitors of P-4501A subfamily, cancelled the enhanced mortality of transgenic males, supporting that 7,12-dimethylbenz[a]anthracene was metabolized to its genotoxic form by the expressed P-4501A1 enzyme. This study indicates a potential utility of transgenic Drosophila for screening mammalian promutagens and procarcinogens.

9,10-Dimethyl-1,2-benzanthracene

Purification and characterization of a form of P450 from horse liver microsomes.

A form of P450 [termed P450(h-1)] was purified from the liver microsomes of a male horse to electrophoretic homogeneity. The specific content of the final P450(h-1) preparation was 14.8 nmol/mg of protein and the recovery was 0.38% of the microsomal P450. The apparent molecular weight of P450(h-1) was 52,000 Da. The absorption spectra of P450(h-1) indicated that P450(h-1) was a low- and high-spin mixed type P450 in the oxidized form. The reconstituted system containing P450(h-1) could catalyze benzphetamine N-demethylation, 7-ethoxycoumarin O-deethylation, and testosterone 16 alpha-hydroxylation. In the horse hepatic microsomes, aniline p-hydroxylation and testosterone 6 beta-hydroxylation, in addition to the above reactions, were detected. The N-terminal amino acid sequence of P450(h-1) was highly homologous to that of rat P450 2C11. Western blot analysis using anti-P450(h-1) antibody revealed that this antibody most strongly recognized P450 2C13 among ten rat P450s belonging to eight different subfamilies involved in hepatic drug metabolism. This anti-P450(h-1) antibody inhibited the testosterone 16 alpha-hydroxylase activity in horse liver microsomes. These results suggest that P450(h-1) belongs to the P450 2C subfamily and contributes to the testosterone 16 alpha-hydroxylation in horse liver microsomes.

Amino Acid Sequence

Molecular cloning of monkey liver cytochrome P-450 cDNAs: similarity of the primary sequences to human cytochromes P-450.

Three cDNAs coding for monkey cytochrome P-450 (P450) 2C, 2E and 3A (MKmp13, MKj1 and MKnf2, respectively) were isolated from a lambda gt11 cDNA library of a liver from a 3-methylcholanthrene (3MC)-treated crab-eating monkey, using cDNA fragments for human P450 2C, 2E and 3A as respective probes. MKmp13 and MKnf2 were 1901 and 2032 bp long, containing entire coding regions for polypeptides of 490 and 503 residues, respectively. The deduced N-terminal amino acid sequences of MKmp13 and MKnf2 were identical with those of P450-MK1 and P450-MK2, which had been purified from liver microsomes of untreated and polychlorinated biphenyl (PCB)-treated crab-eating monkeys, respectively. MKj1 was 1508 bp long, encoding a polypeptide of 449 residues, which is presumed to lack N-terminal 45 residues as compared with the sequence for human P450 2E1. Northern blot analysis indicated that monkey P450 2C, 2E and 3A mRNAs were expressed constitutively in monkey livers. P450 2E and 3A mRNAs were induced by both 3MC and PCB, while P450 2C mRNA was induced only by PCB. The deduced amino acid sequences of four monkey cytochrome P-450 cDNAs, including P450 1A1 (MKah1) which we isolated previously, were more than 92% identical with those of corresponding human cytochrome P-450 cDNAs.

Amino Acid Sequence

Molecular cloning of monkey P450 1A1 cDNA and expression in yeast.

Monkey P450 1A1 cDNA (MKah1) was isolated from the lambda gt11 cDNA library of a liver from a 3-methylcholanthrene (3MC)-treated crab-eating monkey using a dog P450 1A1 cDNA fragment as a probe. MKah1 was 2453 bp long and contained an entire coding region for a polypeptide of 512 residues. The nucleotide and deduced amino acid sequences of MKah1 displayed 95% and 94% identity with those of the human P450 1A1 gene, respectively. Even in the 3' noncoding region, MKah1 showed 94% homology with human P450 1A1, whereas it showed less than 69% homology with other mammalian P450 1A1. Monkey P450 1A1 mRNA was not detectable in untreated livers, but was induced by polychlorinated biphenyl and 3MC. The expression plasmid (designated as pMKC-1) was constructed by introduction of the coding region of MKah1 into a yeast expression vector (pAM82) containing the promoter of acid phosphatase (APase). Northern blot analysis revealed that monkey P450 1A1 mRNA was expressed in yeast under the control of the APase promoter. Microsomes from yeast transformed by pMKC-1 catalyzed 7-ethoxycoumarin O-deethylation, benzo(a)pyrene hydroxylation and the mutagenic activation of 2-amino-3-methyl-imidazo[4,5-f]quinoline (IQ), 3-amino-1-methyl-5H-pyrido(4,3-b)-indole acetate (Trp-P-2) and 2-amino-6-methyldipyrido(1,2-a:3',2'-d)imidazole acetate (Glu-P-1).

Amino Acid Sequence

Stable expression of cytochrome P450IIIA7 cDNA in human breast cancer cell line MCF-7 and its application to cytotoxicity testing.

A mammalian cell expression plasmid containing cytochrome P450IIIA7 complementary DNA was constructed. Breast cancer cells (MCF-7) were transfected with the plasmid and neomycin-resistant selection marker plasmid. We established three cell lines, termed M13, M21, and M27, which expressed the cytochrome P450IIIA7 as examined by RNA blot and immunoblot analyses. These cell lines showed 8- to 10-fold higher sensitivity against aflatoxin B1 compared to parental MCF-7 cells, suggesting that cytochromes P450IIIA7 expressed in the cells were responsible for the production of the cytotoxic metabolite of aflatoxin B1.

Adult

Toxicological significance of dog liver cytochrome P-450: examination with the enzyme expressed in Saccharomyces cerevisiae using recombinant expression plasmid.

A complementary DNA (cDNA) coding for a form of beagle dog cytochrome P-450 (Dah1), which is the orthologue to the CYP1A1 cDNA of rat, mouse and human, was inserted between the alcohol dehydrogenase (ADH) promoter and terminator regions of the yeast expression vector pAAH5. On introduction of the resulting recombinant plasmid pDC-1, Saccharomyces cerevisiae strain AH22 cells synthesized up to 1.5 x 10(5) molecules per cell of cytochrome P-450 protein (P-450(Dah1)). The carbon monoxide-bound reduced form of P-450(Dah1) showed an absorption peak at 447 nm and specific content of P-450(Dah1) was about 0.1 nmole P-450 per mg of microsomal protein. P-450(Dah1) cross-reacted with antibodies to rat P-448-H (CYP1A2) and dog P-450-D2 (CYP1A2). P-450(Dah1) activated 2-amino-3-methyl-imidazo[4,5-f]quinoline (IQ) and 2-amino-3,4-dimethylimidazo[4,5-f]quinoline (MeIQ) most efficiently in the umu test and exhibited a high activity of aryl hydrocarbon hydroxylase toward benzo[a]pyrene.

Animals

Dynamic light scattering studies on hydrodynamic properties of fibrinogen-fibronectin complex.

A high molecular weight 'cryogel' was obtained as insoluble complexes by cold incubation at near-freezing temperatures from heparinized plasma of patients with rheumatoid arthritis. After the cryogel was solubilized at 37 degrees C, 1:1 complex of fibrinogen and fibronectin was purified at room temperature by affinity chromatography on a gelatin-Sepharose 4B. Hydrodynamic properties of the complex were investigated as a function of temperature and NaCl concentration using a dynamic light scattering. The diffusion coefficients of the complex at 20 degrees C decreased with increasing of NaCl concentration as free fibronectin. The complex appears to be a more compact form at low ionic concentration, which is associated with conformational changes of fibronectin. The diffusion coefficient of the complex at 20 degrees C in 0.05 M TrisHCl(pII7.4) containing 0.5 M NaCl was estimated as 8.5 x 10(-8) cm2s-1. The complex did not dissociate over the temperature range from 20 to 37 degrees C. The diffusion coefficients of the complex decreased significantly at 12 degrees C and 40 degrees C. The thermal denaturation of fibrinogen molecule in the complex was observed at 40 degrees C. The CONTIN analysis of the light scattering data showed that the complex associated to form higher aggregates at 15 degrees C, but not at near-freezing temperature. The equilibrium between the complex and higher aggregates appeared reversible.

Diffusion

Quantitative assessment of digitized portal images: effect of sampling frequency on observer performance.

To investigate spatial resolution requirements for digitized portal images in radiation therapy, observer performance tests were performed. One hundred twenty portal images were digitized with sampling frequencies of 0.700, 0.350, and 0.175 mm for observation. Receiver operating characteristic analysis was used to determine the acceptable sampling frequency for clinical portal images. The detectability of setup errors was significantly better on the original images than on the digitized images with sampling frequencies of 0.700 mm (P = .005) and 0.350 (P = .046). Some clinical disadvantages might accrue with the use of a sampling frequency of 0.350 mm or larger.

Humans

Human fetal liver cytochrome P-450: capacity to form genotoxic metabolites.

Unlike most experimental animals, human fetal liver possesses forms of cytochrome P-450. Thus, the purpose of this study was to clarify the toxicological significance of these forms of cytochrome P-450 to understand possible roles of these cytochromes in producing genotoxic metabolites from promutagens. In fact, human fetal livers showed considerable capacity to activate aflatoxin B1 and IQ (2-amino-3-methylimidazo [4,5-f] quinoline). Three of four forms of cytochrome P-450, P-450HFLa-d, which we could purify from human fetal livers were capable of activating promutagens to mutagens. One of these three forms, namely P-450HFLa, catalyzed the metabolic activation of aflatoxin B1 and IQ. An expression plasmid containing HFL33 cDNA encoding P-450HFLa was constructed and the protein expressed in insect (Sf9) cells and in human cancer cells, MCF-7. Aflatoxin B1 was efficiently activated to a mutagen upon addition of the lysate of Sf9 cells to the incubation mixture for the assay. Transformants of MCF-7 cells expressing P-450IIIA7 (HFLa) showed higher sensitivity to aflatoxin B1 than the parental MCF-7 cells as detected by cytotoxicity.

Animals

Six-base deletion occurring in messages of human cytochrome P-450 in the CYP2C subfamily results in reduction of tolbutamide hydroxylase activity.

We isolated and expressed a clone, hPA6, possibly corresponding to the CYP2C9 cDNA. Compared with the other CYP2C9 cDNA clones, hPA6 showed a 6-nucleotide deletion near its middle. From the same cDNA library, we could also isolate another cDNA clone, named hPA22, which retained the 6 bases. For clarification of the effect of the 2-amino acid deletion resulting from the 6-base deletion on enzymatic activities, both clones were expressed in yeast. The expressed enzymes showed tolbutamide hydroxylase activities, and these activities were inhibited by antibodies against P-450-HM2, a probable CYP2C9. The activity of the enzyme encoded by hPA6 was lower than that encoded by hPA22; thus the 2-amino acid deletion in the CYP2C9 reduced the enzymatic activity.

Amino Acid Sequence