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M Noshiro

Publications and source records attributed to M Noshiro.

At least 19 recordsLinked to original sources

Purification and characterization of 7 alpha-hydroxy-4-cholesten-3-one 12 alpha-hydroxylase.

The isoform of cytochrome P450 that catalyzes the 12 alpha-hydroxylation of 7 alpha-hydroxy-4-cholesten-3-one, an intermediate in the conversion of cholesterol to cholic acid, was purified to homogeneity from rabbit liver microsomes. The extent of purification in the various steps was judged by an assay involving high performance liquid chromatography. The purified enzyme showed a single band on SDS-polyacrylamide gel electrophoresis (M(r) = 50,000). The NH2-terminal amino acid sequence is as follows: Val-Leu-Trp-Gly-Leu-Leu-Gly-Ala-Leu-Leu-Met-Val-Met-Val-Gly-, which is different from that of any other P450s so far reported. The specific content of the enzyme was 13.3 nmol of cytochrome P450/mg of protein. Upon reconstitution with NADPH-cytochrome P450 reductase and cytochrome b5, the P450 enzyme showed a high activity of 12 alpha-hydroxylation with a turnover number of 36.6 min-1 at 37 degrees C. The omission of either cytochrome P450 or NADPH-cytochrome P450 reductase resulted in complete loss of activity, and the omission of cytochrome b5 resulted in 40% loss of activity. Antibodies prepared from mouse inhibited the 12 alpha-hydroxylase activity of rabbit liver microsomes about 90% and that of the rat liver microsomes 50%. The enzyme activity was not inhibited by other antibodies raised against other forms of P450 that catalyze different monooxygenation reactions toward xenobiotics or endogenous substrates. Anti-cytochrome b5 antibody inhibited the activity 40%, suggesting the functional role of this protein, and anti-reductase inhibited the activity almost completely. The microsomal enzyme activity was markedly elevated by starvation or streptozotocin administration to the animals. However, an immunoblotting experiment showed no correlation between the enzyme activity and the amount of protein, suggesting that post-translational modification may occur.

Amino Acid Sequence

Parathyroid hormone inhibits 25-hydroxyvitamin D3-24-hydroxylase mRNA expression stimulated by 1 alpha,25-dihydroxyvitamin D3 in rat kidney but not in intestine.

Using a cDNA probe for rat renal 24-hydroxylase, expression of its mRNA was compared in the rat kidney and intestine. Vitamin D-deficient rats received a single injection of 1 alpha,25-dihydroxyvitamin D3. Expression of 24-hydroxylase mRNA was first detected in the kidney at 3-h post-injection and increased thereafter. Similarly, 24-hydroxylase mRNA was expressed in the intestine after 1 alpha,25-dihydroxyvitamin D3 injection. However, the dose level of 1 alpha,25-dihydroxyvitamin D3 required to induce the intestinal 24-hydroxylase mRNA expression was only 1/100 the amount required to induce renal 24-hydroxylase mRNA. Induction of intestinal 24-hydroxylase mRNA expression by 1 alpha,25-dihydroxyvitamin D3 was far more rapid than that of renal 24-hydroxylase mRNA. Thyroparathyroidectomy shortened the time required to induce expression of renal, but not intestinal, 24-hydroxylase mRNA. Administration of either parathyroid hormone or cAMP to vitamin D-deficient rats greatly reduced the expression of 24-hydroxylase mRNA in the kidney but not in the intestine. When rats were fed a vitamin D-repleted diet containing 0.7% (adequate) or 0.03% (low) calcium for 2 weeks, intestinal expression of 24-hydroxylase mRNA could be induced only in the low calcium group. In contrast, renal mRNA expression was preferentially stimulated in the adequate calcium group. These results clearly demonstrate that the expression of 24-hydroxylase mRNA is down-regulated by parathyroid hormone in the kidney but not in the intestine.

Animals

[Molecular biology of cytochrome P450 in kidney].

Cytochrome P450-catalyzed monooxygenation system is widespread in nature and many isoforms have been found in almost all the tissues of vertebrates. In the kidney, several isoforms of cytochrome P450 families, CYP1, 2, 3, 4, 24, 27 have been characterized by biological, immunochemical and molecular biological techniques. These cytochrome P450 isoforms are localized in the endoplasmic reticulum or mitochondria of kidney cortex and functional in the monooxygenation of a number of substrates, such as steroids, fatty acids, xenobiotics, and vitamin D. Particularly, hydroxylation of vitamin D at positions of 1 and 24 is known to be one of the most important functions of kidney specific P450 isoforms.

Animals

Molecular cloning and sequence analysis of cDNA encoding delta 4-3-ketosteroid 5 beta-reductase of rat liver.

A cDNA clone encoding delta 4-3-ketosteroid 5 beta-reductase was isolated from rat liver cDNA libraries using antibodies specific for the enzyme and oligonucleotides as probes. The cDNA contained 981-base pair open reading frame encoding 327 amino acid residues (Mr 37,376) and an unusually long 3'-untranslated region rich in AT sequence in the total length of 3189 base pairs. The predicted amino acid sequence contains the sequences similar to the putative NADPH- and steroid-binding regions.

Amino Acid Sequence

Structural analysis of the gene encoding rat cholesterol alpha-hydroxylase, the key enzyme for bile acid biosynthesis.

The gene encoding cholesterol 7 alpha-hydroxylase (P450VIIA) was isolated from rat genomic DNA. The gene spanned about 11 kilobases and contained six exons. Blotting analysis of genomic DNA and complete matching of restriction maps of several isolated genomic clones indicated that there appeared to be only one gene in the rat genome. The putative transcription initiation site was present 61 base pairs upstream from the ATG codon. The typical TATA sequence and CCAAT promoter element were found at 24 and 47 base pairs upstream from the transcription initiation site, respectively. Alignment of several P450 proteins showed that the cholesterol 7 alpha-hydroxylase gene shared location of introns with none of the other P450 genes except for intron 5, which was in the same position as intron 10 of the gene encoding P450IVA1. The alignment also indicated that the distal helix of cholesterol 7 alpha-hydroxylase contained an asparagine in place of the well conserved threonine that is postulated to be involved in the O2 binding site. Unusual residues, Asn-126 and Thr-442, were also found at the sites where all other P450s have positively charged amino acids, which are considered to be involved in interaction with heme propionate. These replacements may be related to the unique function and unusual lability of the hydroxylase. Analysis of evolutionary distance between the cholesterol 7 alpha-hydroxylase gene and other known P450 genes indicated that yeast P450LIA is most closely related to P450VIIA. This finding suggests that the cholesterol 7 alpha-hydroxylase gene is an evolutionarily old P450 gene.

Amino Acid Sequence

Expression of rat liver vitamin D3 25-hydroxylase cDNA in Saccharomyces cerevisiae.

The cDNA coding for the precursor protein of rat liver mitochondrial vitamin D3 25-hydroxylase, cytochrome P450LMT25, was expressed under the control of the yeast alcohol dehydrogenase I promoter and terminator in Saccharomyces cerevisiae AH22 cells. The transformed yeast cells produced a P450LMT25 protein with an almost similar apparent molecular weight as compared with that of the authentic mature enzyme. The expression level of the P450LMT25 hemoprotein was about 5 x 10(4) molecules per cell as determined by reduced CO-difference spectra. The mitochondrial fraction prepared from the transformed yeast cells exhibited both 25-hydroxylase activity toward 1 alpha-hydroxyvitamin D3 and 27-hydroxylase activity toward 5 beta-cholestane-3 alpha, 7 alpha, 12 alpha-triol in a reconstituted system containing bovine adrenodoxin and NADPH-adrenodoxin reductase.

Alcohol Dehydrogenase

Structures and characterization of sex-specific mouse cytochrome P-450 genes as members within a large family. Duplication boundary and evolution.

We characterized two female-specific testosterone 16 alpha-hydroxylase mouse cytochrome P-450 genes, 16 alpha oh-a and 16 alpha oh-b. Gene 16 alpha oh-a, consisting of nine exons, is approximately 38 kbp in size. The exon sequence of this P-450 gene is identical to cDNA pf26 nucleotide sequence [Noshiro, M., Lakso, M., Kawajiri, K. & Negishi, M. (1988) Biochemistry 27, 6434-6443], which encodes female-specific testosterone 16 alpha-hydroxylase regulated by the murine Rip locus. Gene 16 alpha oh-b, containing nine exons with the same junctions as the 16 alpha oh-a, spans at least 20 kbp, and encodes a cytochrome P-450 whose deduced amino acid sequence is 90% similar to the hydroxylase. Nucleotide sequences revealed that duplication of the two genes occurred 4-22 million years ago, and that the 5' duplication boundary is located 1336 bp upstream from the putative transcription-start site. In the flanking regions of both genes, there is a long stretch (100 bp) of CA repeats in addition to other motifs, including TATA box, glucocorticoid-response-element-core and Simian-virus-40-enhancer sequences and IgG light-chain gene promoter. We isolated many genomic DNA clones which contain exon 1 sequences, and compared their restriction maps, cross-hybridization and nucleotide sequences. The results indicate that these genomic clones represent closely related genes in the 16 alpha oh family with a minimum of 16 members, which is further divided into classes a, b and c. 16 alpha oh-a and 16 alpha oh-b belong to the first and second classes, respectively. Moreover, extensive segmental gene conversion and nonreciprocal recombination were noted among the genes, particularly among those in class b. All genes in that class contain the long ATTT repeat sequences in intron 1, which may have triggered a rapid gene conversion and/or stabilize the duplicated genes.

Animals

Cloning and expression of cDNA encoding 25-hydroxyvitamin D3 24-hydroxylase.

A cDNA encoding 25-hydroxyvitamin D3 24-hydroxylase (P450cc24) was isolated from a rat kidney cDNA library using specific antibodies to the enzyme. The isolated cDNA was 3.2 kbp long and contained a 1542-bp open reading frame encoding 514 amino acids. The deduced amino acid sequence contained a presequence typical of mitochondrial enzymes in the N-terminal region. The amino acid sequence shows less than 30% similarity to those of any other cytochrome P450s so far reported and, therefore, P450cc24 constitutes a novel family of P450. COS-7 cells transfected with the cDNA produced a protein that was reactive with the antibodies and catalyzed NADPH-dependent 24-hydroxylation of 25-hydroxyvitamin D3 in the presence of adrenodoxin and NADPH-adrenodoxin reductase. Using the cDNA as a probe we demonstrated that the increase of 24-hydroxylation activity caused by administration of vitamin D3 into rats was accompanied by an increase of the mRNA.

Amino Acid Sequence

delta 4-3-Oxosteroid 5 beta-reductase. Structure and function.

delta 4-3-Oxosteroid 5 beta-reductase catalysing reduction of delta 4-3-oxosteroids to give A/B cis-conformation was intraperitoneally injected into BALB/c strain mice with Ribi adjuvant. Monoclonal antibody specific for this enzyme was prepared from their spleen cells. Using this monoclonal antibody as a probe the enzyme was further purified using reversed phase liquid chromatography to determine amino-acid sequence protein-chemically. Attempts to determine the N-terminal amino acid failed, indicating that the N-terminal amino acid is blocked. The protein was therefore subjected to digestion with lysyl endopeptidase after alkylating with iodoacetate. The peptides thus formed were isolated and purified by reversed-phase high-performance liquid chromatography and their amino-acid sequences were determined. Using antibodies and oligonucleotides as probes a cDNA which contained a 978 bp long open reading frame encoding 326 amino-acid residues (Mr 37376) was isolated from rat liver cDNA libraries and the entire sequence of the protein was deciphered from its nucleotide sequence. The COS cells transfected with this cDNA revealed a versatile activity to reduce varied kinds of delta 4-3-oxosteroids, i.e. 7 alpha-hydroxy-4-cholesten-3-one, androstenedione and cortisone as postulated by Okuda and Okuda (1984, J. Biol. Chem. 259, 7519-7524) and Furuebisu et al. (1987, Biochim. Biophys. Acta 912, 110-114. With a newly established immunoblotting assay method several tissues and organs were surveyed and it was found that the enzyme exists only in the liver and there is an apparent difference between sexes as to the content of this enzyme. However, there was little if any difference in the amount of mRNAs between both sexes, which may indicates that the sexual difference of rat liver cytosol 5 beta-reductase is due to a posttranslational modification and/or degradation.

Amino Acid Sequence

A stimulating electrode easily attached to and detached from the phrenic nerve.

An electrode system is developed for temporary diaphragm pacing. It is divided into four parts: an electrode complex, a tube, a branch for a lead and a syringe. Stainless steel electrodes are put forward and pulled back by pressure produced by the syringe so that they can be easily attached to and detached from the phrenic nerve. Experiments show that the system works well, the nerve is successfully stimulated and no nerve damages are visually observed.

Animals

Unique property of liver mitochondrial P450 to catalyze the two physiologically important reactions involved in both cholesterol catabolism and vitamin D activation.

The cDNA for vitamin D 25-hydroxylase in rat liver mitochondria was transfected in COS cells in order to confirm our previous postulation that both 5 beta-cholestane-3 alpha, 7 alpha, 12 alpha-triol 27-hydroxylation and vitamin D 25-hydroxylation are catalyzed by a common enzyme. As a result it was found that both enzyme activities could be reconstituted from the solubilized extract of mitochondria of these cells, NADPH, NADPH-adrenodoxin reductase and adrenodoxin, giving unequivocal evidence that the two enzyme activities are catalyzed by a common enzyme.

25-Hydroxyvitamin D3 1-alpha-Hydroxylase

Molecular cloning and sequence analysis of cDNA encoding human cholesterol 7 alpha-hydroxylase.

A complete cDNA clone encoding human cholesterol 7 alpha-hydroxylase has been isolated using a rat P-450ch7 alpha cDNA insert [(1989) FEBS Lett. 257, 97-100] as a probe and totally sequenced. The cDNA contained 1512-base pair open reading frame encoding 504 amino acid residues (Mr 57,630), 39-base pair 5'-untranslated region 1322-base pair 3'-ultranslated region including 20 nucleotides of poly A tail in the total length of 2873 base pairs. The deduced amino acid sequence showed 82% similarity to rat P-450ch7 alpha. Unique amino acid residues were observed in putative binding domains for heme and steroid which are highly conserved in most steroidogenic P-450s.

Amino Acid Sequence

Rat liver cholesterol 7 alpha-hydroxylase. Pretranslational regulation for circadian rhythm.

A complete cDNA encoding cholesterol 7 alpha-monooxygenase (EC 1.14.13.17) which had been isolated from rat liver cDNA libraries by using specific antibodies to the enzyme (Noshiro, M., Nishimoto, M., and Okuda, K. (1989) FEBS Lett. 257, 97-100) was totally sequenced. The cDNA contained a 1,509-base pair open reading frame encoding 503 amino acid residues (Mr = 56,880) and an unusually long 3'-untranslated region rich in AT sequence in the total length of 3,545 base pairs. The predicted amino acid sequence displays less than 30% similarity to other sequenced cytochrome P-450s indicating that the 7 alpha-hydroxylase constitutes a novel family of cytochrome P-450. The AT-rich region often contained ATTTA motifs, 5'-AAT-3' or 5'-TAA-3' trinucleotides which were reported to be involved in rapidly degrading mRNA. Employing the specific antibodies and the cDNA as probes, a diurnal variation of the levels of the three factors, i.e. enzyme protein, mRNA, and enzyme activity, was studied on rat livers prepared at various times of the day. In normal animals, all three factors exhibited maximum level at 10:00 p.m. and minimum at 10:00 a.m. No significant sexual difference was observed. Cholestyramine feeding increased all three factors at 10:00 a.m. close to the maximum levels of the normal rats, but did not show a significant increase at 10:00 p.m. On the contrary, starvation markedly decreased all three factors either at 10:00 a.m. or at 10:00 p.m., while maintaining still the diurnal variation. A good correlation of the levels of mRNA to the enzyme activities and the protein levels demonstrates that pretranslational regulation is most likely a mechanism for the circadian rhythm of 7 alpha-hydroxylase. The marked diurnal fluctuation of the amount of protein and the level of mRNA also indicates their rapid turnover. The short half-life of mRNA could be correlated with the structure of the 3'-untranslated region of the mRNA characteristic of rapidly degrading mRNA, i.e. abundance of motif, AUUUA, and existence of 5'-AAU-3' or 5'-UAA-3' trinucleotides in single-stranded regions of the secondary structure.

Amino Acid Sequence

Molecular cloning of cDNA for vitamin D3 25-hydroxylase from rat liver mitochondria.

A cDNA clone encoding mitochondrial vitamin D3 25-hydroxylase was isolated from a rat liver cDNA library by the use of specific antibodies to the enzyme. The isolated cDNA clone was 1.9 kbp long and contained a 1599 bp open reading frame encoding 533 amino acid residues. The deduced primary structure contained a presequence typical for mitochondrial enzymes in the N-terminal region. The N-terminal sequence of the mature enzyme was determined to be Ala-Ile-Pro-Ala-Ala, which agrees perfectly with a portion of the deduced sequence, establishing the cleavage point of the precursor.

Amino Acid Sequence

Effects of bilateral transvenous diaphragm pacing on hemodynamic function in patients after cardiac operations. Experimental and clinical study.

The effects of bilateral transvenous diaphragm pacing and intermittent positive-pressure ventilation on hemodynamic function were compared by animal experiment in 18 dogs and by clinical study in 14 patients during the postoperative period after cardiac operations. Aortic, pulmonary arterial, right atrial, and left atrial pressures (transmural) and aortic flow were increased by diaphragm pacing in the canine experiment. In dogs with induced tricuspid insufficiency, aortic pressure, right and left atrial pressures, and aortic blood flow increased, similar to the results obtained in the clinical study. Diaphragm pacing produced a sufficient tidal volume (7.2 to 12 ml/kg) for maintenance of normal blood gas levels in the patients, all of whom recovered spontaneous breathing without any weaning problems after 2 to 6 hours of diaphragm pacing. The catheter electrode used for stimulation was placed 30 mm away from the sinus node to avoid arrhythmias. Respiratory control by diaphragm pacing is hemodynamically superior to that by intermittent positive-pressure ventilation, and its efficacy is expected, especially in critical cases or in diseases or conditions in which the decrease in the load of the right heart affects the hemodynamic status of the patient.

Animals

Molecular cloning of cDNA for cholesterol 7 alpha-hydroxylase from rat liver microsomes. Nucleotide sequence and expression.

A complete cDNA clone encoding cholesterol 7 alpha-hydroxylase was isolated from a rat liver cDNA library by the use of specific antibodies to the enzyme. The isolated cDNA clone was 3.6 kbp long and contained a 1509-bp open reading frame encoding 503 amino acid residues (Mr = 56,880). The identity of the cDNA was confirmed by expression of cholesterol 7 alpha-hydroxylase activity and the immunoreactive protein in COS cells transfected with pSVL expression vector carrying the cDNA insert. The primary structure of cholesterol 7 alpha-hydroxylase deduced from the nucleotide sequence of the cDNA indicated that the enzyme constitutes a novel P-450 family.

Amino Acid Sequence

Purification and characterization of cytochrome P-450 induced by benz(a)anthracene in mouse skin microsomes.

Topical application of benz(a)anthracene to mouse skin elicited a 2-fold increase in cytochrome P-450 content, with accompanying increases in monooxygenase activities such as benzo(a)pyrene hydroxylation, 7-ethoxycoumarin O-deethylation, and acetanilide 4-hydroxylation, in the microsomes. A major form of cytochrome P-450 was purified from skin microsomes of mice treated with polycyclic aromatic hydrocarbon. A specific content of 1.95 nmol/mg of protein, which corresponded to 48-fold purification from the microsomes, was observed. The purified protein produced a single major band on sodium dodecyl sulfate-polyacrylamide gel electrophoresis having a molecular weight of 55,000. Using Western blotting, the band immunochemically cross-reacted with antibody which had been raised against rat liver cytochrome P-450MC-1. The purified preparation efficiently catalyzed benzo(a)pyrene hydroxylation and 7-ethoxycoumarin O-deethylation when reconstituted with NADPH-cytochrome P-450 reductase. These activities were inhibited by 7,8-benzoflavone as well as anti-cytochrome P-450MC-1 antibody, but not by P-450PB-1 antibody. The results indicate that, in mouse skin microsomes, a cytochrome P-450 induced by benz(a)anthracene is enzymatically and immunochemically similar to rat liver cytochrome P-450MC-1. It is suggested that this enzyme plays an important role in the activation of carcinogenic polycyclic aromatic hydrocarbons.

Animals