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Biomedical subjects

M Umeno

Publications and source records attributed to M Umeno.

32 records · Page 2Linked to original sources

Human ethanol-inducible P450IIE1: complete gene sequence, promoter characterization, chromosome mapping, and cDNA-directed expression.

The human P450IIE1 gene, coding for an ethanol-inducible nitrosamine-metabolizing P-450, was isolated from a lambda EMBL3 genomic library and completely sequenced. The human gene spanned 11,413 base pairs and contained nine exons and a typical TATA box. Upstream and downstream DNAs of 2788 and 559 base pairs were also sequenced and compared to the rat gene. Significant areas of sequence similarity were observed within 140 base pairs upstream of the transcription start site in the rat and human genes. Human DNA 539 base pairs upstream of the transcription start site was inserted into the expression vector pSVOAL delta 5', and luciferase activity was detected when the constructs were introduced into a rat hepatoma cell line. The activity was over 100-fold lower than that of pRSVL, a Rous sarcoma virus LTR-driven luciferase gene. By use of panels of rodent-human cell hybrids, the gene was mapped to chromosome 10 (CYP2E locus). A full-length cDNA, constructed with the first exon of the genomic clone and a partial cDNA clone, was expressed in COS cells and found to code for N-nitrosodimethylamine demethylase activity.

Animals↗

The rat P450IIE1 gene: complete intron and exon sequence, chromosome mapping, and correlation of developmental expression with specific 5' cytosine demethylation.

The gene coding for the ethanol-inducible, developmentally regulated P450IIE1 was isolated from an lambda EMBL 3 rat genomic library and completely sequenced. The gene spanned 10,373 base pairs and contained nine exons. Upstream and downstream DNA of 1530 and 825 base pairs, respectively, was also sequenced, and the transcription start site was identified by both S1 mapping and primer extension. A typical TATA box was found just upstream of the start site; however, no CCAAT box was apparent. Other repetitive sequences were identified including a partial R.dre.1 sequence upstream of the gene and a long stretch of 160 alternating purines in the second intron. This latter repetitive element is found in many mammalian genes. By use of a panel of mouse-hamster somatic cell hybrids, the P450IIE1 gene was localized to mouse chromosome 7. The hepatic P450IIE1 gene is transcriptionally activated within 1 day after birth and reaches a maximal level of expression at 6 days of age. Using restriction endonuclease sites generated from the gene sequence data and the cytosine methylation-sensitive enzymes HhaI and HpaII, we found that this transcriptional activation during early development is coincident with specific demethylation only at the 5' end of the P450IIE1 gene. Interestingly, other cytosine residues in the middle of the gene became demethylated as rats aged from 1 to 10 weeks, at which time no changes in gene expression occur.

Amino Acid Sequence↗

Characterization of the common genetic defect in humans deficient in debrisoquine metabolism.

In population studies of individuals given the antihypertensive drug debrisoquine, two distinct phenotypes have been described: extensive metabolizers excrete 10-200 times more of the urinary metabolite 4-hydroxydebrisoquine than poor metabolizers. In family studies the poor-metabolizer phenotype behaves as an autosomal recessive trait with an incidence between 5% and 10% in the white population of Europe and North America, and extends to the deficient metabolism of more than 20 commonly prescribed drugs. Clinical studies have shown that such individuals are at high risk for the development of adverse side effects from these and probably many other drugs. Here we show that poor metabolizers have negligible amounts of the cytochrome P450 enzyme P450db1. We have cloned the human P450db1 complementary DNA and expressed it in mammalian cell culture. Furthermore, by directly cloning and sequencing cDNAs from several poor-metabolizer livers, we have identified three variant messenger RNAs that are products of mutant genes producing incorrectly spliced db1 pre-mRNA, providing a molecular explanation for one of man's most commonly defective genes (frequency of mutant alleles 35-43%).

Base Sequence↗

Human P450PCN1: sequence, chromosome localization, and direct evidence through cDNA expression that P450PCN1 is nifedipine oxidase.

P450PCN protein levels and nifedipine oxidase activities were quantitated in 12 human livers and were shown to be highly correlated. Antibody against rat P450PCN1 completely inhibited all nifedipine oxidase activity in three human liver samples. These results suggest that a human P450 related to rat P450PCN1 is the major form of P450 catalyzing nifedipine oxidation. The cDNA for a human P450, designated phPCN1, was isolated from a human liver lambda gt11 cDNA library, and sequenced completely. The deduced amino acid sequence is 77% similar to rat P450PCN1. By use of the adenovirus- and SV40-based expression vecotr p91023(B), the phP450PCN1 cDNA was expressed in COS cells and had high nifedipine oxidase activity, providing conclusive evidence that this P450 is the primary enzyme associated with metabolism and inactivation of this important drug. Using somatic cell hybrids, the P450PCN gene was localized to human chromosome 7.

Amino Acid Sequence↗

Purification and subunit structure of recBC DNase from Escherichia coli harboring a recB and recC genes-inserted plasmid.

recBC DNase of Escherichia coli has been purified from the transformant, HB101/pFS11-04 (recB+ recC+), by successive ammonium sulfate fractionation, DEAE-cellulose chromatography, Sephadex G-150 gel filtration, hydroxyapatite chromatography, DNA cellulose affinity chromatography, and second DEAE-cellulose chromatography. The purified enzyme was obtained in an overall yield of 3%. The enzyme protein appeared as a single pure component on native polyacrylamide gel electrophoresis. The purified enzyme was analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and two-dimensional electrophoresis. The results show that recBC DNase consists of two nonidentical subunits with molecular weights of 125,000 and 135,000, and isoelectric points of 5.6 and 5.7, respectively.

Electrophoresis, Polyacrylamide Gel↗

Properties of the recB and recC gene products of Escherichia coli.

The properties of the recB and recC gene products of Escherichia coli were studied using recB and recC gene-inserted plasmids. recB mutants and recC mutants lacked ATP-dependent DNase (recBC enzyme) but showed apparent recovery of enzyme activity on introduction of plasmids carrying the recB and recC gene, respectively. The ATP-dependent DNase was also constructed in vitro by mixing the recB and recC gene products encoded by the plasmids with the corresponding gene. Specific labeling of plasmid-encoded proteins by the maxicell method showed that the recB and recC gene products were 135,000 and 125,000 dalton proteins, respectively. These results suggest that the recB and recC genes are the structural genes of the beta and alpha subunits, respectively, of the recBC enzyme. A gene that encodes a protein of about 100,000 daltons was found to be located between the recB and recC genes. But the product of this gene was shown not to be included in the recBC enzyme.

DNA Restriction Enzymes↗

Purification of small polydisperse circular DNA of eukaryotic cells by use of ATP-dependent deoxyribonuclease.

Small polydisperse circular (spc) DNAs of mouse thymocytes were purified by a procedure involving nitrocellulose column chromatography and the treatment of ATP-dependent DNase, which acts only upon linear DNA molecules. Nitrocellulose column chromatography prior to the enzyme treatment was essential because digestion of linear DNA duplexes by the enzyme was inhibited by the presence of concomitant single-stranded DNAs. Mitochondrial DNAs were eliminated by linearization with XhoI and digestion with ATP-dependent DNase. The size distribution of the purified spc DNA molecules ranged from 0.2 micron to more than 28 micron, with a mean length of 5.4 micron. Circular molecules of more than 0.4 micron long (or 1.2 kb) were free from the contamination of linear DNA fragments and pure enough to be cloned into plasmids.

Animals↗

Purification and properties of adenosine 5'-triphosphate-dependent deoxyribonuclease from Thermus thermophilus HB8.

An ATP-dependent DNase has been purified from Thermus thermophilus HB8 by a procedure involving streptomycin precipitation, DEAE-cellulose chromatography, Sephadex G-200 gel filtration and heparin-agarose affinity chromatography. ATP-dependent DNase activity was separated into two distinct peaks, Peak A and Peak B, by heparin-agarose affinity chromatography. Each peak fraction was further purified by ATP-agarose affinity chromatography. Peak A and Peak B were eluted from an ATP-agarose column at 0.14 M and 0.28 M KCl, respectively, each as a single peak. Both enzyme activities require ATP and Mg2+ for the degradation of double- and single-stranded DNAs, and degrade denatured DNA about 1.5 times faster than native DNA. The two peaks are optimally active at 69 degrees C and have similar optimal pH ranges from 8.2 to 9.2. The two purified peaks were unstable on storage at -20 degrees C, but were remarkably stabilized by addition of 0.4 mg/ml bovine serum albumin. Ammonium sulfate strongly inhibits the activities of both peaks. The molecular weights of Peak A and Peak B are about 170,000 as estimated by glycerol gradient sedimentation. The average chain lengths of denatured DNA produced by Peak A and Peak B were 4.2 and 3.6, respectively, and the products were terminated by 5'-phosphoryl and 3'-hydroxyl groups. The limit-digested products of denatured DNA produced by Peak B consist of mono-, di-, tri-, tetra-, and pentanucleotides along with some larger fragments. The mode of action of both activities is processive and Peak A does not attack double-stranded circular DNA.

Adenosine Triphosphate↗

Purification and properties of an acid deoxyribonuclease from rat small intestinal mucosa.

An acid deoxyribonuclease has been purified from rat small intestinal mucosa by a procedure including ammonium sulfate fractionation, chromatographies on DEAE-cellulose, CM-cellulose and SE-Sephadex and finally isoelectric focusing. Polyacrylamide gel electrophoresis of the purified enzyme preparation showed one major and two minor bands, and the enzyme activity corresponded to one of the minor bands. The enzyme preparation was free of contaminating DNase I, DNase III, alkaline RNase, acid and alkaline phosphatases and nonspecific phosphodiesterase, but slight activities of DNase IV and acid RNase were detected. The enzyme did not require divalent cations for activity, had a pH optimum of 4.5 in 0.33 M sodium acetate buffer, and had an optimum temperature of 50 to 60 degrees C when assayed for 30 min. The rate of hydrolysis of native DNA was about 2.5-fold faster than that observed with denatured DNA. Its molecular weight was found to be 9.0 +/- 0.1. The enzyme catalyzes the endonucleolytic cleavage of native and denatured DNA, yielding oligonucleotides which have an average chain length of about 7, and which contain 3'-phosphoryl termini. The mode of action of the enzyme is double-strand scission.

Animals↗