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Biomedical subjects

Y Tagashira

Publications and source records attributed to Y Tagashira.

At least 37 records · Page 2Linked to original sources

[The role of cytochrome P-450 in chemical carcinogenesis--its application to human cancer epidemiology].

Most chemical carcinogens require metabolic activation before they exert their deleterious effects on an organism. This overview shows the evidence that most chemical carcinogens are metabolically activated by specific P-450 isozymes and the induction of these enzymes plays an important role in chemical carcinogenesis. On the other hand, there is circumstantial evidence from a large number of animal experiments implicating that human susceptibility to environmental cancer may be affected by genetic predisposition for drug metabolism. On the basis of these findings, several problems in application to human cancer epidemiology were pointed out.

Animals↗

Structure and drug inducibility of the human cytochrome P-450c gene.

A human genomic clone (lambda hP-450mc-1), highly homologous to the rat cytochrome P-450c gene, was isolated and analyzed for the complete nucleotide sequence. The gene structure coincides with that of a recently reported human gene isolated from genomic DNA of a human breast carcinoma cell line, MCF-7 [Jaiswal, A.K., Gonzalez, F.J. & Nebert, D.W. (1985) Nucleic Acids Res. 13, 4503-4520] with notable exceptions in the first intron: a 320-base-pair fragment is inserted and a 650-base-pair fragment is deleted in the gene examined in the present study. The 320-base-pair insert appears to contain a moderately repetitive sequence (approx. 140 copies) in the human genome. The 650-base-pair fragment, present in intron 1 of the reported sequence, is dislocated in the lambda hP-450mc-1 to about 10(4) base pairs upstream from the putative transcription initiation site. The results of Southern blot analysis using human total DNA were compatible with the gene structure of lambda hP-450mc-1. A fusion gene, which was constructed by ligating the 5' flanking region of the gene to the structural gene for prokaryotic chloramphenicol acetyltransferase (CAT), inducibly expressed the CAT activity in mouse Hepa-1 cells in response to administered methylcholanthrene, indicating that the isolated human gene is indeed of methylcholanthrene inducibility.

Acetyltransferases↗

Sequence search on a supercomputer.

A set of programs was developed for searching nucleic acid and protein sequence data bases for sequences similar to a given sequence. The programs, written in FORTRAN 77, were optimized for vector processing on a Hitachi S810-20 supercomputer. A search of a 500-residue protein sequence against the entire PIR data base Ver. 1.0 (1) (0.5 M residues) is carried out in a CPU time of 45 sec. About 4 min is required for an exhaustive search of a 1500-base nucleotide sequence against all mammalian sequences (1.2M bases) in Genbank Ver. 29.0. The CPU time is reduced to about a quarter with a faster version.

Amino Acid Sequence↗

Maternal contamination of some NZB sublines and genetic profiles of NZ-strains.

Six sublines of NZB mice bred in Japan were collected and their mitochondrial DNA (mtDNA) was examined by restriction analysis. The phenotypes of at least three of these sublines (NZB/Nrs, NZB/Nga and NZB/KlJms) differed from a standard one (NZB/BlWehi). Since mtDNA is inherited maternally, all sublines of a single inbred strain should share the same mtDNA phenotype. Therefore, b-type of mtDNA should be observed in all NZB sublines. Nevertheless, the above-mentioned sublines showed d-type mtDNA. These results suggested a genetic contamination of these sublines. This was confirmed by the finding that six aberrant alleles were detected also in their nuclear genomes using biochemical markers. For elucidation of the cause of contamination, we characterized the genetic profiles of four standard NZ-strains, NZB/BlWehi NZO/BlWehi, NZC/BlWehi and NZX/BlWehi, and of common inbred strains with black coat color, C57BL/6J, C57BL/10Sn, C57BL/Ks, C58/J and AU/SsJ. We found that five of the six aberrant alleles most strongly corresponded with those of C57BL/Ks. These results suggest that this contamination was ascribable to cross of NZB mice with a certain C56BL strain. We also deduced that NAB/BlPt and NZB/Füll also probably were contaminated strains, suggesting that this contamination was not restricted to Japan.

Alleles↗

Possible steroid binding site common to adrenal cytochrome P-450scc and prostatic steroid binding protein.

By searching the entire PIR-protein-sequence data base, we have found that a dodecapeptide sequence in bovine adrenal cytochrome P-450scc is closely related to that in rat prostatic steroid binding protein. The two proteins belong to unrelated protein families, but both have steroids as substrates or ligands. Thus, the dodecapeptides may be important for substrate/ligand recognition in the individual proteins.

Adrenal Glands↗

Absence of extensive recombination between inter- and intraspecies mitochondrial DNA in mammalian cells.

Recombination of mammalian mitochondrial DNA (mtDNA) was examined using mouse X rat somatic cell hybrid clones and rat cybrid clones. The mouse X rat hybrids were isolated by fusion of chloramphenicol-sensitive (CAPs) mouse and CAP-resistant (CAPr) rat cells. The rat cybrids were isolated by fusion of rat cells with type B mtDNA and enucleated cells with type A mtDNA. Genetic and physical analyses showed that the mtDNAs of the hybrids and cybrids were simple mixtures of the two parental mtDNAs except in the following two cases: One was subclone H2-9 of mouse X rat hybrids, which was CAPr even though mtDNA from the CAPs mouse parent was predominantly retained. The other was rat cybrid subclones, Y12-24 and -61, which showed specific loss of one Hinf I fragment of type B mtDNA, B10. These observations suggest that, in contrast to the case with plant mtDNA, recombination of mammalian mtDNA occurs rarely, if at all.

Animals↗

Titration of mRNAs for cytochrome P-450c and P-450d under drug-inductive conditions in rat livers by their specific probes of cloned DNAs.

By sequence analysis of the cloned cDNA or genomic DNA, we have recently deduced the complete primary structures of two forms of 3-methylcholanthrene-inducible cytochromes P-450 (P-450c and P-450d). Comparing these sequences, we identified two highly conserved regions, amino acid numbers from 35 to 200 and from 340 to 470. The nucleotide sequences corresponding to these homologous regions are also well conserved, whereas other regions have undergone considerable sequence divergence. In RNA blot analysis with unfractionated mRNA isolated from 3-methylcholanthrene-treated rat livers, Probe A (specific to P-450c sequence) hybridized with mRNA around 23 S, while Probe B (specific to P-450d sequence) hybridized with mRNA around 18 S. When common sequence between P-450c and P-450d was used as the probes (Probe C or D), two bands were clearly observed around 23 and 18 S mRNAs. With the common DNA sequence between P-450c and P-450d as a probe (93.7% homology), we studied the induction of specific mRNA for P-450c and P-450d by a single dose of several chemical compounds to rats. 3-Methylcholanthrene increased both P-450c and P-450d mRNA levels by 50 and 10 times above the control at 17 h after the administration, respectively. Despite the lower induction rates, the P-450d mRNA level was constantly higher than or at least similar to that of P-450c mRNA. beta-Naphthoflavone and Kaneclor KC 500 showed similar induction ability to 3-methylcholanthrene. On the other hand, isosafrole induced P-450d mRNA to a much greater extent than P-450c mRNA.

Animals↗

Isolation and characterization of intraspecific cybrids. Effect of mitochondrial DNA on their cellular properties.

Cybrid clones were obtained by fusing whole cells of rat glioma C6BU-1, resistant to 5-bromodeoxyuridine (BrdU), with cytoplasts of embryonic rat 3Y1CAP cells, resistant to chloramphenicol (CAP), in selective medium with BrdU and CAP. The clones resistant to BrdU and CAP were confirmed to be cybrids by chromosome and mtDNA analyses. More than half the mtDNA of all the cybrid clones was from the 3Y1CAP cells. After cultivation of a cybrid clone Y22 for 3 months in the absence of CAP, subclones were isolated. One subclone Y22-22 contained predominantly mitochondrial DNA (mtDNA) from the 3Y1CAP cells. Using this subclone, the effects of the mitochondrial genome on cellular properties were examined. The growth patterns, expression of glioma-specific beta-adrenergic receptor, and composition of the major proteins of C6BU-1 cells were not affected by transmitted mtDNA from the 3Y1CAP cells. This procedure for isolating cells containing predominantly foreign mtDNA will be useful in studies on the interaction between genomes of the mitochondria and nucleus.

Animals↗

Coding nucleotide sequence of 3-methylcholanthrene-inducible cytochrome P-450d cDNA from rat liver.

We determined the coding nucleotide sequence of the mRNA for a 3-methylcholanthrene-inducible cytochrome P-450, P-450d, of rat liver by sequence analysis of cloned cDNAs. The predicted amino acid sequence of the cytochrome is composed of 513 amino acids, and its NH2-terminal sequence of 30 amino acids completely coincides with that reported from analysis of the purified cytochrome P-450d. The amino acid composition of the deduced sequence also agrees well with that determined from the purified protein. Computer-aided analysis was carried out to compare the complete primary structures of five species of cytochrome P-450, two molecular species of phenobarbital-inducible rat liver cytochrome P-450 (P-450b and P-450e), phenobarbital-inducible rabbit liver cytochrome P-450LM2, 3-methylcholanthrene-inducible rat liver cytochrome P-450d, and camphor-hydroxylating P-450 of Pseudomonas putida (P-450CAM). It is concluded therefrom that the time of divergence between cytochrome P-450b (P-450e) and P-450d is much earlier than that of branching between phenobarbital-inducible cytochromes P-450 of rat and rabbit. One highly conserved cysteine-containing region that is close to the COOH terminus is found in all of these cytochrome P-450 sequences, indicating that the heme-binding site is the cysteine residue in this region.

Amino Acid Sequence↗

Effect of mitochondrial DNA transmitted cytoplasmically from nontumorigenic to tumorigenic rat cells on the phenotypic expression of tumorigenicity.

The effect of mitochondrial DNA (mtDNA) on the phenotypic expression of tumorigenicity was examined by its cytoplasmic transmission from nontumorigenic cells to tumorigenic cells. Enucleated cells of the rat embryonic cell line 3Y1CAP, which are nontumorigenic and resistant to chloramphenicol, were fused with whole cells of the rat glioma C6BU-1 line, which are tumorigenic and resistant to 5-bromodeoxyuridine, and the cybrid colonies growing in selective medium with 5-bromodeoxyuridine (30 micrograms/ml) and chloramphenicol (50 micrograms/ml) were isolated clonally. Cytoplasmic transmission of 3Y1CAP mtDNA to C6BU-1 cells was confirmed by quantitative analysis of their mtDNA with restriction endonuclease. Subclones containing various amounts of mtDNA from 3Y1CAP cells were isolated from one cybrid clone, Y22, and their tumorigenicities were examined by inoculating 2 X 10(6) cells s.c. into nude mice. The tumorigenicities of these cybrid cubclones were almost identical to that of the nuclear donor C6BU-1 cells with respect to the tumor incidence (number of animals bearing tumors per number of animals inoculated), latent period, and growth rates of tumors. Moreover, analysis of chromosomes and mtDNAs of the cells recovered from the tumors obtained showed that the tumors were derived from the cells inoculated and that no selective overgrowth of segregants that had lost mtDNA from 3Y1CAP cells occurred in the nude mice. These observations suggest that expression of tumorigenicity of C6BU-1 cells was not suppressed by cytoplasmic transmission of nontumorigenic 3Y1CAP mtDNA.

Animals↗

Effect of mitochondrial DNA composition on the cellular properties of interspecific hybrid cells.

Four subclones with single species of mitochondria and three subclones with both parental mitochondria were isolated from a mouse-rat hybrid cell line H2. The effects of the coexistence of different species of mitochondria on cellular properties were examined in these clones. Growth properties were studied by comparing the plating efficiencies and doubling times. The numbers of growing colonies and the doubling times of all the subclones were found to be almost the same, indicating that these growth properties were not affected by the presence of both mouse and rat mitochondria within the cells. The correlation between the expression of chloramphenicol (CAP)-resistance and the relative contents of mtDNA of CAP-resistant (CAPr) rat and CAP-sensitive (CAPs) mouse parent cells in the subclones were also examined. The expression of CAP resistance was measured as the relative plating efficiency. Subclones with a high content of mtDNA from CAPr rat parent cells showed high relative plating efficiency.

Animals↗

Two distinct types of mitochondrial DNA segregation in mouse-rat hybrid cells. Stochastic segregation and chromosome-dependent segregation.

Two distinct patterns of mitochondrial DNA (mtDNA) segregation were found in different mouse-rat hybrid cell lines. On mouse-rat hybrid cell line, H2, retained complete sets of chromosomes and mtDNAs of both mouse and rat. Even after cultivation for about one year after cloning, the H2 cell population still retained both parental mtDNAs. However, when mtDNAs of H2 subclones were examined, it was found that some individual cells in the H2 cell population contained only mouse or only rat mtDNA, although they still retained complete sets of both kinds of parental chromosomes. This type of mtDNA segregation, named stochastic segregation, is bidirectional and may be caused by the repetition of random sharing of mouse and rat mtDNAs with daughter cells. This segregation occurred spontaneously during long-term cultivation. The second type of mtDNA segregation, named chromosome-dependent segregation, was found in the other mouse-rat hybrid cell lines that segregated either mouse or rat chromosomes. In these hybrid cells, chromosomes and mtDNA of the same species co-segregated. This second type of segregation is unidirectional. The types of mtDNA segregation appear to depend on the stability of the parental chromosomes in the hybrid cells. When both mouse and rat chromosomes retain stably, mtDNA shows stochastic segregation. On the contrary, when either species of chromosomes is segregated from the cells, mtDNA shows chromosome-dependent segregation.

Animals↗

Structural characteristics of cytochrome P-450. Possible location of the heme-binding cysteine in determined amino-acid sequences.

Computer-aided analyses were made of the complete amino-acid sequences of two P-450 species, the phenobarbital-inducible major P-450 of rat liver microsomes (P-450PB) and camphor-hydroxylating P-450 of Pseudomonas putida (P-450cam). Statistically significant homology was recognized between the two P-450 sequences, but these sequences were not related to those of other groups of hemoproteins, such as hemoglobins, peroxidases, and cytochrome c's and b's. Two highly homologous regions, HR1 and HR2, and two other weakly homologous regions were found on optimally matched alignment of the P-450 sequences. The secondary structures of the two P-450's predicted by current prediction methods bear strong resemblance at these homologous regions. Both HR1 and HR2 contain a cysteine residue near the center of the homologous regions, and they are the only regions that show significant homology among all 48 combinations of local sequences around the cysteine residues (six on P-450PB and eight on P-450cam). HR1 is located in the N-proximal half of the molecule, is rich in hydrophilic residues, and is predicted to be helical. On the other hand, HR2 is close to the C-terminus, has intermediate hydrophobicity, and may take a complex secondary structure of a turn-sheet-helix. The amino-acid sequences around the HR1 and HR2 regions are also well conserved in another P-450 species, rabbit P-450LM2.

Amino Acid Sequence↗

[Influence of the surgical stress on graft-versus-host reaction in mice--the suppressor activity to GVH reaction induced by the surgical operation].

The influences of surgical stress on the local graft-versus-host reaction (GvHR) in F1 mice were studied. Skin incision to the F1 mice inflicted to 1 day prior to injection of parental spleen cells produced impairment of popliteal lymph node enlargement, however, this effect was not observed when GvHR was induced on the day 3 and 5 after operation. Spleen cells from hind limb amputated F1 mice exhibited suppressor activity on local GvH reaction when injected into naive syngenic F1 mice together. This suppressor activity was markedly detected 3 and 24 hrs after operation, then gradually reduced and completely disappeared on the day 7. These suppressor activity completely disappeared by the treatment with anti-Thy 1.2. antibody and complement. These results showed that GvH reaction was suppressed by the surgical stress, and this suppression was due to suppressor T lymphocytes in the spleen.

Amputation, Surgical↗

Immunochemical study on the contributions of two molecular species of microsomal cytochrome P-450 to the metabolism of benzo(a)pyrene by rat liver microsomes.

The roles of two species of cytochrome P-450, the major cytochrome P-450 components of liver microsomes of phenobarbital-treated rats (PB-P-450) and 3-methylcholanthrene-treated rats (MC-P-448), were studied in the metabolism of benzo(a)pyrene in rat liver microsomes in vitro. Benzo(a)pyrene was incubated with polychlorinated biphenyl-treated rat liver microsomes, in which PB-P-450 and MC-P-448 constituted about 45 and 24% of the total cytochrome P-450, respectively. Then the metabolites were separated into those soluble in ethyl acetate and in water, and those covalently bound to protein. Using high-pressure liquid chromatography, the ethyl acetate-soluble metabolites were separated into three major groups, phenols, quinones, and dihydrodiols, including peaks of three unknown materials. Addition of anti-MC-P-448 immunoglobulin to the reaction mixture completely inhibited the formation of all ethyl acetate-soluble metabolites. In contrast, anti-PB-P-450 immunoglobulin did not inhibit the formations of 4,5-dihydro-4,5-dihydroxybenzo(a)pyrene and 3-hydroxybenzo(a)pyrene; partially inhibited the formations of 7,8-dihydro-7,8-dihydroxybenzo(a)pyrene, 9, 10-dihydro-9, 10-dihydroxybenzo(a)pyrene, and the three unknown materials; and caused 30 to 40% enhancement of the formations of 9-hydroxy-benzo(a)pyrene and benzo(a)pyrene-3,6-dione and 80% enhancement of that of benzo(a)pyrene-1,6-dione. Antibody against MC-P-448, but not against PB-P-450, also caused 75% inhibition of the formation of water-soluble metabolites and 85% inhibition of formation of benzo(a)pyrene metabolites covalently bound to protein. These results show that MC-P-448 is important in the metabolism of benzo(a)pyrene.

Animals↗

Molecular cloning of a complementary DNA to 3-methylcholanthrene-inducible cytochrome P-450 mRNA from rat liver.

Poly(A)+ RNA was isolated from membrane-bound polysomes of the livers of 3-methylcholanthrene (MC)-treated rats, and was partially purified by sucrose density gradient centrifugation. The mRNA was translated in an in vitro rabbit reticulocyte lysate system, and assayed for the synthesis of MC-inducible forms of cytochrome P-450 (cytochrome P-450MC) using anti-cytochrome P-450c antibody which reacted with two types of cytochrome P-450MC, P-450c, and P-450d. The mRNA activity for cytochrome P-450MC was located at around 18S, accounting for approximately 5% of total mRNA activity. The double-stranded complementary DNA which had been synthesized from the partially purified mRNA by avian myeloblastosis virus reverse transcriptase and DNA polymerase I (Klenow enzyme) was cloned in Escherichia coli X1776, using plasmid pBR322 as a cloning vector. After differential colony hybridization using [32P]cDNA's synthesized from mRNA preparation of MC-treated or untreated rat liver as a probe, a clone (3-9-1) carrying cytochrome P-450MC cDNA sequence was identified by a positive hybridization-translation assay. The specific mRNA hybridized with plasmid 3-9-1 DNA showed an enriched synthesis of a protein with apparent molecular weight of 56,000 daltons, which was immunoprecipitable with anti-P-450c antibody. In RNA blot analysis with MC-, polychlorinated biphenyls (PCB)-, and phenobarbital (PB)-induced mRNA as well as uninduced mRNA, a longer cDNA (P-34) which had been isolated by hybridization with the insertion of clone 3-9-1, and the previously isolated PB-inducible cytochrome P-450b cDNA (Fujii-Kuriyama et al. (1982) Proc. Natl. Acad. Sci. U.S. 79, 2793-2797) hybridized with mRNA preparations in an inducer-specific manner.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗