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T Omura

Publications and source records attributed to T Omura.

At least 19 recordsLinked to original sources

A common trans-acting factor, Ad4-binding protein, to the promoters of steroidogenic P-450s.

Previous studies of bovine CYP11B1 gene regulation revealed six cis-acting elements, Ad1, Ad2, Ad3, Ad4, Ad5, and Ad6, in the 5' upstream region of the gene. Ad4 site was a positive transcription element in the stimulation by cAMP. Ad4-binding protein (Ad4BP) was purified from the nuclear extract of bovine adrenal cortex using affinity latex particles conjugated with polymerized Ad4 sequences. The molecular mass of the purified Ad4BP estimated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis was approximately 53 kDa. To characterize the binding specificity of Ad4BP, oligonucleotides homologous to Ad4 sequence and AGGTCA containing sequences in the promoter regions of steroidogenic P-450s were synthesized and used for gel shift analyses as competitors. The competition experiments revealed that Ad4BP bound not only to (C/T)CAAGG(T/C)(C/T), which was originally identified as the Ad4 binding site, but also to (Pu)PuPuAGGTCA. All the steroidogenic P-450 genes examined had at least one Ad4BP binding sequence. Experiments with model sequences containing various nucleotide substitutions established that (C/T)CAAGG(T/C)CA is the strongest binding sequence for Ad4BP. The expression of Ad4BP was examined with adrenal cortex cells and several other steroidogenic and nonsteroidogenic cells. Only the steroidogenic cells, the granulosa cells of bovine ovary, and I-10 cells derived from mouse Leydig cells, expressed the binding activity to Ad4 site. The presence of Ad4 site as a common cis-acting element in the genes of all the steroidogenic P-450s and the steroidogenic tissue-specific expression of Ad4BP strongly suggests that Ad4BP is an indispensable transcription factor for the expression of all the steroidogenic P-450 genes.

Adrenal Cortex

Nucleotide sequence of capsid protein gene of rice tungro bacilliform virus.

The sequence of 5,028 nucleotides, including one open reading frame (ORF), of rice tungro bacilliform virus (RTBV) dsDNA was determined. The predicted translational product comprises 1,675 amino acids and has Mr of 194,134 (p194). The amino acid sequences of three tryptic fragments from the 32 k capsid protein of RTBV (p32) were found in the predicted translational product indicating that the ORF codes for the RTBV capsid protein.

Amino Acid Sequence

Functional expression of cDNAs for bovine 11 beta-hydroxylase-aldosterone synthases, P450(11 beta)-2 and -3 and their chimeras.

Two molecular species of bovine P450(11 beta), P450(11 beta)-2 and P450(11 beta)-3 have been identified, in which the amino acid differences were found at the 6th, 36th and 82nd positions from the NH2-termini of the mature proteins. They catalyzed the 11 beta-, 18- and 19-hydroxylation and aldosterone formation from 11-deoxycorticosterone, and the rate of production of 18-hydroxycorticosterone and aldosterone by P450(11 beta)-3 was greater than that by P450(11 beta)-2 [Morohashi et al., J. Biochem. 107 (1990) 635-640]. In this study, chimeric clones were constructed whose 6th, 36th and 82nd amino acid residues were exchanged with each other. Two original clones and six chimeric clones were expressed in COS-7 cells, and their steroidogenic activities studied. The ratio of aldosterone or 18-hydroxycorticosterone production to corticosterone production by one clone was compared with that of the other. The ratios for the four clones having Gly36 [P450(11 beta)-3 type] were 0.08-0.22, whereas those for the clones having Ser36 [P450(11 beta)-2 type] were 0.03-0.05, suggesting that the Gly36 structure is important for aldosterone production.

Animals

Accelerated rejection of allografted rat liver perfused with anti-ICAM-1 monoclonal antibody.

Infusion of mouse anti-rat ICAM-1 into the portal vein of ACI rat liver graft before transplantation resulted in accelerated rejection by LEW recipients (2.9 +/- 2.5 days), when compared to the ACI liver grafts perfused with either Lactate-Ringer's solution (9.8 +/- 1.3) or anti-human ICAM-1 mAb (9.8 +/- 3.1). Histologic features of anti-rat ICAM-1 perfused grafts were spotty ischemic necrosis, whereas those of control grafts were marked cellular infiltration. These combined survival and histologic data suggest that the accelerated rejection may be mediated by vascular deterioration.

Animals

Mitochondrial porin can be translocated across both endoplasmic reticulum and mitochondrial membranes.

Mitochondrial porin is a major integral membrane protein of the outer membrane. To assess the stop-transfer sequence in the yeast porin molecule (P), we constructed the following chimeric proteins. (i) The signal sequence of interleukin 2, a secretory protein, was fused to the amino-terminus of porin (SP). (ii) The matrix targeting presequence of cytochrome c oxidase subunit IV was fused to the amino-terminus of porin (CP). (iii) The amino-terminal segment consisting of 42 amino acid residues of "70 kDa protein" of yeast mitochondria, a major membrane protein of the outer membrane, was introduced into the middle portion of interleukin 2 (IL70). These chimeric proteins were expressed with an in vitro transcription-translation system and their integration into microsomal membrane or mitochondrial membranes was examined. When the proteins were synthesized in vitro with wheat germ cell-free system in the presence of rough microsomal membrane (RM), SP was completely translocated across the membrane, processed by the signal peptidase, and glycosylated. The translocation of IL70 molecule across RM was stopped at the introduced amino-terminal segment of 70 kDa protein. The authentic porin did not interact with the microsomal membrane. To assess the interaction with mitochondria, porin and CP were synthesized with the reticulocyte lysate system and subjected to posttranslational import reaction with isolated rat liver mitochondria. The authentic porin was integrated into the outer membrane in an alkali-resistant fashion. CP was imported into the mitochondria and its presequence was cleaved by the processing protease in the matrix.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence

Cooperative transcription activation between Ad1, a CRE-like element, and other elements in the CYP11B gene promoter.

We previously reported the presence of six different cis-acting elements (Ad1 to Ad6) in the promoter region of the bovine CYP11B gene. Although the Ad1 site (TGACGTGA) was similar to a palindromic CRE (TGACGTCA), two other upstream sequences, Ad3 and Ad4, were identified as the cAMP response sequences of the gene. We analyzed the functional relationship between the Ad1 site and the upstream elements. Mutation analyses of the Ad1 site indicated that the 5' half of the site (TGACG) was important for the transcription of the gene in vitro. In Y-1 cells, a plasmid with a mutated Ad1 showed no response to cAMP. The effect of the mutation at the Ad1 site on the cAMP response was almost the same as that of the deletion of Ad3 and Ad4, although the role of each element seemed to be different. These results indicated that both the Ad1 site and the upstream elements, Ad3 and Ad4, were necessary for the full response to cAMP of the CYP11B gene. When the Ad1 site in the promoter region was replaced with a palindromic CRE, elevated transcription activity was detected both in vitro and in vivo. Two kinds of CREBs (43 and 47 kDa) purified from a HeLa cell nuclear extract bound to the Ad1 site. The binding of the palindromic CRE to the nuclear factor(s) was stronger than that of Ad1.

Animals

Immunochemical study on the pathway of electron flow in reduced nicotinamide adenine dinucleotide-dependent microsomal lipid peroxidation.

NADH could support the lipid peroxidation of rat liver microsomes in the presence of ferric ions chelated by ADP(ADP-Fe). The reaction had a broad pH optimum (pH 5.8--7.4) and was more active in the acidic pH range. Antibodies to NADH-cytochrome b5 reductase [EC 1.6.2.2] and cytochrome b5 inhibited NADH-dependent lipid peroxidation in the presence of ADP-Fe, whereas the antibody against NADPH-cytochrome c reductase [EC 1.6.2.4] showed no inhibition. These oberservations suggest that the electron from NADH was supplied to the lipid peroxidation reaction via NADH-cytochrome b5 reductase and cytochrome b5. On the other hand, NADPH-supported lipid peroxidation was strongly inhibited by the antibody against NADPH-cytochrome c reductase, confirming the participation of this this flavoprotein in the NADPH-dependent reaction. In the presence of both ADP-Fe and ferric ions chelated by EDTA(EDTA-Fe), NADH-dependent lipid peroxidation was highly stimulated up to the level of the NADPH-dependent reaction. In this case, the antibody against cytochrome b5 could not inhibit the reaction, while the antibody against NADH-cytochrome b5 reductase did inhibit it, suggesting the direct transfer of electrons from NADH-cytochrome b5 reductase to EDTA-Fe complex.

Animals

Characterization of electron transport enzymes in the envelope of rat liver nuclei.

Nuclei and microsomes were prepared from the livers of normal, phenobarbital (PB)-treated and beta-naphthoflavone (beta-NF)-treated rats, and the contents of several enzymes in both subcellular fractions were examined. In normal rats, the enzyme activities in the nuclear fraction were about one-third of those of microsomes on a phospholipid basis. The induction of some particular enzymes by the drugs was observed with nuclei as well as with microsomes. Cytochrome P-450 and NADPH-cytochrome c reductase were increased by PB treatment and cytochrome P-448 was induced by beta-NF treatment both in nuclei and in microsomes. The extents of inhibition of nuclear enzyme activities by the antibodies against corresponding microsomal enzymes were almost the same as those of the microsomal activities. It was concluded that a microsomal type electron transport system exists in rat liver nuclei, and that nuclear drug-oxidizing activities are inducible by PB or beta-NF as their microsomal counterparts are.

Animals

Biogenesis of endoplasmic reticulum membrane in rat liver cells. III. Biosynthesis of NADPH-cytochrome c reductase and cytochrome b5 by loosely-bound ribosomes.

Membrane-bound ribosomes were separated into two distinct classes (loosely-bound and tightly-bound ribosomes) by treatment with 0.6 M KCl, 1 mM puromycin, 0.05% DOC, or 10 mM EDTA. It was also confirmed that any one of these reagents except for EDTA dissociated the same class of ribosomes from the membrane. A population of lighter microsomal vesicles was formed from rough microsomes upon the dissociation of loosely-bound ribosomes by treatment with these chemicals. Rough microsomes were subfractionated into lighter and heavier fractions, L-rMs and H-rMs, by centrifugation using a discontinuous gradient of sucrose consisting of 1.3 M, 1.5 M, and 2.1 M solutions. It was found that L-rMs was rich in loosely-bound ribosomes, whereas H-rMs contained a high proportion of tightly-bound ribosomes. It is likely that loosely-bound and tightly-bound ribosomes are heterogeneously distributed among rough microsomal vesicles. Loosely-bound ribosomes and tightly-bound ribosomes synthesize different kinds of proteins. Two microsomal membrane proteins, NADPH-cytochrome c reductase and cytochrome b5, were exclusively synthesized by loosely-bound ribosomes, whereas serum albumin, which is a major component of the secretory proteins of hepatocytes, was synthesized only by tightly-bound ribosomes. Since the nascent peptides of NADPH-cytochrome c reductase and cytochrome b5 are released from bound ribosomes to the cytoplasmic surface of endoplasmic reticulum, while those of secretory proteins are discharged into the lumen across the membrane, the strength of the association between ribosomes and microsomal membrane seems to be correlated with the direction of release of nascent peptides.

Animals