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Biomedical subjects

T Okamoto

Publications and source records attributed to T Okamoto.

At least 19 recordsLinked to original sources

A novel ubiquinone reductase activity in rat cytosol.

Ubiquinone (UQ) reductase activity which reduces UQ to ubiquinol (UQH2) in rat tissues was roughly proportional to the UQH2/total UQ ratio in respective tissues. The highest activity was found in the liver, showing the highest UQH2/total UQ ratio. A greater part of liver UQ reductase activity was located in the cytosol. Within a week, the liver UQ reductase activity decreased by 80% even at -20 degrees C. The DT-diaphorase activity was stable. UQ reductase required NADPH as the hydrogen donor and was not inhibited by a less than 1 microM concentration of dicoumarol. There was no stimulation of UQ reductase in the presence of bovine serum albumin nor in Triton X-100. Yet, both stimulated DT-diaphorase. As a result, UQ reductase appeared to be a novel NADPH-UQ oxidoreductase and responsible for the UQ redox state in liver.

Animals

Endogenous tumor necrosis factor functions as a resistant factor against hyperthermic cytotoxicity.

One of the mechanisms of cytotoxicity by tumor necrosis factor (TNF) is the induction of reactive oxygen molecules. Cells producing endogenous tumor necrosis factor (enTNF) show resistance to the cytotoxicity of exogenous TNF by scavenging the reactive oxygen molecules. The intracellular hydroxyl radical production is also known to be involved in the heat-induced cytotoxicity. In the present study, we therefore examined the possibility that enTNF may act as a protective protein against the heat-induced cytotoxicity in a manner similar to that of exogenous TNF. Heat-sensitive L-M (mouse tumorigenic fibroblast) cells, originally expressing no enTNF, were transfected with a human TNF expression vector to produce enTNF. The stable transfectants showed apparent resistance to heat treatment. Conversely, when HeLa (human uterine cervical cancer) cells, originally producing an appreciable amount of enTNF, were transfected with an antisense TNF mRNA expression vector to inhibit enTNF synthesis, their heat sensitivity was enhanced. Furthermore, L-M cells which were transfected with nonsecretory human TNF expression vector also acquired resistance to heat treatment. In these cells, heat resistance correlated well with expression of enTNF and intracellular levels of manganous superoxide dismutase. These results indicate that enTNF exerts its intracellular protective effect against the heat-induced cytotoxicity by scavenging reactive oxygen with induced manganous superoxide dismutase in a manner similar to that found in cells treated with exogenous TNF.

Animals

Amino acids 356-372 constitute a Gi-activator sequence of the alpha 2-adrenergic receptor and have a Phe substitute in the G protein-activator sequence motif.

The human alpha 2-adrenergic receptor contains the sequence KASRWRGRQNREKRFTF (amino acids 356-372) at the C-terminal end of its third intracellular loop. This sequence satisfies the structural criteria for G protein-activating sequences [(1992) J. Biol. Chem. 267, 8342-8346] except that the C-terminal sequence is B-B-X-X-Phe instead of B-B-X-B or B-B-X-X-B (B: basic residue, X: non-basic residue). Nevertheless, the synthetic peptide corresponding to this sequence (peptide alpha 2-F) was found to activate Gi and Go strongly with a saturated effect at 1-3 microM. Furthermore, the substitution of the C-terminal Phe of peptide alpha 2-F with Arg, Trp, and Tyr (but not Ala or Asp) did not appreciably affect the Gi-activating potency. It is suggested that the C-terminal basic residue of the B-B-X-X-B motif in Gi-activating sequences can be replaced by an aromatic residue.

Amino Acid Sequence

Endogenous tumor necrosis factor exerts its protective function intracellularly against the cytotoxicity of exogenous tumor necrosis factor.

Based on the findings that expression of endogenous tumor necrosis factor (enTNF), which is not present in TNF-susceptible cells, was generally observed in TNF-resistant cells and that TNF gene transfection gives rise to TNF resistance, the assumption was made that enTNF may be a protective protein against the cytotoxicity of exogenous TNF. However, it remains unknown whether the protection by enTNF is exerted in an intracellular or extracellular (autocrine) manner. We therefore transfected a nonsecretory human TNF gene (pTNF delta pro) into highly TNF-sensitive mouse tumorigenic fibroblasts (L-M cells) and investigated their TNF susceptibility. The transfectants expressed enTNF which was not secreted into the medium and acquired an appreciable degree of resistance to exogenous TNF. A significant increase in the manganous superoxide dismutase level was also noted in the transfectants. These findings suggest that enTNF exerts its protective function intracellularly by inducing manganous superoxide dismutase production.

Animals

Identification of a second promoter which drives the expression of gamma-glutamyl transpeptidase in rat kidney and epididymis.

In rat, gamma-glutamyl transpeptidase (GGT) is encoded by multiple mRNAs (mRNAI, mRNAII, mRNAIII, and mRNAIV) that differ only in their 5' untranslated regions and are transcribed from a single-copy gene. Using oligonucleotides designed from the 5' untranslated sequences of the GGT mRNAII and mRNAIII, we amplified a 3.4-kb genomic sequence which contains the promoter region for mRNAII. The sequence flanking the two initiation start sites for mRNAII contains consensus motifs for several potential regulatory proteins and a TATA-like element at the expected position 26 bp upstream from the predominant start site. The sequence from positions -528 to +72 associated with the chloramphenicol acetyltransferase (CAT) reporter gene drives a promoter activity in LLC-PK1, a pig kidney cell line. Deletion analysis revealed that the region from nucleotides -528 to -322 mediates an activation of the promoter activity, whereas the sequence from -322 to -114 has a negative effect. Furthermore, the structural organization of the 5' end of the GGT gene reveals that the GGT mRNAIII is transcribed from a third promoter located upstream from the promoter II on the GGT gene. By Northern blot analysis, the promoter II was found to be expressed only in the kidney and in the epididymis. We also identified two new mRNA species which are expressed in the H5 hepatoma cells. Therefore, the GGT gene expression reveals a strong tissue- or cell-specific pattern which is based on the transcription of several mRNA species from multiple promoters.

Animals

Suppressive effect of interleukin-1 on pulmonary cytochrome P450 and superoxide anion production.

Interleukin-1 has been shown to prolong the survival of rats exposed to lethal concentrations of oxygen. This oxygen tolerance has been attributed by some workers to an increase of manganese superoxide dismutase. We report here that the administration of interleukin-1 to male adult rats results in (i) significant decrease of pulmonary cytochrome P450 at 24 and 72 hours, (ii) decrease of P450 IIB1 mRNA at 24 and 72 hours and (iii) significant decrease of superoxide anion generation from pulmonary microsomes isolated from treated rats. To the best of our knowledge, this is the first report to demonstrate these effects of interleukin-1 on pulmonary P450 and its oxidase activity (O2- generation). On the basis of these results and several earlier reports in which various P450 depressants have been shown to depress superoxide production from microsomes and to prolong the lives of rodents in hyperoxia, we conclude that oxygen tolerance induced by interleukin-1 administration is likewise mediated, at least in part, by reduced generation of superoxide anion from cytochrome P450 monooxygenase system.

Animals

Measurement of GTP gamma S binding to specific G proteins in membranes using G-protein antibodies.

We developed a novel method to quantitatively measure GTP gamma S binding to specific G proteins in crude membranes using G-protein antibodies. The basic strategy was that the materials were initially incubated with [35S]GTP gamma S at 37 degrees C. After 4 degrees C incubation in the wells of an ELISA plate precoated with G-protein antibodies, the radioactivity of each well was counted. This method, using an anti-Gi antiserum and an anti-Gs antiserum, quantitatively and specifically detected the binding of GTP gamma S to purified Gi2 and Gs. In S49 cell membranes, GTP gamma S binding to immunoreactive Gs was observed in a time-dependent manner that obeyed first-order kinetics, and the rate constant was stimulated approximately twofold in response to isoproterenol. The effect of isoproterenol was not observed in unc mutant membranes. The present method thus makes it possible to quantitatively measure GTP gamma S binding to specific G proteins in cell membranes.

Animals

Detection of G protein-activator regions in M4 subtype muscarinic, cholinergic, and alpha 2-adrenergic receptors based upon characteristics in primary structure.

The 14-residue region Arg2410-Lys2423 of the human insulin-like growth factor II receptor possesses the ability to stimulate Gi, the activity being dependent on two structural characteristics: (i) at least two basic residues at the N-terminal side and (ii) the C-terminal motif, B-B-X-B or B-B-X-X-B (where B is a basic residue and X is a non-basic residue). The regions satisfying (i) and (ii) with 10 less than or equal to residue length less than or equal to 26 were located in all of the third inner loops and some of the other intracellular domains of the Gi-coupled M4 sub-type muscarinic cholinergic receptor (M4AChR) and the alpha 2-adrenergic receptor (alpha 2AR). Both the second inner loop 130-147 and the C-terminal portion of the third inner loop 382-400 (MIII) of human M4AChR had the ability to stimulate G proteins with the order Gi approximately Go greater than Gs, but only MIII could activate Gi/Go at nanomolar concentrations. In contrast, the N-terminal portion of the third inner loop 218-228 of human alpha 2AR-C10 activated Gi, Go, and Gs at micromolar concentrations with equal potency, whereas the further C-terminal portion of the third inner loop 301-313 of this receptor lacked the ability to activate any G protein. Among these active regions, only MIII indicated Mg(2+)-dependent Gi-stimulating function. Therefore, the search for the regions satisfying (i) and (ii) was useful to localize the G protein-activating activity of Gi-coupled receptors in limited regions, which were not always in the C-terminal portions of the third intracellular loops and activated G proteins in various modes of actions.

Amino Acid Sequence

Induction of synthesis of manganous superoxide dismutase in L-M(pNTnF) cells carrying an inducible TNF gene.

Based on findings that the cytotoxic effects of tumor necrosis factor (TNF) are closely related to levels of intracellular oxygen radicals, and on the results of TNF gene transfection studies, the hypothesis was made that endogenous TNF (enTNF) acts as a protective factor against exogenous TNF by inducing inhibitors or scavengers of oxygen radicals. In order to test this hypothesis, we investigated the intracellular levels of manganous superoxide dismutase (MnSOD) and glutathione (GSH) in L-M(pNTnF) cells carrying a TNF gene induced by dexamethasone (DM). When L-M(pNTnF) cells were treated with DM they expressed enTNF, and acquired resistance to exogenous TNF. There was no change in the GSH concentration after enTNF induction, but a 1.9- to 3.9-fold increase in MnSOD levels was noted. Our findings suggest that enTNF exerts its protective function against the cytocidal effect of exogenous TNF by inducing MnSOD production.

Animals

Reduction of the effluent volume in high-output ileostomy patients by a somatostatin analogue, SMS 201-995.

Twelve ileostomy patients were given subcutaneous SMS 201-995 therapy (100 micrograms t.d.s. for 5 days) in a randomized placebo-controlled trial. All patients had ileostomies constructed 60 cm proximal to the terminal ileum (proximal ileostomy) following restorative proctocolectomy. SMS 201-995 reduced the daily ileostomy output from 997 +/- 52 g to 736 +/- 28 g, P < 0.05, along with a decrease in daily sodium and chloride excretion (sodium: 92.60 +/- 8.51 to 75.22 +/- 8.64 mEq, chloride: 143.46 +/- 8.54 to 113.60 +/- 15.84 mEq; both P < 0.05). There were no significant changes in the plasma levels of glucagon, C peptide, insulin, renin or aldosterone with SMS 201-995 therapy. Patients developed no severe side effects and reported easier management of the ileostomy and a reduction in thirst. Our results suggest a possible clinical role for SMS 201-995 in the management of proximal ileostomy.

Adolescent

Supernumerary ring marker chromosome as a secondary rearrangement in a parapharyngeal lipoma with t(10;12)(q25;q15) as the primary karyotypic abnormality.

Cytogenetic analysis of a large parapharyngeal lipoma, a rare tumor at this site, showed the karyotype 46,XY,t(10;12)(q25;q15)/47,XY,t(10;12)(q25;q15),+r. The primary abnormality must have been t(10;12), whereas the +r developed secondarily as an additional aberration. Although a similar translocation between chromosomes 10 and 12 has not been described previously, that the tumor had a rearrangement of the 12q13-15 region, the most frequently involved genomic region in lipogenic tumors, indicates that the tumorigenetic mechanisms are identical in parapharyngeal lipomas and lipomas of other locations. Supernumerary ring markers are not usually detected in lipomas with 12q rearrangements but are common in atypical lipomas and well-differentiated liposarcomas. The parapharyngeal lipoma we describe recurred after initial resection, and we hypothesize that the more aggressive tumor phenotype thus demonstrated may be causally related to the clonal evolution it had undergone.

Chromosomes, Human, Pair 10

Lipocortin-present perforating and lipocortin-absent nonperforating Crohn's disease.

To investigate whether Crohn's disease has two different clinical forms, a relatively aggressive perforating type and a more indolent nonperforating type, we compared the concentrations of lipocortin and prostaglandin E2 (PGE2) in the inflamed mucosa of 12 patients with strictly controlled Crohn's disease with those found in histologically normal mucosa of control subjects. The inflamed mucosa obtained from eight patients with nonperforating Crohn's disease did not react with antilipocortin antibody on immune blot analysis. In contrast, the inflamed mucosa from four patients with perforating Crohn's disease, as well as that obtained from histologically normal controls, contained lipocortins. In addition, higher concentrations of intramucosal ileal and colonic PGE2 were found in patients with nonperforating Crohn's disease (902 +/- 454 pg/wet weight [WW] mg and 1,268 +/- 567 pg/WW mg, respectively) compared with normal controls (90.2 +/- 43.1 pg/WW mg and 173 +/- 76.5 pg/WW mg, respectively) (p less than 0.01). The difference in intramucosal ileal and colonic PGE2 levels between patients with perforating Crohn's disease (109.6 +/- 16.7 pg/WW mg and 252 +/- 34.4 pg/WW mg, respectively) and normal controls was not significant. These findings indicate that there may be two distinct patterns of Crohn's disease that differ in the amount of lipocortin present in the intestinal mucosa.

Adult

Human thioredoxin/adult T cell leukemia-derived factor activates the enhancer binding protein of human immunodeficiency virus type 1 by thiol redox control mechanism.

Transcription from the human immunodeficiency virus type 1 (HIV-1) provirus is activated by a cellular factor, NF kappa B, recognizing the tandemly repeated 10-base-pair sequences, termed the kappa B sequence, present in the enhancer region within the viral long terminal repeat (LTR). Using electrophoretic mobility shift assay (EMSA), which demonstrates specific DNA-protein interaction in vitro, we could demonstrate that reducto-oxidative modulation of NF kappa B dramatically changes its DNA binding activity and that a cellular physiological reducing catalyst, thioredoxin (TRX) also known as adult T cell leukemia derived factor (ADF), fully restored the DNA-binding activity of the oxidized NF kappa B. We also observed that purified TRX/ADF protein could augment gene expression from HIV LTR as demonstrated by transient chloramphenicol acetyltransferase (CAT) assay. These observations confirmed the previous notion that ADF might be an inducing factor of cellular interleukin-2 receptor alpha subunit (IL-2R alpha) through the kappa B sequence that is a common central cis-regulatory element in both IL-2R alpha and HIV gene expression. These observations indicate that reducto-oxidative regulation (or redox regulation) of a cysteine residue(s) on the NF kappa B molecule might play an important role in its specific DNA interaction and that it might provide a clue to the understanding of a pathway of cellular signal transduction to NF kappa B that is independent from the known pathways involving protein phosphorylation.

Amino Acid Sequence

Effects of sodium chloride and ethanol on stomach tumorigenesis in ACI rats treated with N-methyl-N'-nitro-N-nitrosoguanidine: a quantitative morphometric approach.

Effects of sodium chloride (NaCl) and ethanol on gastric tumor development in rats after treatment with N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) were studied. MNNG, dissolved in distilled water (5 g/liter), was administered orally once by gastric tube at a dose of 0.25 ml/10 g body weight to 4-week-old ACI rats. After this carcinogen initiation, animals were fed on a diet containing 10% NaCl (Group 2) or normal diet with 10% ethanol in the drinking water (Group 4). MNNG alone (Group 1), NaCl alone (Group 3), ethanol alone (Group 5), and control (Group 6) animals were also maintained. All survivors were killed one year after the MNNG application. Incidences of tumors in the forestomach and glandular stomach were significantly increased in Group 2 as compared to Group 1 (P less than 0.05). The height of the pyloric mucosa was significantly greater in Group 2 than in Groups 4, 5 or 6 (P less than 0.05). In the fundic area, the mucosal height was significantly decreased in Group 4 as compared to Group 6 (P less than 0.05). The present results demonstrate that whereas tumors in the glandular stomach and forestomach are both promoted by NaCl, ethanol is without influence. Furthermore, NaCl, a promoter of glandular stomach tumorigenesis also increases cell proliferation.

Animals

Enhancement of lysosomal enzyme activity by recombinant human tumor necrosis factor and its role in tumor cell killing in vitro.

We investigated the effect of recombinant human tumor necrosis factor (TNF) on the lysosomal enzyme activity of various established cell lines in vitro. Incubation of 1 x 10(6) TNF-sensitive mouse tumorigenic fibroblasts (L-M cells) in the presence of TNF (100 U/ml) for 48 h increased the total (the sum of the enzyme activities in the lysosomes and the cytoplasm) acid phosphatase and beta-glucuronidase activities by 3.7- and 4.2-fold, respectively. The same increase was observed even when 1 U/ml of TNF was added to some cultures and no further augmentation occurred at 10 or 100 U/ml. Measurement of total and free enzyme activities showed that TNF stimulation not only enhanced the total intracellular enzyme activity but also accelerated the conversion into free (cytoplasmic) enzyme activity. Addition of a lysosomotropic agent (methylamine) suppressed both the enhancement of lysosomal enzyme activity and the cytotoxicity of TNF. A similar enhancement of lysosomal enzyme activities was also detected in various TNF-sensitive tumor cell lines, and a strong correlation (acid phosphatase: r = 0.836, beta-glucuronidase: r = 0.910) was observed between the enhancement of enzyme activity and sensitivity to TNF. No such increase was detected in TNF-resistant human diploid cells. These results show that TNF induces the activation and release of lysosomal enzymes in TNF-sensitive cells, and suggest that such events may play an important role in TNF-mediated cytotoxicity.

Acid Phosphatase

Mechanism of synergistic cytotoxic effect between tumor necrosis factor and hyperthermia.

We previously reported that recombinant human tumor necrosis factor (rhTNF) and hyperthermia had a synergistic effect against tumors, in vitro and in vivo. We have now investigated the mechanism of this synergy by measuring the lysosomal enzyme activity and hydroxyl radical production of L-M cells treated with rhTNF and/or hyperthermia. A synergistic activation of lysosomal enzyme and the induction of hydroxyl radical production in L-M cells treated with both rhTNF and hyperthermia was observed. A synergistic cytotoxic effect was observed when rhTNF and hyperthermia were combined, and was inhibited by the addition of a reactive oxygen scavenger, dimethyl sulfoxide or bipyridine. The results show that the augmenting effect of hyperthermia on lysosomal enzyme activation and induction of hydroxyl radical production by rhTNF plays an important role in the synergistic cytotoxic effect.

Acid Phosphatase

Significance of strain and sex differences in the development of 252Cf neutron-induced liver tumors in mice.

Mouse liver tumors occurring in C3H/HeN, C57BL/6N and C3B6F1 hybrid (C3H x C57BL) were studied following 252Cf fission neutron irradiation. Three strains of mice of both sexes (about 30 mice/group) were irradiated once with 252Cf at doses of 0, 12.5, 50 and 200 cGy. The groups were observed for 13 months after irradiation. The incidence of liver tumors in the non-irradiated controls was 0% in both sexes of C57BL/6N, 11.7% in males and 0% in females of C3B6F1 and 39.5% in males and 11.4% in females of C3H/HeN mice. In the four strains of mice thus far studied, including B6C3F1 hybrid (C57BL x C3H) which was previously studied, 252Cf irradiation has increased the tumor incidence dose-dependently in males and in females, but less effectively in females. The mean number and size of liver tumors were clearly correlated with tumor incidence. The incidence was always highest in C3H/HeN mice of both sexes, followed by B6C3F1, C3B6F1 and C57BL/6N mice. The influence of sex hormones was studied in B6C3F1 mice of both sexes after 200 cGy of 252Cf irradiation. In males, the incidence of liver tumors was significantly decreased from 55.2% to 23.3% and 25.9% after orchidectomy, and in females it was slightly decreased from 27.6% to 14.8% and 18.8% after ovariectomy. Supplementation of testosterone in orchidectomized mice did not restore the occurrence of liver tumors.

Animals

The effects of sodium chloride, miso or ethanol on development of intestinal metaplasia after X-irradiation of the rat glandular stomach.

The influence of sodium chloride (NaCl), miso (Japanese soybean paste) and ethanol on development of intestinal metaplasia was examined. Five-week-old male CD(SD): Crj rats were treated with two 10 Gy doses of X-rays to the gastric region at a 3-day interval (total 20 Gy). After irradiation, the rats received supplementation with NaCl (1% or 10% in diet), miso (10% in diet) or ethanol (10% in drinking water) for 12 months. The number of alkaline phosphatase-positive foci of intestinal metaplasia in rats given 1% NaCl diet (Group 3) after X-rays was significantly elevated as compared to that in rats given X-rays alone (Group 1) (P < 0.01) or X-rays with 10% NaCl (Group 2) (P < 0.01). In the pyloric gland mucosae, the total numbers of metaplastic foci in rats of Group 3 were much higher than in Group 2, or after miso diet (Group 4) or ethanol supplementation (Group 5) (P < 0.01), but no difference was found between Group 2, 4 or 5 and Group 1. Atypical hyperplasia only appeared at incidences of less than 6% in Groups 1-3 and no promoting effect on gastric tumorigenesis was evident in Group 2. The present results thus showed that the occurrence of intestinal metaplasia induced by X-irradiation can be significantly increased by administration of 1% NaCl and decreased by 10% NaCl and ethanol, but this is not associated with any influence on gastric neoplasia.

Alkaline Phosphatase