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Biomedical subjects

T Taniguchi

Publications and source records attributed to T Taniguchi.

At least 163 records · Page 9Linked to original sources

A binding protein to the DNase I hypersensitive site II in HLA-DR alpha gene was identified as NF90.

We previously observed that IFN gamma-inducible expression of the human MHC class II, HLA-DR alpha, gene was enhanced by treatment with 12-O-tetradecanoylphorbol-13-acetate (TPA) only in human monocytic leukemia THP-1 cells, but not in HeLa cells. In the HLA-DR alpha gene, three DNase I hypersensitive sites (DHS) are known to be present in the promoter region (DHS-I) and first intron (DHS-II and -III) and are assumed to be involved in HLA-DR alpha gene regulation. In this study, we found a binding factor which recognized a unique palindrome sequence (DHS-22) in the region of the DHS II site of the HLA-DR alpha gene in THP-1 cells and HeLa cells. The binding activity of this factor was decreased by TPA treatment in THP-1 cells, but not in HeLa cells. This binding activity was also detectable in nuclear extracts of bovine brains. Thus, we isolated the DHS-22 binding factor from bovine brain nuclear extracts and finally identified it as NF90 on the basis of molecular mass analysis of Lys-C-digested fragments and amino acid sequences of the two peptides of the trypsin-digested binding protein. The DHS-22 binding protein(s) in THP-1 cells is (are) further confirmed by reactivity to an antibody against NF90, and we have demonstrated that the GST fusion protein of NF90 interacts with DHS-22 by electrophoretic gel mobility shift assay (EMSA). The mRNA of NF90 was decreased by TPA treatment in THP-1 cells but not in HeLa cells. These results suggest that the binding of NF90 to the DNase I hypersensitive site II of HLA-DR alpha gene seems to negatively regulate HLA-DR alpha gene expression.

Animals↗

Activators of peroxisome proliferator-activated receptor-gamma (PPARgamma) inhibit inducible nitric oxide synthase expression but increase heme oxygenase-1 expression in rat glial cells.

The peroxisome proliferator-activated receptor-gamma (PPARgamma) is activated by 15-deoxy-delta(12,14) prostaglandin J2 (15d-PGJ2), anti-diabetic thiazolidinediones and several non-steroidal anti-inflammatory drugs (NSAIDs). In rat glial cells, lipopolysaccharide and interferon-gamma (LPS/IFN-gamma) induced expression of both inducible nitric oxide synthase (iNOS) and heme oxygenase-1 (HO-1). PPARgamma activators inhibited iNOS expression by LPS and IFN-gamma. However, PPARgamma activator alone induced HO-1 expression and further enhanced LPS/IFN-gamma-induced HO-1 expression. These results suggest that activation of PPARgamma negatively regulate iNOS expression and positively regulates HO-1 expression in glial cells.

Alitretinoin↗

Intranasal or subcutaneous co-administration of recombinant cholera toxin B subunit stimulates only a slight or no level of the specific IgE response in mice to tetanus toxoid.

Whether recombinant cholera toxin B subunit (rCTB) co-administered intranasally or subcutaneously with aluminium-non-adsorbed tetanus toxoid (nTT) can induce the production of tetanus toxoid (TT)-specific IgE antibodies in mice was investigated compared with aluminium-adsorbed tetanus toxoid (aTT) administered intranasally or subcutaneously. Mice immunized intranasally or subcutaneously with nTT together with rCTB showed a high level of TT-specific serum IgG antibody response and no or a slight level of TT-specific serum IgE antibody response. On the other hand, in mice vaccinated intranasally or subcutaneously with aTT alone, higher levels of TT-specific IgG and IgE antibodies were induced in comparison with intranasal or subcutaneous inoculation of nTT together with rCTB. These results suggest that intranasal or subcutaneous co-administration of rCTB with nTT is better than intranasal or subcutaneous administration of aTT to avoid IgE-mediated allergic reactions.

Adjuvants, Immunologic↗

Binding and functional characterization of alpha1-adrenoceptor subtypes in the rat prostate.

The alpha1-adrenoceptor subtypes of rat prostate were characterized in binding and functional experiments. In binding experiments, [3H]tamsulosin bound to a single class of binding sites with an affinity (pKD) of 10.79+/-0.04 and Bmax of 87+/-2 fmol mg(-1) protein. This binding was inhibited by prazosin, 2-(2,6-dimethoxy-phenoxyethyl)-aminomethyl-1,4-benzodioxane hydrochloride (WB4101), 5-methylurapidil, alpha-ethyl-3,4,5,-trimethoxy-alpha-(3-((2-(2-methoxyphenoxy)ethyl)-amin o)-propyl)benzeneacetonitrile fumarate (HV723) and oxymetazoline with high efficacy, resulting in a good correlation with the binding characteristics of cloned alpha1a but not alpha1b and alpha1d-adrenoceptor subtypes. In functional studies, noradrenaline and oxymetazoline produced concentration-dependent contractions. These contractions were antagonized by tamsulosin, prazosin, WB4101 and 5-methylurapidil with an efficacy lower than that exhibited by these agents for inhibition of [3H]tamsulosin binding. The relationship between receptor occupancy and contractile amplitude revealed the presence of receptor reserve for noradrenaline, but the contraction induced by oxymetazoline was not in parallel with receptor occupation and developed after predicted receptor saturation. From these results, it is suggested that alpha1A-adrenoceptors are the dominant subtype in the rat prostate which can be detected with [3H]tamsulosin, but that the functional subtype mediating adrenergic contractions has the characteristics of the alpha1L-adrenoceptor subtype, having a lower affinity for prazosin and some other drugs than the alpha1A-adrenoceptor subtype.

Acetonitriles↗

Increased expression of cyclooxygenases and peroxisome proliferator-activated receptor-gamma in Alzheimer's disease brains.

Recent studies suggest that inflammatory events are associated with plaque formation in the brains of patients with Alzheimer's disease (AD). Treatment with nonsteroidal anti-inflammatory drugs (NSAIDs) of these patients appears to slow the progression of disease. We assessed the occurrence of cyclooxygenases (COX-1 and -2) and peroxisome proliferator-activated receptor-gamma (PPARgamma) in temporal cortex from normal and AD brains using specific antibodies. In AD brains, protein levels of COX-1 were increased in both cytosolic and particulate fractions, and COX-2 protein was also increased in the particulate fraction. On the other hand, PPARgamma level was increased in the cytosolic fraction but not in the particulate fraction. Thus, expression levels of COX-1, COX-2, and PPARgamma may change in AD brains. In addition, several NSAIDs which are also PPARgamma activators, such as indomethacin, inhibited COX-2 expression in glial cells. These results suggest that PPARgamma activators have inhibitory effects on inflammatory events in AD brains.

Aged↗

Response of the gastric vagal afferent activity to cholecystokinin in rats lacking type A cholecystokinin receptors.

A systemic administration of cholecystokinin (CCK) increases gastric vagal afferent activity via type A CCK receptors (CCKAR). In the present study, the response of gastric vagal afferent activity to an intravenous administration of CCK was investigated in Otsuka Long-Evans Tokushima Fatty (OLETF) rats, which lack CCKAR, and compared with its control strain, Long-Evans Tokushima Otsuka (LETO) rats. The intravenous administration of 300 pmol kg(-1) and 3 nmol kg(-1) of CCK elicited dose-dependent increases in the gastric vagal afferent activity in LETO rats. The responses were not influenced by the pretreatment with L-365,260, a type B CCK receptor (CCKBR) antagonist, while they were significantly diminished by pretreatment with MK-329, a CCKAR antagonist. After pretreatment with MK-329, 3 nmol kg(-1) (but not 300 pmol kg(-1)) of CCK still elicited a small but significant increase in the activity. In the OLETF rats, both 300 pmol kg(-1) and 3 nmol kg(-1) of CCK produced small increases in the vagal afferent activity, and the responses were not influenced by pretreatment with either L-365,260 or MK-329. In addition, the systemic administration of CCK did not change gastric motility in the OLETF rats, indicating that the response of the vagal afferent activity in OLETF rats was independent of the gastric motility change. These results demonstrate that neither CCKAR nor CCKBR contributes to the response of the afferent activity of the gastric vagal nerve to a systemic administration of CCK in OLETF rats, suggesting an involvement of novel (non-A, non-B) CCK receptors.

Animals↗

Hydrogen peroxide-induced apoptosis mediated by p53 protein in glial cells.

It is now generally accepted that massive neuronal death due to oxidative stress is a regular feature of brains in neurodegenerative diseases. However, much less attention has been given to the death of glial cells. In this study, we examined p53-sensitive apoptosis of cells by using human glioblastoma A172 cells and p53-deficient mouse astrocytes. In human A172 cells, hydrogen peroxide (H2O2) caused cell death in a time- and concentration-dependent manner, accompanied by nucleosomal DNA fragmentation and chromatin condensation. After treatment with H2O2, p53 protein was highly expressed and protein levels of Bak, p21WAF1/CIP1 and GADD45 were also enhanced. However, the protein levels of Bcl-2 and Bax did not change. On the other hand, primary cultured astrocytes from p53-deficient mouse brain grew faster than wild-type and heterozygous astrocytes. In addition, p53-deficient astrocytes were more resistant to H2O2-induced apoptosis than wild-type and heterozygous astrocytes. These results suggest that glial proliferation and the repair of damaged DNA may be regulated by p53-induced p21WAF1/CIP1 and GADD45, and that glial apoptosis caused by oxidative stress may be mediated by p53-induced Bak.

Animals↗

Detection of PERIOD/PAS-binding proteins from rat brain nuclear extracts by affinity chromatography.

In Drosophila, period and timeless gene's products (dPER and dTIM) have been identified to act as circadian clock components in heterodimeric form. The formation of dPER-dTIM complex is based on the interaction between dPER's PAS domain and dTIM's PAS binding domain. As an initial step to understand the molecular mechanism of mammalian circadian clock, we screened His-tagged dPER/PAS binding proteins from rat brain nuclear extracts, using Ni2+-NTA affinity chromatography. As a result of screening, we identified two proteins (192 and 180 kDa), which specifically bound to His-dPER/PAS in rat brain extracts. Such proteins might be a candidate of rat timeless proteins.

Animals↗

Ocular effects of adrenomedullin.

The purpose of this study was to determine the expression and effects of adrenomedullin (AM), a novel vasodilator peptide, in the eye. Expression of AM mRNA was examined in the rat iris-ciliary body using reverse transcription-polymerase chain reaction (RT-PCR). In rabbits, intraocular pressure (IOP) was measured periodically after intravitreal injection (20 microl) of AM (10(-7)-10(-4)m) into one eye. In separate groups of rabbits, 30 min after intravitreal injection of either AM-(22-52) (10(-3)m), a specific AM receptor antagonist, or CGRP-(8-37) (10(-3)m), a CGRP1 receptor antagonist, into one eye, AM (10(-6)m) was injected into both eyes, and IOP was measured. Using different rabbits, aqueous protein and cAMP concentrations were determined 6 hr after injection of AM. Expression of AM mRNA was detected in the rat iris-ciliary body. In rabbits, intravitreally administered AM (10(-6)-10(-4)m) profoundly lowered IOP, and the maximum effect was observed at 4-8 h. The ocular hypotensive effect of AM was dose-dependent (10(-7)-10(-4)m). Pretreatment with CGRP-(8-37) did not significantly inhibit the ocular hypotensive effect of AM (10(-6)m), whereas pretreatment with AM-(22-52) completely abolished it. AM (10(-6)m) did not significantly affect aqueous protein concentration. The higher dose of AM (10(-5)m) induced a significant increase in aqueous protein, which was not associated with an increase in the aqueous cAMP content and was significantly inhibited by AM-(22-52) and CGRP-(8-37). These results demonstrate that AM is expressed in the iris-ciliary body and decreases IOP mainly via specific AM receptors, and suggest that AM may play a role in controlling IOP.

Adrenomedullin↗

Tumor angiogenesis, apoptosis, and p53 oncogene in stage I lung adenocarcinoma.

The purpose of this study was to clarify which factors are important as predictors not only of patient survival but also of hematogenic metastasis in 15 patients with stage I lung adenocarcinoma who underwent curative operation. The relationship between tumor angiogenesis, apoptosis, and p53 oncogene was also studied. A total of 15 patients were divided into two groups: surviving group (n = 7) and nonsurviving (metastasis) group (n = 8). We studied the medical charts, operative records, pathologic reports, and tumor specimens taken at surgical resection. We measured the apoptotic index using the ApopTag kit and the intratumoral microvessel count using an anti-CD34 monoclonal antibody. In addition, immunohistochemical staining for the expression of p53 was conducted simultaneously. The clinicopathological characteristics, including age, sex, tumor size (pT), and histological differentiation, were not significantly different between the surviving and the nonsurviving group. The microvessel count was significantly higher in nonsurviving group than in the surviving group. The apoptotic index and the expression of p53 was not significantly different between the two groups. An inverse correlation between the apoptotic index and microvessel count, and a positive correlation between the expression of p53 and microvessel count, were observed. Angiogenesis may be an important prognostic factor in patients with stage I lung adenocarcinoma.

Adenocarcinoma↗

Kainic acid-induced activation of nuclear factor-kappaB in rat hippocampus.

Nuclear factor-kappaB (NF-kappaB) is known to play a key role in immune and inflammatory responses. To understand the mechanisms of inflammatory activation that accompany neuronal damage, we determined the cell type in which NF-kappaB was activated. NF-kappaB protein was detected in the cytosolic fraction of untreated and vehicle-treated rat hippocampus. After kainic acid (KA) treatment, NF-kappaB protein was significantly increased in both the cytosolic and particulate fractions. NF-kappaB immunoreactivity was observed in both brain blood vessels and glial cells after 1 day. Although NF-kappaB immunoreactivity in brain blood vessels disappeared after 3 days, this activity was maintained in glial cells for up to 7 days. In addition, double immunostaining indicates that NF-kappaB was activated in glial cells, such as microglia and astrocytes, after 3 days. Thus, NF-kappaB activation seems to be delayed and to occur continuously in microglia and astrocytes, suggesting that an inflammatory activation in glial cells participates in KA-induced neurodegeneration.

Animals↗

Immunohistochemical study of cytochrome P450 2C and 3A in human non-neoplastic and neoplastic tissues.

Organ and cellular distribution and expression constancy of microsomal cytochrome P450 (CYP) 2C and 3A in humans were studied with new polyclonal antibodies to CYP2C (MP-1) and 3A (NF-2) active in formalin-fixed, paraffin-embedded tissues. Antibodies were raised against purified human CYP2C9 and CYP3A4. On western blotting, MP-1 reacted with 2C8, 2C9, 2C18 and 2C19, and NF-2 with 3A4. In both frozen and paraffin sections, hepatocytes showed diffuse immunoreactivity with MP-1 and centrilobular staining with NF-2. In-paraffin sections of 40 kinds of nonneoplastic tissues, epithelium of the small and large intestine, bile duct, nasal mucosa, kidney and adrenal cortex stained positively with both MP-1 and NF-2 antibodies. Epithelium of gastric fundic glands, salivary glands, tracheobronchial glands, Brunner's glands, the prostate, uterine cervix and nasopharynx showed definite reactivity with MP-1. Epithelium of the gastric mucosa with intestinal metaplasia, duodenum, gallbladder and intercalated ducts of the pancreas and chief cells of the parathyroid and the corpus luteum of the ovary reacted with NF-2. Among the neoplastic tissues, MP-1 reacted with pleomorphic adenoma of the salivary gland and carcinomas of six different organs, and NF-2 with those of 7 different organs. These results indicate that CYP2C and CYP3A are distributed widely and organ specifically, as well as being variably expressed in neoplastic and normal states.

Antibodies, Monoclonal↗

Possible involvement of nitroglycerin converting step in nitroglycerin tolerance.

Nitroglycerin (GTN) produces a dilation of vascular smooth muscle by releasing NO through a putative GTN-converting step. However, the response to GTN is markedly attenuated after prolonged or repeated exposure, resulting in tolerance. We investigated the mechanisms of GTN tolerance, employing exogenous and endogenous NO in rat aorta. In endothelium-denuded rat aortic strips, the GTN-induced relaxation response was attenuated by preceding exposure to either GTN or sodium nitroprusside (SNP). In contrast, the SNP-induced relaxation response was not affected by this protocol of GTN or SNP preexposure. Preincubation of aortic strips with lipopolysaccharide (LPS) +/- L-arginine for 12 h also caused attenuation of GTN-induced responses such as relaxation, cGMP production and nitrite/nitrate formation. The attenuating effect of LPS abolished in aortic strips co-incubated with LPS and cycloheximide or N(G)-nitro-L-arginine. These results suggest that GTN tolerance is predominantly associated with the reduction of NO release from GTN, which is caused through inhibition of a GTN-converting step due to preceding exposure to NO itself.

Animals↗

Expression of heme oxygenase-1 mediated by non-NMDA and metabotropic receptors in glial cells: possible involvement of reactive oxygen species production and protein kinase C activation.

Heme oxygenase (HO) produces biliverdin and bilirubin which are physiological antioxidants and potent scavengers of oxygen radicals. Recently, we found that intracerebroventricular injection of kainic acid (KA) induced inducible HO (HO-1) predominantly in glial cells in the rat hippocampus in vivo. In this study, we examined the mechanism of HO-1 expression induced by agonists for glutamate receptors in cultured glial cells in vitro. The HO-1 protein level was significantly enhanced by several agonists for non-N-methyl-D-aspartate (non-NMDA) receptors and metabotropic glutamate receptors (mGluR) such as KA, quisqualic acid (QA), (+/-)-alpha-amino-3-hydroxy-5-methylisoxazole-4-propanoic acid (AMPA), and trans-(+/-)-1-amino-(1S,3R)-cyclopentanedicarboxylic acid (ACPD). Among these agonists, QA had the greatest potency. KA-induced HO-1 expression was inhibited by the non-NMDA antagonist NBQX. In addition, KA induced the marked production of reactive oxygen species (ROS), and KA-induced HO-1 expression was also inhibited by the antioxidants allopurinol and ascorbic acid. ACPD-induced HO-1 expression was inhibited by the mGluR antagonist MCPG and the protein kinase C (PKC) inhibitor calphostin C. These results suggest that induction of HO-1 expression by the activation of non-NMDA receptors is mediated by ROS production, and that expression induced by mGluR activation is mediated by PKC activation in rat glial cells.

Animals↗

Hairy cell leukemia with translocation (11;20)(q13;q11) and overexpression of cyclin D1.

We report on a male Japanese patient with hairy cell leukemia (HCL). A cytogenetic study with lipopolysaccharide stimuli showed a novel translocation (11;20)(q13;q11) in 10% of the analyzed cells. Northern blot analysis and RT-PCR analysis for cyclin D1 revealed the overexpression of cyclin D1, although the southern blot analysis of PRAD1 gene showed no rearrangement. In this particular case, the t(11;20)(q13;q11) might play some role in the oncogenesis of HCL and the overexpression of cyclin D1.

Chromosomes, Human, Pair 11↗

Interferon-gamma plus lipopolysaccharide induction of delayed neuronal apoptosis in rat hippocampus.

Interferon-gamma and lipopolysaccharide (IFN-gamma/LPS) induce expression of inducible nitric oxide synthase (iNOS) protein both in cells in vitro and in the brain in vivo. In cultured cells, excessive production of nitric oxide (NO) induces neuronal cell death. However, it is still unclear whether IFN-gamma and LPS might induce neuronal cell death in vivo. In this study, we examined the neuronal cell death and induction of major histocompatibility complex (MHC) antigens after microinjection of IFN-gamma/LPS into the rat hippocampus. Although microglia appeared morphologically ramified in the normal and vehicle-injected hippocampus, microinjection of IFN-gamma/LPS immediately induced the ameboid type. From days 1-7, iNOS was expressed in ameboid microglia surrounding the site of the microinjection. Terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling (TUNEL)-positive cells appeared among the granular neurons of the dentate gyrus on day 3 and peaked about 7 days after microinjection. When the NOS inhibitor N(G)-nitro-L-arginine (L-NA) was intraperitoneally administered prior to the microinjection, the number of TUNEL-positive neurons decreased in a L-NA dose-dependent manner. These results suggest that IFN-gamma/LPS induces delayed neuronal apoptosis in the hippocampus in vivo, and it possibly involves excessive NO production by iNOS. Thus, this animal model may be one of neurodegenerative with extensive inflammatory activation in the hippocampus.

Animals↗

Anticancer drugs inhibit induction of NO synthase in rat in vivo.

Nitric oxide (NO), synthesized by inducible NO synthase (iNOS) in immunoreactive cells, plays important roles in their activities such as bactericidal and tumoricidal functions. We examined the distribution of iNOS and evaluated the effects of anticancer drugs, 4'-epi-doxorubicin (EPI-DXR) and mitomycin C (MMC), on iNOS induction by lipopolysaccharide in rats. Ascites cells and bone marrow showed the highest induction of iNOS in the tested organs. Administration of EPI-DXR to rats strongly inhibited iNOS induction in lung, ascites, and bone marrow, but only slightly in liver and spleen. MMC administration inhibited the induction in the most immune reactive organs.

Animals↗

Effects of chronic treatment with (+)-nicotine on the stress-induced hypertension and downregulation of central nicotinic receptors in rats: comparative study with (-)-nicotine.

The effects of chronic treatment with (+)-nicotine on the immobilization stress-induced changes in blood pressure, body weight, and [3H]cytisine binding to brain nicotinic receptors were examined in rats and were compared with those of (-)-nicotine. Immobilization stress (2 hr/day(-1), for 2 weeks) induced a moderate elevation of blood pressure, loss of body weight gain, and downregulation of [3H]cytisine binding sites in cerebral cortex and midbrain. Chronic treatment with (+)- or (-)-nicotine inhibited the stress-induced hypertension but did not suppress the inhibition of body weight gain by stress. Body weight before stress load was also reduced by (-)-nicotine but not (+)-nicotine treatment. Treatment with each isomer increased the maximum number of [3H]cytisine binding sites (Bmax) of brain stem, cerebral cortex, and hippocampus. The Bmax in midbrain was also increased by (+)-nicotine but not by (-)-nicotine. Stress-induced downregulation in cerebral cortex was inhibited by both isomers. These results suggest that (+)- and (-)-nicotine cause various effects, including anti-stress effect, on the central nervous system in rats, which are slightly different between the isomers.

Alkaloids↗