Search PubMed⌕ Search

Biomedical subjects

T Taniguchi

Publications and source records attributed to T Taniguchi.

At least 217 records · Page 12Linked to original sources

Kainic acid-induced neuronal loss and glial changes in the hippocampal CA3 of p53-deficient mouse.

We examined kainic acid (KA)-induced neuronal death and changes in glial cells in p53-deficient (p53-/-) and wild-type (p53+/+) mice which were CBA and C57BL/6 background. The p53-/- mouse exhibited a KA-induced loss of CA3 pyramidal neurons similar to that in wild-type mouse. Before neuronal death, c-Jun protein was expressed, phosphorylated and translocated into several nuclei of CA3 pyramidal neurons. In p53-/- mouse, microglial activation was slightly faster and more continuous after 1-7 days than that in p53+/+ mouse. On the other hand, p53-/- astrocytes were relatively resistant to KA cytotoxicity, and marked astrocytosis also occurred after 7 days. These observations suggest that p53-null mutation may influence the activation and proliferation of glial cells rather than neuronal death.

Animals↗

Analysis of the TPA regulatory element in the genomic poly(ADP-ribose) synthetase gene in human leukemia U937 cells.

The human leukemia U937 cells differentiate into monocyte/macrophage-like cells when treated with 12-O-tetradecanoylphorbol-13-acetate (TPA). We observed that during this process, both protein and mRNA levels for PARS markedly decreased in U937 cells. Through deletion analysis of the PARS regulatory gene, we found that the sequence within the first intron region was responsible for the TPA-dependent repression. Electrophoretic mobility shift assays (EMSAs) and Southwestern blot analysis indicate that this element bound specifically to a nuclear protein. TPA treatment abolished the binding of the protein in U937 cells but not in HeLa cells. DNase I footprinting data show that the cis regulatory element is located between residues 328 and 383. We further examined the function of this cis element (BS207) in a basal promoter regulatory reporter construct and found that this cis element (BS207) functions as an enhancer via the binding of an unknown trans-acting factor. TPA treatment diminished the binding activity of the factor in U937 cells, resulting in a decrease in the enhanced activity to the basal level. These results suggest that abolishment of the binding of a special nuclear protein to the first intron of the PARS gene is related to the TPA-responsive downregulation of PARS in U937 cells.

Base Sequence↗

Enhanced expression of urokinase receptor induced through the tissue factor-factor VIIa pathway in human pancreatic cancer.

Overexpression of tissue factor (TF) is characteristically observed in advanced pancreatic cancer and has been associated with invasion and metastasis. Functional responses of TF activation are here investigated using as a model system the human pancreatic cancer cell lines SW979 (which overexpresses TF) and MIAPaCa2 (which does not express detectable levels). After stimulation of these cell lines with factor VIIa (FVIIa), the only known TF ligand, expression of urokinase receptor (uPAR) gene was up-regulated in SW979 cells in a dose-dependent manner but not in MIAPaCa2 cells. Interestingly, urokinase (uPA) and its specific inhibitor PAI-1 were not up-regulated. Exposure to functionally inactivated FVIIa did not show any effect on uPAR expression on SW979 cells despite binding to TF with higher efficiency. The neutralizing anti-TF antibody 5G9 blocked the FVIIa-induced up-regulation of uPAR completely, whereas hirudin failed to block this up-regulation. Treatment of SW979 cells with Factor Xa did not up-regulate the expression of uPAR gene, whereas treatment with FVII induced the same level of enhanced uPAR gene expression as that with FVIIa. In the matrigel invasion assay, enhanced invasion of SW979 cell line induced by FVIIa was completely inhibited by anti-TF antibody and alpha2-antiplasmin. Moreover, the endogenous levels of uPAR gene expression were significantly correlated with the level of TF gene expression in 19 human cancer cell lines (P < 0.05). These data suggest that up-regulation of uPAR expression by tumor cells leading to tumor invasion is induced through the TF-FVIIa pathway rather than TF-initiated thrombin generation. This is the first report that TF may be one of the key receptors that can up-regulate expression of the plasminogen activator receptor in human cancer cells to enhance tumor invasion and metastasis.

Breast Neoplasms↗

A protein kinase, PKN, accumulates in Alzheimer neurofibrillary tangles and associated endoplasmic reticulum-derived vesicles and phosphorylates tau protein.

A possible role for a protein kinase, PKN, a fatty acid-activated serine/threonine kinase with a catalytic domain homologous to the protein kinase C family and a direct target for Rho, was investigated in the pathology of Alzheimer's disease (AD) using a sensitive immunocytochemistry on postmortem human brain tissues and a kinase assay for human tau protein. The present study provides evidences by light, electron, and confocal laser microscopy that in control human brains, PKN is enriched in neurons, where the kinase is concentrated in a subset of endoplasmic reticulum (ER) and ER-derived vesicles localized to the apical compartment of juxtanuclear cytoplasm, as well as late endosomes, multivesicular bodies, Golgi bodies, secretary vesicles, and nuclei. In AD-affected neurons, PKN was redistributed to the cortical cytoplasm and neurites and was closely associated with neurofibrillary tangles (NFTs) and their major constituent, abnormally modified tau. PKN was also found in degenerative neurites within senile plaques. In addition, we report that human tau protein is directly phosphorylated by PKN both in vitro and in vivo. Thus, our results suggest a specific role for PKN in NFT formation and neurodegeneration in AD damaged neurons.

Aged↗

Localization of PKN mRNA in the rat brain.

Distribution of mRNA encoding PKN, a fatty acid and RhoA-activated serine/threonine protein kinase with a catalytic domain highly homologous to that of protein kinase C, was investigated in the rat brain using in situ hybridization histochemistry. PKN mRNA proved to be heterogenously distributed. The highest signals were observed in the cerebellum, in limbic systems such as olfactory bulb, hippocampal formation and limbic cortex, and in regions involved in central autonomic and neuroendocrine functions, such as hypothalamic ventromedial, dorsomedial, lateroanterior and arcuate nuclei, paraventricular hypothalamic nucleus and locus coeruleus. PKN mRNA was also highly expressed in dopaminergic neurons such as the ventral tegmental area and substantia nigra pars compacta, in serotonergic raphe neurons, and in cholinergic neurons such as nucleus diagonal band, nucleus basalis, and lateral dorsal tegmental nucleus. The distribution of PKN mRNA differed from that for PKC isoforms. As the localization of PKN mRNA is heterogeneous, PKN may have a specific role in distinct populations of nerve cells.

Animals↗

Persistent release of noradrenaline caused by anticancer drug 4'-epidoxorubicin in rat tail artery in vitro.

Anthracycline derivatives including 4'-epidoxorubicin are known to cause cardiovascular side effects. In this study we examined the effects of 4'-epidoxorubicin on sympathetic nerves of rat tail artery in vitro. Treatment with 4'-epidoxorubicin at concentrations higher than 10 microM gradually increased the resting tension of the arterial strips, an effect which was greatly enhanced by subsequent addition of 10 microM cocaine. This increase of the resting tension by 4'-epidoxorubicin was prevented by prazosin, suppressed in the arterial strips of reserpine-pretreated rats, and reduced by superoxide dismutase. However, tetrodotoxin and histamine receptor antagonists (diphenhydramine and cimetidine) failed to influence it. The contractile response to electrical sympathetic stimulation was slightly attenuated by 30 microM 4'-epidoxorubicin. 4'-epidoxorubicin did not shift the concentration-response curve for noradrenaline. In the superfusion experiments, the basal release of noradrenaline was increased approximately five-fold by 30 microM 4'-epidoxorubicin, and this increase was not inhibited by 0.1 microM prazosin, 0.5 microM tetrodotoxin, 10 microM cocaine or Ca2+-free medium. Noradrenaline release evoked by electrical stimulation was gradually suppressed by 30 microM 4'-epidoxorubicin treatment. These results suggest that 4'-epidoxorubicin directly acts on the sympathetic nerve to cause persistent release of noradrenaline in rat tail artery.

Adrenergic alpha-Antagonists↗

Biosynthetic processing and quaternary interactions of proprotein convertase SPC4 (PACE4).

SPC4 (PACE4), a member of the eukaryotic family of subtilisin-like proprotein convertases, is synthesized as a proenzyme (proSPC4) which undergoes proteolytic removal of N-terminal propeptide during transit through the secretory pathway. As this propeptide processing seems to be a key event in the functional expression of SPC4, we have investigated its mechanism and the intracellular site where it occurs. In transfected fibroblast cells, the 110-kDa proSPC4 undergoes slow cleavage to generate a 103-kDa mature enzyme in the endoplasmic reticulum (ER). Site-directed mutagenesis studies demonstrate that the proteolytic activation of SPC4 occurs mainly through a unimolecular autocatalytic process and propeptide cleavage is a prerequisite for its export from the ER. Sedimentation velocity and chemical cross-linking analysis demonstrate that the precursor protein in the cells exists as both a monomer and a dimer-sized complex whereas mature SPC4 exists only as a monomer. These results suggest that the cleavage of the N-terminal propeptide of SPC4 plays a regulatory role in its activation and secretion through the change in its oligomeric state.

Animals↗

Induction of plasminogen in rat hippocampal pyramidal neurons by kainic acid.

Tissue plasminogen activator (tPA) is used to treat acute stroke, but tPA- and plasminogen-gene-deficient mice exhibit resistance to neurodegeneration. Thus, it is unclear whether the tPA-plasminogen system, an extracellular proteolytic cascade plays a helpful or harmful role, and whether plasminogen is induced by neurodegeneration. In the CA3, kainic acid (KA)-injection caused neuronal damage after 6 h, and almost all of the neurons were lost after 7 days. Plasminogen mRNA was strongly induced 6 h after injection, then gradually decreased, and was very weak at 2 days after injection. Plasminogen protein was expressed after 6 h and localized in abnormally shaped neurons. The in vivo expression of plasminogen was synchronous with morphological changes in neurons. These results suggest that the expression of plasminogen induced by KA-injection may disrupt of neuron-extracellular matrix interaction and thereby contribute to cell death in neurons in the hippocampus.

Animals↗

Functionally inactivating point mutation in the tumor-suppressor IRF-1 gene identified in human gastric cancer.

Loss of heterozygosity (LOH) observed in human tumors strongly suggests the existence of (a) tumor-suppressor gene(s) at the concerned locus. A series of studies has revealed that LOH on the long arm of chromosome 5 (5q) frequently occurs in differentiated gastric adenocarcinomas. Furthermore, it has been shown that the interferon regulatory factor-1 (IRF-1) locus on chromosome 5q31.1 is one of the common minimal regions of LOH in these cancers. IRF-1 is a transcriptional activator that shows tumor-suppressor activity in the mouse. In the present study, we examined the sequence of the IRF-1 gene in 9 cases of histologically differentiated gastric adenocarcinomas, all of which exhibited LOH at the IRF-1 locus. We identified a mis-sense mutation in the residual allele in one case. This mutated form of IRF-1 showed markedly reduced transcriptional activity. In addition, overexpression of wild-type IRF-1 induced cell-cycle arrest, whereas such activity was attenuated in the mutant IRF-1. These results suggest that the loss of functional IRF-1 is critical for the development of human gastric cancers.

3T3 Cells↗

Transactivation of transforming growth factor alpha gene by hepatitis B virus preS1.

Hepatitis B virus (HBV) causes acute and chronic liver injury, and integration of HBV DNA is considered to be an important pathogenic determinant for hepatocarcinogenesis and tumor development. Transforming growth factor alpha (TGF-alpha) drastically accelerates hepatocarcinogenesis when it is overexpressed in TGF-alpha transgenic mice (C. Jhappan et al., Cell, 61: 1137-1146, 1990). In HBV-infected patients, hepatocellular carcinoma (HCC) cells show elevated expression of TGF-alpha (C. C. Hsia et al., J. Med. Virol., 43: 216-221, 1994), the mechanism for which, however, has not been clarified yet. We here show that preS1, a part of the HBV large surface protein, carries a transcriptional transactivation domain and activates the transcription of the TGF-alpha gene by 2-fold in human HCC HuH6 cells. The responsive elements are restricted to the 315-bp segment of the proximal TGF-alpha promoter (-373 to -59). Furthermore, the expression of TGF-alpha was markedly increased in permanently preS1-producing HuH6 transformants. The crucial role for HBV preS1 in hepatocarcinogenesis and tumor development through transactivation of the TGF-alpha gene may give us new insight into the understanding of pathogenesis and therapy of viral hepatocarcinogenesis.

Animals↗

Mutation in the pleckstrin homology domain of the human phospholipase C-delta 1 gene is associated with loss of function.

The delta-type phospholipase C (PLC) is thought to be evolutionally the most basal form in the mammalian PLC family. One of the delta-type isoforms, PLC-delta 1, binds to both phosphatidylinositol 4,5-bisphosphate (PtdIns(4,5)P2) and inositol 1,4,5-trisphosphate (Ins(1,4,5)P3) with a high affinity via its pleckstrin homology (PH) domain. We report here a missense mutation in the region encoding the C-terminal PH domain of the human PLC-delta 1. This is also the first report of a mutation in the human PLC genes. A single base substitution (G to A) causes the amino acid replacement, Arg105 to His. Site-directed mutagenesis of the glutathione-S-transferase (GST)/PLC-delta 1 fusion protein changing Arg105 to His resulted in a fourfold decrease in the affinity of specific Ins(1,4,5)P3 binding and a reduction in PtdIns(4,5)P2 hydrolysing activity to about 40% of that of the wild-type enzyme. This remarkable loss of function can be interpreted in terms of a conformational change in the PH domain.

Blood Proteins↗

Solution structure of the IRF-2 DNA-binding domain: a novel subgroup of the winged helix-turn-helix family.

BACKGROUND: The transcription of interferon (IFN) and IFN-inducible genes is mainly regulated by the interferon regulatory factor (IRF) family of proteins, which recognize a unique AAGTGA hexamer repeat motif in the regulatory region of IFN genes. A DNA-binding domain of approximately 100 amino acids has been commonly found in the IRF family of proteins, but it has no sequence homology to known DNA-binding motifs. Elucidation of the structures of members of the IRF family is therefore useful to the understanding of the regulation and evolution of the immune system at the structural level. RESULTS: The solution structure of the DNA-binding domain of interferon regulatory factor-2 (IRF-2) has been determined by NMR spectroscopy. It is composed of a four-stranded antiparallel beta sheet and three alpha helices, and its global fold is similar to those of the winged helix-turn-helix (wHTH) family of proteins. A long loop (Pro37-Asp51) is found immediately before the HTH motif, which is not found in other wHTH proteins. The NMR signals of residues in this long loop, as well as the second helix of the HTH motif, are strongly affected upon the addition of the hexamer repeat DNA, suggesting that these structural elements participate in DNA recognition and binding. CONCLUSIONS: The structural similarity of the DNA-binding domain of IRF-2 with those of proteins in the wHTH family shows that the IRF proteins belong to the wHTH family, even though there is no apparent sequence homology among proteins of the two families. The sequential structure alignment program (SSAP) shows that IRF-2 has a slightly different structure from typical wHTH proteins, mainly in the orientation of helix 2. The IRF family of proteins should therefore be categorized into a subfamily of the wHTH family. The evidence here implies that the evolutional pathway of the IRF family is distinct from that of the other wHTH proteins, in other words, the immune system diverged from an evolutional stem at an early stage.

Amino Acid Sequence↗

Assay of 25-hydroxyvitamin D3 1 alpha-hydroxylase in rat kidney mitochondria.

An assay method for 25-hydroxyvitamin D3 1alpha-hydroxylase [calcidiol, NADPH: oxygen oxidoreductase (1-hydroxylating), EC 1.14. 13.13] in rat kidney is described. The mitochondrial and nuclear fraction was solubilized effectively with 3-[(3-cholamidopropyl)-dimethylammonio]-1-propanesulfonate(Chaps). By subsequent ultracentrifugation of the solubilized suspension the effect of inhibitory factor(s) in mammals was removed. The enzyme was then assayed by the reconstitution method using saturated amounts of adrenodoxin and NADPH-adrenodoxin reductase. Products were analyzed by HPLC, monitoring absorbance at 265 nm. The enzyme activity depended on not only pH of the medium but also the kind of buffers. N,N-Bis(2-hydroxyethyl)glycine was the best buffer. At 30 degrees C, the reaction velocity was linear at least up to 10 min, by which time enough amounts of the product needed for analysis were formed. The enzyme activity was linear to a protein concentration up to 0.8 mg of protein/ml. Under the best assay conditions established, the maximal velocity of enzyme in the rachitic rat was 12.9 pmol of product/min/mg of protein, which was 30- to 1000-fold higher than those reported by other authors with the enzyme of rachitic rat. Michaelis constant was 1.8 microM. Specific activity with the enzyme of normal rat was 0.25 pmol of product/min/mg.

25-Hydroxyvitamin D3 1-alpha-Hydroxylase↗

Prevalence of HTLV-I in leprosy patients in two sanatoriums in Japan.

To determine the association between leprosy and HTLV-I, 450 and 394 leprosy patients in two sanatoriums in Japan (Sanatorium-A in Okayama prefecture and Sanatorium-B in Gunma prefecture) were investigated serologically for antibodies to HTLV-I. Serology was positive for HTLV-I in 38 (8.4%) of 450 leprosy patients in Sanatorium-A and in 34 (8.6%) of 394 patients in Sanatorium-B. Prevalence was much higher than that in the general population of these areas in Japan. A large proportion of HTLV-I-positive patients in both sanatoriums came from HTLV-I nonendemic areas in Japan, suggesting that HTLV-I infection occurred after the patients arrived at the sanatoriums. Infection through sexual contact or reuse of needles for frequent vaccination are possible routes of infection for HTLV-I in these cases.

Age Distribution↗

Involvement of the IRF family transcription factor IRF-3 in virus-induced activation of the IFN-beta gene.

The virus-induced activation of interferon alpha/beta (IFN-alpha/beta) gene transcription is essential for host defense. The IFN-beta promoter is controlled primarily by the virus-inducible enhancer elements, the IRF-Es. Here we show that IRF-3, an IRF family transcription factor, translocates to the nucleus from the cytoplasm upon virus infection in NIH/3T3 cells. The nuclear IRF-3 is phosphorylated, interacts with the co-activators CBP/p300, and binds specifically to the IFN-beta IRF-E. Furthermore, overexpression of IRF-3 causes a marked increase in virus-induced IFN-beta mRNA expression. Thus, IRF-3 is a candidate transcription factor mediating the activation of the IFN-beta gene.

3T3 Cells↗

Pyk2 is a downstream mediator of the IL-2 receptor-coupled Jak signaling pathway.

Many cytokines transmit signals to the cell interior through activation of receptor-associated, Janus family protein tyrosine kinases (Jak PTKs). The interleukin-2 receptor (IL-2R) is associated with the Jak1 and Jak3 PTKs, and ligand-induced activation of these PTKs is essential for lymphocyte proliferation. Here, the nonreceptor PTK, Pyk2, was found to be activated following IL-2 stimulation in a Jak-dependent manner. Furthermore, physical association was detected between endogenous Pyk2 and Jak3, and a dominant interfering mutant of Pyk2 inhibited IL-2-induced cell proliferation without affecting Stat5 activation. Collectively, these results suggest that Pyk2 is a newly identified component of the Jak-mediated IL-2 signaling pathway.

Binding Sites↗

Single-channel activity of the Ca2+-dependent K+ channel is modulated by FK506 and rapamycin.

Single-channel patch clamp recordings were performed in primary cultured neurons from rat dorsal hippocampi. Ca2+-dependent and TEA-sensitive K+ current was recorded from the neurons. Application of immunosuppressants FK506 and rapamycin to the channel inside the plasma membrane of the neurons significantly prolonged the mean open time of the channel. Calcineurin autoinhibitory fragment and W-7 induced no significant alteration in the mean open time of the channel. These results suggest that modulation of the activity of the Ca2+-dependent K+ channel by FK506 and rapamycin is directly through association of immunosuppressants with FKBP12.

Animals↗

Interaction of Oct-1 and automodification domain of poly(ADP-ribose) synthetase.

We isolated several clones from a matchmaker two-hybrid system human lymphocyte cDNA library using an automodification domain of poly(ADP-ribose) synthetase (PARS) as a probe. A DNA sequence (approximately 1 kbp) of the clone was identical to part of the Oct-1 DNA sequence. We then constructed either a His-tagged or GST fusion protein of the inserted cDNA from the clone and the fusion protein was shown to interact with PARS by far-Western blot analysis and co-precipitation with affinity resin. Furthermore, the His-tagged Oct-1/POU-homeo fusion protein interacted weakly with the octamer motif of the DRa promoter and the addition of PARS fusion protein greatly increased the DNA binding activity. These results suggest that PARS interacts with Oct-1 and stabilizes the binding of Oct-1 to the octamer motif.

Base Sequence↗