Search PubMed⌕ Search

Biomedical subjects

T Tamaoki

Publications and source records attributed to T Tamaoki.

At least 91 records · Page 5Linked to original sources

Identification and characterization of two enhancers of the human albumin gene.

A 12.5-kilobase pair (kb) segment upstream of the human albumin gene was analyzed for transcription enhancing activity using transient transfection analysis, gel mobility shift assays, DNase I footprinting, and site-specific mutagenesis. Two enhancer regions were identified, one 1.7 kb upstream of the transcription initiation site (E1.7) and the other 6 kb upstream (E6). In E1.7, a nuclear protein from HuH-7 hepatoma cells binds to an AT-rich sequence, GTTACTAATTGAC. Competition gel mobility shift assays suggested that this protein is HNF-1, which regulates the promoter of the albumin gene and several other liver-specific genes. A 60-base pair E1.7 fragment carrying the AT-rich sequence stimulates a heterologous (alpha-fetoprotein) promoter in a dose-dependent manner. In E6, a HuH-7 nuclear protein binds to a GT-rich sequence, TGTTTGGC.A 27-base pair E6 fragment carrying this sequence is able to stimulate the SV40 promoter in an orientation-independent manner. An alteration of this sequence by site-specific mutagenesis resulted in the loss of transcriptional activity as well as binding to the HuH-7 nuclear protein. Competition gel mobility shift assays showed that homologous elements exist in the albumin promoter. These results show that the promoter and enhancer of the human albumin gene are regulated by two common transcription factors through two shared cis-acting elements, one AT-rich and the other GT-rich.

Albumins↗

Interaction of interferon-alpha with interleukin-1 beta or tumor necrosis factor-alpha on hepatitis B virus enhancer activity.

The interaction of IFN-alpha with IL-1 beta or TNF-alpha on hepatitis B surface antigen (HBsAg) expression was analysed in hepatitis B virus (HBV)-DNA integrated PLC/PRF/5 and non-integrated HuH-7 human hepatoma cells. Secretion of HBsAg in PLC/PRF/5 cells was reduced by IFN-alpha, IL-1 beta or TNF-alpha, and synergistically depressed when IFN-alpha was used in combination with IL-1 beta or TNF-alpha. By Northern blot analysis, the levels of HBsAg mRNA were suppressed by IFN-alpha in combination with IL-1 beta or TNF-alpha. In the chloramphenicol acetyltransferase plasmid transfection assay, IFN-alpha in combination with IL-1 beta or TNF-alpha caused a much greater suppression of HBV enhancer activity than IFN-alpha, IL-1 beta or TNF-alpha alone in both hepatoma cells. These findings suggest that the interaction of IFN-alpha with IL-1 beta or TNF-alpha synergistically represses HBV enhancer activity, resulting in depressed expression of HBsAg.

Carcinoma, Hepatocellular↗

A possible mechanism of inverse developmental regulation of alpha-fetoprotein and albumin genes. Studies with epidermal growth factor and phorbol ester.

Epidermal growth factor (EGF) and 12-O-tetradecanoylphorbol-13-acetate (TPA) synergistically suppress activities of the promoter and enhancer of the human alpha-fetoprotein (AFP) gene in HuH-7 human hepatoma cells as analyzed by transient transfection assays using the chloramphenicol acetyltransferase gene as a reporter. In contrast to the AFP gene, albumin promoter and enhancer activities were not affected by EGF and TPA. Unexpectedly, however, Northern blot analysis revealed that the albumin mRNA level as well as the AFP mRNA level were reduced by treatment with EGF and TPA. We propose that in HuH-7 cells, the AFP enhancer stimulates the albumin promoter as well as the AFP promoter; and consequently, inhibition of the AFP enhancer by EGF and TPA results in reduction of both AFP and albumin mRNA levels. The significance of the involvement of the AFP enhancer in albumin transcription is discussed in relation to the inverse pattern of expression of the AFP and albumin genes in neonatal growth.

Albumins↗

Inhibitory effect of prostaglandin delta 12-PGJ2 on cell proliferation and alpha-fetoprotein expression in HuH-7 human hepatoma cells.

9-deoxy-delta 9,delta 12-13,14-dihydro-prostaglandin D2 (delta 12-PGJ2) is a potent inhibitor of proliferation of tumor cells. In the present study, the effect of delta 12-PGJ2 on the alpha-fetoprotein(AFP) and the albumin gene expression was analyzed in HuH-7 human hepatoma cells. delta 12-PGJ2 inhibited the cell growth and reduced the medium AFP concentrations dose-dependently. To determine whether this decline of AFP depends only on the relative decrease in cell numbers by delta 12-PGJ2, or is in part, due to the decrease in the cellular AFP synthesis by delta 12-PGJ2, Northern blot analysis was performed in this study. By Northern blotting, it was shown that delta 12-PGJ2 caused a marked reduction in the levels of the AFP mRNA and the albumin mRNA. In contrast, the level of the beta-actin mRNA was not changed by delta 12-PGJ2. In the transient chloramphnicol acetyltransferase plasmid transfection experiments, delta 12-PGJ2 did not suppress the AFP enhancer activity, which possibly regulates both the AFP and the albumin gene expression in HuH-7 hepatoma cells, but resulted in the selective repression of the AFP and the albumin promoter activity. These results suggest that delta 12-PGJ2 suppresses not only cell growth but also expression of the AFP gene and the albumin gene at the transcriptional level in human hepatoma cells.

Albumins↗

Constituents of a fern, Davallia mariesii Moore. II. Identification and 1H- and 13C-nuclear magnetic resonance spectra of procyanidin B-5, epicatechin-(4 beta----8)-epicatechin-(4 beta----6)-epicatechin, and epicatechin-(4 beta----6)-epicatechin-(4 beta----8)-epicatechin-(4 beta----6)-epicatechin.

Procyanidin B-5 (1), epicatechin-(4 beta----8)-epicatechin-(4 beta----6)-epicatechin (2), and epicatechin-(4 beta----6)-epicatechin-(4 beta----8)-epicatechin-(4 beta----6)-epicatechin (3), which showed an inhibitory effect toward protein kinase C, were isolated from the rhizomes of Davallia mariesii Moore. Detailed analyses of their 1H- and 13C-nuclear magnetic resonance spectra were carried out by the use of two-dimensional nuclear magnetic resonance techniques.

Biflavonoids↗

Antitumor activity of UCN-01, a selective inhibitor of protein kinase C, in murine and human tumor models.

Antitumor activity of UCN-01 (7-hydroxy staurosporine), a selective inhibitor of Ca2+- and phospholipid-dependent protein kinase C, was examined in comparison with staurosporine, a nonselective inhibitor of protein kinases, on human and murine tumor cell lines which have some aberrations in cellular signal transduction. UCN-01 inhibited the growth of five tumor cell lines about 9 to 90 times less potently than staurosporine in vitro. UCN-01 showed an in vivo antitumor effect against three human tumor xenografts [epidermoid carcinoma A431 (c-erbB-1 overexpression), fibrosarcoma HT1080 (N-ras activation), and acute myeloid leukemia HL-60 (N-ras activation)], giving a minimum treated/control ratio of 0.40 (P less than 0.01), 0.17 (P less than 0.01), and 0.61 (P less than 0.05), respectively. UCN-01 also exhibited significant antitumor activity against two murine tumor models (fibrosarcoma, K-BALB and M-MSV-BALB), which activated the v-ras and v-mos oncogenes, showing a minimum treated/control ratio of 0.27 (P less than 0.01) and 0.21 (P less than 0.01). Staurosporine did not show significant antitumor activity against any of these five tumors. UCN-01 inhibited the down-modulation of epidermal growth factor receptor caused by phorbol 12-myristate 13-acetate in A431 cells at a near 50% inhibitory concentration for cell growth. These results imply that UCN-01 is a promising antitumor agent which has a novel mechanism(s) of action.

Alkaloids↗

Inhibition of protein kinase C by calphostin C is light-dependent.

Calphostin C, a secondary metabolite of the fungus Cladosporium cladosporioides, inhibits protein kinase C by competing at the binding site for diacylglycerol and phorbol esters. Calphostin C is a polycyclic hydrocarbon with strong absorbance in the visible and ultraviolet ranges. In characterizing the activity of this compound, we unexpectedly found that the inhibition of [3H]phorbol dibutyrate binding was dependent on exposure to light. Ordinary fluorescent light was sufficient for full activation. The inhibition of protein kinase C activity in cell-free systems and intact cells also required light. Light-dependent cytotoxicity was seen at concentrations about 5-fold higher than those inhibiting protein kinase C.

Animals↗

Interstitial chromosomal deletion within 4q11-q13 in a human hepatoma cell line.

Southern blot analysis revealed the presence of an aberrant albumin gene as well as a normal one in a human hepatoma cell line, HuH-7. A genomic sequence carrying this altered gene was isolated and characterized. This clone contains a 3-kbp 3' segment of the albumin gene linked to a non-albumin sequence at intron 11. The non-albumin sequence is assigned to chromosome 4q12-q13 by in situ hybridization. This indicates an interstitial deletion of a chromosomal segment within 4q11-q13 because the albumin gene is mapped there. The truncated albumin gene is detected in an early passage of HuH-7 cells and has been maintained stably in cell culture.

Albumins↗

Optimization of cell culture conditions for G-CSF (granulocyte-colony stimulating factor) production by genetically engineered Namalwa KJM-1 cells.

An expression vector for G-CSF, pASLB3-3, was constructed and introduced into Namalwa KJM-1 cells (Hosoi et al., 1988), and cells resistant to 100 nM of methotrexate (MTX) were obtained. Among them, the highest producer, clone SC57, was selected and the productivity of this clone was further characterized. The maximal production of G-CSF was at the most 1.8 micrograms/ml/day using a 25 cm2 tissue culture flask, even though the cell number was above 7 x 10(5) cells/ml. The limiting factors at high density were analyzed as the deficiency of nutrients, such as glucose, cysteine and serine, and pH control. The depression of specific G-CSF productivity per cell under the batch culture conditions was overcome by using a perfusion culture system, Biofermenter (Sato, 1983) with modifications of nutrients supplementation by a dialysis membrane and/or dissolved oxygen (DO) supplementation by microsilicone fibers. ITPSGF medium was modified to elevate concentrations of amino acids and glucose by 2.0- and 2.5-times, respectively. Under the control of pH at 7.4 and DO at 4 ppm, the specific G-CSF productivity was not depressed even at high cell density (above 1 x 10(7) cells/ml), and the amount of G-CSF reached 41 micrograms/ml. These results indicated the possibility of finding the optimum culture conditions for the production of recombinant proteins by Namalwa KJM-1 cells.

Base Sequence↗

A position-dependent silencer plays a major role in repressing alpha-fetoprotein expression in human hepatoma.

A large percentage of human hepatomas produce alpha-fetoprotein (AFP), but the levels of AFP expression vary greatly among hepatomas. To understand the molecular basis for this variation, we analyzed transcriptional regulatory activities associated with the 5'-flanking region of the AFP gene in two human hepatoma cell lines, HuH-7 and huH-1/cl-2, which produce a high and a low level of AFP, respectively. We found that the low level of AFP production in huH-1/cl-2 is due to the action of at least two silencer regions located between the enhancer and the promoter of the AFP gene. In contrast, no silencer activity is expressed in HuH-7. We identified 5'-CTTCATAACTAATACTT-3' to be a core sequence responsible for the negative regulatory activity. This sequence is repeated four times in a strong, distal silencer region, Sd, whereas one copy is present in a weak, proximal silencer region, Sp. The silencer reduces transcriptional initiation by blocking enhancer activation of the AFP promoter in a position-dependent manner. The silencer functions in the presence of positive transcription factors and may play a key role in developmental repression as well as variable expression of the AFP gene in hepatomas.

Albumins↗

A human alpha-fetoprotein enhancer-binding protein, ATBF1, contains four homeodomains and seventeen zinc fingers.

We have isolated a full-length cDNA encoding a protein (ATBF1) that binds to an AT-rich motif in the human alpha-fetoprotein gene enhancer. The amino acid sequence deduced from the cDNA revealed that this is the largest DNA-binding protein (306 kDa) known to date, containing four homeodomains, 17 zinc finger motifs, and a number of segments potentially involved in transcriptional regulation. Although the exact function of this protein has not been determined, these structural features suggest that ATBF1 plays a transcriptional regulatory role.

Amino Acid Sequence↗

Expression of human alpha-fetoprotein in yeast.

Human alpha-fetoprotein (AFP) was expressed in Saccharomyces cerevisiae, with a plasmid containing the cDNA sequence for human AFP fused with the rat AFP signal peptide. The recombinant AFP was purified from the yeast lysate by DEAE-cellulose and immunoaffinity chromatography. The amino acid composition and the molecular weight of the recombinant AFP were similar to those of hepatoma AFP. N-terminal amino acids sequence analysis indicated that the signal peptide had been processed. The recombinant and hepatoma AFP reacted identically in Ouchterlony immunodiffusion and radioimmunoassay tests. These observations indicated that the yeast recombinant protein had the properties of native AFP.

Amino Acid Sequence↗

Potent and specific inhibitors of protein kinase C of microbial origin.

Potent and specific inhibitors of protein kinase C have been found in streptomyces and fungi: Staurosporine, an alkaloid from Streptomyces sp., is the most potent inhibitor of protein kinases with an IC50 in the nanomolar range. UCN-01 (7-hydroxy staurosporine), isolated from Streptomyces sp., is a selective inhibitor of protein kinase C with antitumor activity. Calphostin, isolated from the fungus Cladosporium cladosporioides, specifically inhibits protein kinase C (IC50 = 0.05 microM) without inhibiting other protein kinases. Microbial metabolites appear to be a promising source of inhibitors that target signal transduction pathways of eukaryotes.

Alkaloids↗

Leucine-rich repeats and carboxyl terminus are required for interaction of yeast adenylate cyclase with RAS proteins.

A Saccharomyces cerevisiae gene encoding adenylate cyclase has been analyzed by deletion and insertion mutagenesis to localize regions required for activation by the Sa. cerevisiae RAS2 protein. The NH2-terminal 657 amino acids were found to be dispensable for the activation. However, almost all 2-amino acid insertions in the middle 600 residues comprising leucine-rich repeats and deletions in the COOH-terminal 66 residues completely abolished activation by the RAS2 protein, whereas insertion mutations in the other regions generally had no effect. Chimeric adenylate cyclases were constructed by swapping the upstream and downstream portions surrounding the catalytic domains between the Sa. cerevisiae and Schizosaccharomyces pombe adenylate cyclases and examined for activation by the RAS2 protein. We found that the fusion containing both the NH2-terminal 1600 residues and the COOH-terminal 66 residues of the Sa. cerevisiae cyclase rendered the catalytic domain of the Sc. pombe cyclase, which otherwise did not respond to RAS proteins, activatable by the RAS2 protein. Thus the leucine-rich repeats and the COOH terminus of the Sa. cerevisiae adenylate cyclase appear to be required for interaction with RAS proteins.

Adenylyl Cyclases↗

c-Ha-ras down regulates the alpha-fetoprotein gene but not the albumin gene in human hepatoma cells.

We studied the effects of transfection of the normal c-Ha-ras gene, rasGly-12, and its oncogenic mutant, rasVal-12, on expression of the alpha-fetoprotein (AFP) and albumin genes in a human hepatoma cell line, HuH-7. The mutant and, to a lesser extent, the normal ras gene caused reduction of the AFP mRNA but not the albumin mRNA level in transfected HuH-7 cells. Cotransfection experiments with a rasVal-12 expression plasmid and a chloramphenicol acetyltransferase reporter gene fused to AFP regulatory sequences showed that rasVal-12 suppressed the activity of enhancer and promoter regions containing A + T-rich sequences (AT motif). In contrast, rasVal-12 did not affect the promoter activity of the albumin and human hepatitis B virus pre-S1 genes even though these promoters contain homologous A + T-rich elements. ras transfection appeared to induce phosphorylation of nuclear proteins that interact with the AFP AT motif, since gel mobility analysis revealed the formation of slow-moving complexes which was reversed by phosphatase treatment. However, similar changes in complex formation were observed with the albumin and hepatitis B surface antigen pre-S1 promoters. Therefore, this effect alone cannot explain the specific down regulation of the AFP promoter and enhancer activity. ras-mediated suppression of the AFP gene may reflect the process of developmental gene regulation in which AFP gene transcription is controlled by a G-protein-linked signal transduction cascade triggered by external growth stimuli.

Antibodies, Monoclonal↗