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Biomedical subjects

T Tamaoki

Publications and source records attributed to T Tamaoki.

At least 109 records · Page 6Linked to original sources

Constituents of a fern, Davallia mariesii Moore. I. Isolation and structures of davallialactone and a new flavanone glucuronide.

A new gamma-lactone derivative named davallialactone (4) and the 7-O-beta-D-glucuronide of (+/-)-eriodictyol (5a) have been isolated from Davallia mariessi Moore along with caffeic acid (1), 4-beta-D-glucopyranosylcaffeic acid (2) and 4-O-beta-D-glucopyranosyl-p-coumaric acid (3). The structures of the new compounds were determined by chemical and spectroscopic methods including two-dimensional nuclear magnetic resonance (2D NMR) techniques, especially 1H-detected heteronuclear multiple-bond multiple-quantum coherence and long-range C-H J-resolved 2D NMR techniques.

Animals↗

Potent selective inhibition of 7-O-methyl UCN-01 against protein kinase C.

UCN-01 is a staurosporine-related compound that was isolated from the culture broth of Streptomyces sp. and shows potent and selective inhibitory activity against protein kinase C. Cellular inhibitory activity of UCN-01 against protein kinase C and cytotoxicity of UCN-01 were compared with those of staurosporine. When the mechanism of inhibitory activity was investigated in vitro, UCN-01 as well as staurosporine inhibited the activity of the catalytic domain of protein kinase C. In spite of direct inhibition against the catalytic domain of protein kinase C, cytotoxicity of UCN-01 was much lower than that of staurosporine. In addition, UCN-01 showed more selective inhibitory activity against protein kinase C than did staurosporine because of the sole structural difference at C-7. Therefore, a series of 7-O-alkyl derivatives of UCN-01 was synthesized and investigated. Interestingly, one of the compounds, the beta-methoxy derivative, showed 3-fold greater potency and 17-fold more selective inhibitory activity against protein kinase C than did UCN-01.

Alkaloids↗

Hypericin and pseudohypericin specifically inhibit protein kinase C: possible relation to their antiretroviral activity.

Hypericin and pseudohypericin which have been isolated from plants of the Hypericum family are aromatic polycyclic diones. Daniel Meruelo et. al. have reported that hypericin and pseudohypericin showed potent antiretroviral activity including anti-human immunodeficiency virus (1,2). However, the mechanism of these antiretroviral activities has not been clarified. In the course of screening specific inhibitors of protein kinase C we have found that both compounds specifically inhibit protein kinase C with IC50 values 1.7 micrograms/ml and 15 micrograms/ml, respectively, and show antiproliferative activity against mammalian cells. These data suggest that antiretroviral activity of hypericin and pseudohypericin could be attributable to the inhibition of some phosphorylation involved by protein kinase C during viral infection of cells.

Animals↗

Involvement of an AFP1-binding site in cell-specific transcription of the pre-S1 region of the human hepatitis B virus surface antigen gene.

Human hepatitis B virus infection is characterized by a high degree of hepatotropism which may be due to the dependency of viral genes on specific host factors for their expression. To learn more about such a requirement and the molecular basis of the viral tissue tropism we analyzed the promoter function in the pre-S1 region of the surface antigen gene. DNase I footprinting and competition gel retardation assays showed that a sequence with an AT-rich core (AT motif) in the pre-S1 promoter region interacts with AFP1, a hepatoma nuclear factor that binds to the alpha-fetoprotein enhancer and promoter. Functional analysis of the pre-S1 AT motif by transient transfection assays showed that this element is important in cell-specific transcriptional initiation. These results suggest that AFP1 may be one of the factors determining the liver specificity of human hepatitis B virus.

Base Sequence↗

Comparison of effects of protein kinase C inhibitors on phorbol ester-induced CD4 down-regulation and augmentation of human immunodeficiency virus replication in human T cell lines.

The potent protein kinase C inhibitors staurosporine, H-7, and UCN-01 were investigated for their effects on 12-0-tetradecanoylphorbol-13-acetate (TPA)--mediated CD4 down-regulation and on the augmentation of human immunodeficiency virus (HIV) expression. Staurosporine was the most effective TPA inhibitor for both of these actions. Because of its high cytotoxicity, the effect of H-7 on augmentation of HIV expression could not be determined. UCN-01 had no cytotoxic effect, but caused only little inhibition of the augmentation of HIV expression.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Calphostin C (UCN-1028C), a novel microbial compound, is a highly potent and specific inhibitor of protein kinase C.

Calphostin C (UCN-1028C), a newly isolated compound from Cladosporium cladosporioides, is a potent and specific inhibitor of protein kinase C, because it was 1000 times more inhibitory to protein kinase C (IC50, 0.05 microM) than other protein kinases such as cAMP-dependent protein kinase and tyrosine-specific protein kinase (IC50, greater than 50 microM). Calphostin C did not inhibit calcium activated neutral protease (calpain)-digested protein kinase C, indicating that it interacts with the regulatory domain of protein kinase C. In addition this compound showed inhibitory effects on the binding of [3H]PDBu to protein kinase C. The potent cytotoxic activity and antitumor activity of calphostin C might be due to the inhibition of protein kinase C, and thus it may be potentially useful for the therapeutic application.

Animals↗

Transcriptional regulation of alpha-fetoprotein expression by dexamethasone in human hepatoma cells.

The level of alpha-fetoprotein (AFP) mRNA in HuH-7 human hepatoma cells is elevated by the addition of dexamethasone to the culture medium. To locate the DNA region involved in hormonal regulation of the AFP gene, we constructed recombinant plasmids in which various lengths of the 5'-flanking sequence of the human AFP gene were fused to the CAT gene. Various cell lines were transfected with the recombinant plasmids, incubated with or without 3 x 10(-6) M dexamethasone, and then assayed for chloramphenicol acetyltransferase expression. In hepatoma cells that produce AFP, the dexamethasone treatment resulted in the stimulated chloramphenicol acetyltransferase expression when the transfected plasmids contained 169 base pairs (bp) or longer AFP 5'-flanking sequence. No dexamethasone effect was observed when the 5'-flanking sequence was less than 98 bp long. The dexamethasone stimulation was effectively suppressed by the glucocorticoid antagonist RU486, indicating that this effect is mediated by glucocorticoid receptors. The 71-bp region between positions -169 and -98 contains a nucleotide stretch which is similar to the consensus sequence of the glucocorticoid responsive element (GRE). Partial alterations of this sequence resulted in decreased dexamethasone response. The GRE-containing region stimulated heterologous (SV40) promoter activity in response to dexamethasone treatment in an orientation- and position-independent manner. The GRE and the upstream AFP enhancer function independently from each other.

Base Sequence↗

Adenylate cyclases in yeast: a comparison of the genes from Schizosaccharomyces pombe and Saccharomyces cerevisiae.

A Schizosaccharomyces pombe gene encoding adenylate cyclase has been cloned by cross-hybridization with the Saccharomyces cerevisiae adenylate cyclase gene. The protein encoded consists of 1692 amino acids and has adenylate cyclase activity that cannot be activated by the Sa. cerevisiae RAS2 protein. Sc. pombe cyclase has a high degree of homology (approximately 60%) with the catalytic domain of Sa. cerevisiae cyclase precisely mapped by a gene-deletion analysis. A 25-40% identity is observed throughout the middle segments of approximately 1000 residues of both cyclases, large parts of which are composed of repetitions of a 23-amino acid motif similar to those found in human glycoproteins, Drosophila chaoptin, and Toll gene product. However, a segment corresponding to the NH2-terminal 620 residues of Sa. cerevisiae cyclase appears lost from Sc. pombe cyclase, and the COOH-terminal 140 residues are not well conserved between the two yeast species. Deletions involving the COOH-terminal residues of Sa. cerevisiae cyclase cause loss of activation by the RAS2 protein. These results suggest that Sc. pombe cyclase may have lost the ability to interact with RAS proteins by the loss of a regulatory site.

Adenylyl Cyclases↗

Calphostins (UCN-1028), novel and specific inhibitors of protein kinase C. I. Fermentation, isolation, physico-chemical properties and biological activities.

A novel complex of calphostin (UCN-1028), which specifically inhibits protein kinase C (PKC) has been isolated from the culture broth of a fungi Cladosporium cladosporioides. Purification of individual components was carried out by silica gel, non-porus resin Diaion HP-20SS and Sephadex LH-20 chromatography, leading to isolation of five closely related components. A, B, C, D and I. Calphostins showed cytotoxic activities against various tumor cells, and these cytotoxicities were proportional to their inhibitory activities against PKC.

Antibiotics, Antineoplastic↗

UCN-01 and UCN-02, new selective inhibitors of protein kinase C. I. Screening, producing organism and fermentation.

In the course of continued screening program for new selective inhibitors of protein kinase C (PKC), fermentation broths from over 5,000 soil isolates were screened for their inhibitory activity of PKC. HPLC analysis of active cultures revealed that five different strains (N-71, N-115, N-126, N-128 and N-139) of Streptomyces isolated from various local soil samples were found to produce staurosporine and related compounds. Of these strains, N-126, a high producing strain, was found to produce new selective inhibitors of PKC, UCN-01 and its stereoisomer, UCN-02. The pH control of fermentation resulted in an increase of the production of UCN-01 and UCN-02.

Alkaloids↗

UCN-01 and UCN-02, new selective inhibitors of protein kinase C. II. Purification, physico-chemical properties, structural determination and biological activities.

A new inhibitor of protein kinase C (PKC), UCN-01, was isolated from the culture broth of Streptomyces sp. N-126. We have found that this strain also produces UCN-02 which is a stereoisomer of UCN-01. The inhibitors have the molecular formula C28H26N4O4 and have an indolo[2,3-alpha]carbazole chromophore. Their structures have been elucidated by mass and NMR spectra. UCN-01 has been shown to inhibit PKC and protein kinase A (PKA) with IC50 values of 0.0041 and 0.042 microM, respectively, and UCN-02 has been shown to inhibit PKC and PKA with IC50 values of 0.062 and 0.25 microM, respectively. UCN-01 and UCN-02 also showed the cytotoxic effect on the growth of HeLa S3 cells.

Alkaloids↗

Isolation and in vitro translation of mRNA from rat peritoneal mast cells and rat basophilic leukemia cells.

In the absence of any specific literature on the isolation of RNA from mast cells, our initial attempts established that unusual measures would be needed to prepare acceptable yields of high quality RNA from peritoneal mast cells of normal adult rats. Accordingly, we developed procedures for the isolation and characterization of RNA from rat peritoneal mast cells (PMC) and basophilic leukemia cells (RBL). The significant components of the procedures include: separation and removal of mast cell granules to minimize contamination of RNA with proteins and proteoglycans; use of bentonite in phenol extractions; and repetition of extractions and precipitation. The amounts of total RNA extracted from PMC were about 15% of those from RBL, although the percentage mRNA of total RNA in PMC and RBL was similar (1.8 and 2.0%). Ribosomal RNA banding patterns in agarose gel electrophoresis and in vitro translation experiments indicate that the isolated RNA can be employed for analysis of molecular mechanisms of mast cell function and heterogeneity.

Animals↗

Analysis of alpha-fetoprotein gene expression in hepatocellular carcinoma and liver cirrhosis by in situ hybridization.

The expression of the alpha-fetoprotein (AFP) gene in hepatocellular carcinoma (HCC) and liver cirrhosis by in situ hybridization analysis of AFP mRNA in cryostat and paraffin-embedded tissue sections was studied. In HCC sections the majority of tumor cells showed positive hybridization with a 3H-labeled AFP complementary DNA probe. The number of radioactive hybrid grains detected in HCC sections generally paralleled the level of serum AFP in the patient. In liver cirrhosis sections a small number of cells showed positive hybridization. These cells were dispersed in the tissue and morphologically indistinguishable from surrounding hepatocytes. Each of these cells contained a high level of hybridization signals to permit easy identification. In situ hybridization analysis of AFP mRNA may be of use in detecting preneoplastic cells in liver cirrhosis that cannot be defined on the morphologic and immunohistochemical basis.

Carcinoma, Hepatocellular↗

Expression of Ley antigen in human immunodeficiency virus-infected human T cell lines and in peripheral lymphocytes of patients with acquired immune deficiency syndrome (AIDS) and AIDS-related complex (ARC).

Ley determinant (Fuc alpha 1----2Gal beta 1----4[Fuc alpha 1----3]GlcNAc beta 1----R) defined by mAb BM-1 is highly expressed in human immunodeficiency virus (HIV)-infected T cell lines and in CD3+ peripheral mature T cells of patients with acquired immune deficiency syndrome (AIDS) or with AIDS-related complex (ARC). Ley expression increased greatly in the CD3+ population in the advanced stage of AIDS when the CD4+ population decreased greatly. Six other carbohydrate antigens tested by their respective mAbs were not detected in these same cells. None of the carbohydrate antigens tested by the seven mAbs used in this study were found in noninfected T cell lines and in normal peripheral blood lymphocytes.

AIDS-Related Complex↗

Interaction of a hepatoma-specific nuclear factor with transcription-regulatory sequences of the human alpha-fetoprotein and albumin genes.

DNase I footprinting and gel mobility shift analysis showed that an HuH-7 hepatoma nuclear protein, termed AFP1, binds specifically to an AT-rich sequence, TGATTAATAATTACA, in domain B of the human alpha-fetoprotein enhancer. No such binding activity was found in HeLa cell nuclei. Transient transfection studies showed that a 54-base-pair region corresponding to the AFP1-binding site could stimulate the simian virus 40 early promoter to express a linked chloramphenicol acetyltransferase gene in an orientation-independent and cell-specific manner. The correlation between the binding of AFP1 and the stimulation of chloramphenicol acetyltransferase gene expression strongly suggests that specific interaction of AFP1 with the AT motif is important for cell-specific transcriptional enhancement. Competition gel mobility shift analysis revealed that similar AT-rich sequences with high affinities to AFP1 were also present in the promoters of the alpha-fetoprotein and albumin genes. These results suggest that AFP1 may function as a common regulatory factor in the transcription of the alpha-fetoprotein and albumin genes.

Animals↗