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Biomedical subjects

Yousuke Seyama

Publications and source records attributed to Yousuke Seyama.

6 recordsLinked to original sources

Analysis of the comprehensive effects of polyunsaturated fatty acid on mRNA expression using a gene chip.

To investigate the comprehensive effects of polyunsaturated fatty acids (PUFA) on gene expression, we analyzed changes of mRNA expression in PUFA-treated HepG2 cells using a DNA micro array. We incubated HepG2 cells for 24 h with or without 0.25 mM oleic acid (OA), arachidonic acid (AA), eicosapentaenoic acid (EPA) or docosahexaenoic acid (DHA), and then compared the expression profiles of thousands of genes using a GeneChip. PUFA influenced the expression of various genes related to cell proliferation, growth and adhesion, as well as for many transcription factors including sterol regulatory element binding proteins (SREBP). Treatments with AA, EPA, and DHA repressed the expression of genes related to cholesterol and lipid metabolism. Moreover, data from gene chip analysis proved that PUPA reduced the expression ofprostasin, which is a serine protease. By measuring the mRNA levels of SREBPs, mevalonate pyrophosphatase and prostasin using quantitative RT-PCR, we confirmed the effect of PUFA revealed by gene chip analysis. These data might provide useful clues with which to explore novel functions of PUPA.

Carcinoma, Hepatocellular↗

Coexpression of glucose transporter 1 and matrix metalloproteinase-2 in human cancers.

BACKGROUND: Cancer cells express higher levels of glucose transporter proteins (Gluts) than do normal cells. Glut-1 overexpression is associated with invasiveness. Because matrix metalloproteinase-2 (MMP-2) is also overexpressed in cancer cells and is associated with invasiveness, we tested the hypothesis that Glut-1 may regulate MMP-2 expression. METHODS: We transiently transfected Glut-1 complementary DNA (cDNA) or Glut-1 antisense oligonucleotides in the human rhabdomyosarcoma cell line RD and analyzed MMP-2 mRNA expression and cell invasiveness. Empty vector and sense oligonucleotides were used for controls. We analyzed MMP-2 promoter activity in transfectants with a luciferase reporter assay and with p53 and Ets-1 gel mobility shift assays. Eight human cancer cell lines and 80 human cancer specimens were analyzed for coexpression of Glut-1 and MMP-2 by western blot and immunohistochemical analyses, respectively. RESULTS: Overexpression of Glut-1 in RD cells increased MMP-2 expression 4.3-fold (95% confidence interval [CI] = 3.7-fold to 4.9-fold) and invasiveness 3.2-fold (95% CI = 2.6-fold to 3.8-fold) relative to control transfected cells. Conversely, suppression of Glut-1 expression by antisense oligonucleotides decreased MMP-2 expression by 71.5% (95% CI = 71.1% to 71.9%) and invasiveness by 53.0% (95% CI = 47.5% to 58.5%). Glut-1-mediated MMP-2 expression involved the binding of the transcription factor p53 but not Ets-1. All eight human cancer cell lines coexpressed Glut-1 and MMP-2 by western blotting, and 45 of 80 human tumor tissues coexpressed Glut-1 and MMP-2 by immunohistochemistry. CONCLUSIONS: MMP-2 expression and cell invasiveness are tightly associated with Glut-1 expression in human cancer cell lines. Because suppression of Glut-1 decreased MMP-2 expression and cancer cell invasion, Glut-1 could be a target for therapy of various cancers that overexpress Glut-1.

Blotting, Northern↗

Overexpression of ornithine decarboxylase enhances endothelial proliferation by suppressing endostatin expression.

Angiogenesis, an essential process for tumor growth, is regulated by endothelial proliferation factors and their inhibitors such as endostatin. Endostatin, a carboxyl-terminal fragment of type XVIII collagen, inhibits endothelial proliferation, angiogenesis, and tumor growth. Ornithine decarboxylase (ODC), a molecule that is overexpressed in various cancers, is associated with promoting tumor growth and angiogenesis. We found that ODC-overexpressing human cancer cells and breast cancer specimens showed suppressed expression of type XVIII collagen and endostatin. We hypothesized that ODC overexpression may facilitate angiogenesis in tumors by suppressing endostatin expression. ODC-overexpressing COS cells, which showed suppressed type XVIII collagen and endostatin expression, were established. Conditioned media derived from these cells, containing decreased levels of endostatin, induced significant endothelial proliferation. ODC-overexpressing cells, when transplanted into nude mice, suppressed type XVIII collagen expression and promoted neovascularization in vivo. Thus, overexpression of ODC facilitates endothelial proliferation by suppressing endostatin expression.

Animals↗

In vivo role of caspases in excitotoxic neuronal death: generation and analysis of transgenic mice expressing baculoviral caspase inhibitor, p35, in postnatal neurons.

Caspases, a family of cysteine proteases, are thought to be critical mediators of apoptosis. To examine the role of neuronal caspases in excitotoxic neurodegeneration in vivo, we have generated transgenic mice expressing the baculovirus protein p35, a potent viral caspase inhibitor, using the neuron-specific calmodulin dependent kinase-II alpha (CaMKII-alpha) promoter. The expression of p35 was confirmed by reverse transcriptase-polymerase chain reaction (RT-PCR), Western blotting and immunohistochemistry. We analyzed caspase activation and cell death by employing an experimental paradigm, in which the excitotoxin kainate (KA) was injected into CA1 of hippocampus and the distribution of the caspase-generated actin fragment was detected immunohistochemically. While kainate treatment led to selective neuronal death in the CA1, CA3 and CA4 of non-transgenic control mice, we observed restricted caspase activation only in the CA3 sector. The transgenic expression of p35 consistently inhibited the kainate-induced caspase activation, but failed to influence the death of neurons to any extent. In addition, we observed concomitant early calpain activation in the specific areas where neurons underwent degeneration in both the transgenic and non-transgenic mice. These results indicate that p35-inhibitable caspases play rather minor roles in the kainate-induced excitotoxicity and that the relative contribution of calpain is likely to be greater than that of caspases.

Animals↗

A possible intermediate step during apoptotic execution.

Many proteases are known to be involved in apoptosis. Among them, interleukin-1beta converting enzyme (ICE) and its family proteases, which are called caspases, play critical roles in the execution stage of apoptosis. We previously reported that a proteasome-inhibitor, benzyloxycarbonyl Leu-Leu-leucinal (ZLLLal), induced apoptosis in MOLT-4 cells. In the present study, in order to analyze the detailed mechanism of ZLLLal-induced apoptosis, we examined the effect of a caspase-inhibitor, acetyl(Ac)-Tyr-Val-Ala-Asp-chloromethyl ketone (AcYVADcmk), on ZLLLal-induced apoptosis in the cells. Agarose gel electrophoresis revealed that low concentrations of AcYVADcmk efficiently suppressed apoptotic DNA fragmentation. However, the cells presented morphology different from normal, apoptotic or necrotic cells, although DNA fragmentation was suppressed. The same examination was performed on the cells with anti-Fas antibody-induced apoptosis, and the same results were obtained. Some cells with a similar morphology were found even without the caspase-inhibitor in the early stage of anti-Fas antibody-induced physiological apoptosis. In addition, apoptotic cascade was reactivated by washing out the caspase inhibitor from the DNA degradation-suppressed cells. Therefore, this newly found morphological feature shows the presence of a step prior to caspase activation in the cells, and this is the first report presenting the pre-caspase-activated step in the apoptotic cascade.

Amino Acid Chloromethyl Ketones↗