研究者業績

瀧澤 将行

Takizawa Masayuki

基本情報

所属
武蔵野大学 薬学部 薬学科 助手

J-GLOBAL ID
201701020772724502
researchmap会員ID
B000273199

研究キーワード

 3

論文

 3
  • Carlos Ichiro Kasano-Camones, Masayuki Takizawa, Noriyasu Ohshima, Chinatsu Saito, Wakana Iwasaki, Yuko Nakagawa, Yoshio Fujitani, Ryo Yoshida, Yoshifumi Saito, Takashi Izumi, Shin-Ichi Terawaki, Masakiyo Sakaguchi, Frank J Gonzalez, Yusuke Inoue
    The Journal of Biochemistry 173(5) 393-411 2023年1月23日  
    Abstract HNF4α regulates various genes to maintain liver function. There have been reports linking HNF4α expression to the development of non-alcoholic fatty liver disease (NAFLD) and non-alcoholic steatohepatitis (NASH). In this study, liver-specific Hnf4a-deficient mice (Hnf4aΔHep mice) developed hepatosteatosis and liver fibrosis, and they were found to have difficulty utilizing glucose. In Hnf4aΔHep mice, the expression of fatty acid oxidation-related genes, which are PPARα target genes, was increased in contrast to the decreased expression of PPARα, suggesting that Hnf4aΔHep mice take up more lipids in the liver instead of glucose. Furthermore, Hnf4aΔHep/Ppara-/- mice, which are simultaneously deficient in HNF4α and PPARα, showed improved hepatosteatosis and fibrosis. Increased C18:1 and C18:1/C18:0 ratio was observed in the livers of Hnf4aΔHep mice and the transactivation of PPARα target gene was induced by C18:1. When the C18:1/C18:0 ratio was close to that of Hnf4aΔHep mouse liver, a significant increase in transactivation was observed. In addition, the expression of Pgc1a, a coactivator of PPARs, was increased, suggesting that elevated C18:1 and Pgc1a expression could contribute to PPARα activation in Hnf4aΔHep mice. These insights may contribute to the development of new diagnostic and therapeutic approaches for NAFLD by focusing on the HNF4α and PPARα signaling cascade.
  • Carlos Ichiro Kasano-Camones, Masayuki Takizawa, Wakana Iwasaki, Shota Sasaki, Mume Hamada, Aoi Morimoto, Masakiyo Sakaguchi, Frank J. Gonzalez, Yusuke Inoue
    Biochemical and Biophysical Research Communications 530(2) 432-439 2020年9月  
    The CIDE (cell death-inducing DFF45-like effector) family composed of CIDEA, CIDEB, CIDEC/FSP27 (fat-specific protein 27), has a critical role in growth of lipid droplets. Of these, CIDEB and CIDEC2/FSP27B are abundant in the liver, and the steatotic livers, respectively. Hepatocyte nuclear factor 4α (HNF4α) has an important role in lipid homeostasis because liver-specific HNF4α-null mice (Hnf4aΔHep mice) exhibit hepatosteatosis. We investigated whether HNF4α directly regulates expression of CIDE family genes. Expression of Cideb and Fsp27b was largely decreased in Hnf4aΔHep mice, while expression of Cidea was increased. Similar results were observed only in CIDEC2, the human orthologue of the Fsp27b, in human hepatoma cell lines in which HNF4α expression was knocked down. Conversely, overexpression of HNF4α strongly induced CIDEC2 expression in hepatoma cell lines. Furthermore, HNF4α transactivated Fsp27b by direct binding to an HNF4α response element in the Fsp27b promoter. In addition, Fsp27b is known to be transactivated by CREBH that is regulated by HNF4α, and expression of CREBH was induced by HNF4α in human hepatoma cells. Co-transfection of HNF4α and CREBH resulted in synergistic transactivation and induction of Fsp27b compared to that of HNF4α or CREBH alone. These results suggest that HNF4α, in conjunction with CREBH, plays an important role in regulation of Fsp27b expression.
  • Shunsuke Matsuo, Masayuki Ogawa, Martina U. Muckenthaler, Yumiko Mizui, Shota Sasaki, Takafumi Fujimura, Masayuki Takizawa, Nagayuki Ariga, Hiroaki Ozaki, Masakiyo Sakaguchi, Frank J. Gonzalez, Yusuke Inou
    J Biol Chem 290(52) 30855-30865 2015年12月  査読有り

所属学協会

 1