総合医科学研究所 遺伝子発見機構学

上瀧 萌

ウエタキ メグミ  (Megumi Uetaki)

基本情報

所属
藤田医科大学 腫瘍医学研究センター 博士研究員
学位
博士(医学)(2022年9月 慶応義塾大学大学院 医学研究科)

ORCID ID
 https://orcid.org/0009-0005-5057-5050
J-GLOBAL ID
202401009610416791
researchmap会員ID
R000077610

論文

 2
  • Megumi Uetaki, Nobuyuki Onishi, Yoshinao Oki, Takatsune Shimizu, Eiji Sugihara, Oltea Sampetrean, Takashi Watanabe, Hisano Yanagi, Kiyoshi Suda, Hiroya Fujii, Koichiro Kano, Hideyuki Saya, Hiroyuki Nobusue
    Molecular biology of the cell 33(9) ar78 2022年8月1日  
    Cellular differentiation is characterized by changes in cell morphology that are largely determined by actin dynamics. We previously showed that depolymerization of the actin cytoskeleton triggers the differentiation of preadipocytes into mature adipocytes as a result of inhibition of the transcriptional coactivator activity of megakaryoblastic leukemia 1 (MKL1). The extracellular matrix (ECM) influences cell morphology via interaction with integrins, and reorganization of the ECM is associated with cell differentiation. Here we show that interaction between actin dynamics and ECM rearrangement plays a key role in adipocyte differentiation. We found that depolymerization of the actin cytoskeleton precedes disruption and degradation of fibrillar fibronectin (FN) structures at the cell surface after the induction of adipogenesis in cultured preadipocytes. A FN matrix suppressed both reorganization of the actin cytoskeleton into the pattern characteristic of adipocytes and terminal adipocyte differentiation, and these inhibitory effects were overcome by knockdown of integrin α5 (ITGα5). Peroxisome proliferator-activated receptor γ was required for down-regulation of FN during adipocyte differentiation, and MKL1 was necessary for the expression of ITGα5. Our findings suggest that cell-autonomous down-regulation of FN-ITGα5 interaction contributes to reorganization of the actin cytoskeleton and completion of adipocyte differentiation.
  • Megumi Uetaki, Sho Tabata, Fumie Nakasuka, Tomoyoshi Soga, Masaru Tomita
    Scientific reports 5 13896-13896 2015年9月9日  
    Intravenous administration of high-dose vitamin C has recently attracted attention as a cancer therapy. High-dose vitamin C induces pro-oxidant effects and selectively kills cancer cells. However, the anticancer mechanisms of vitamin C are not fully understood. Here, we analyzed metabolic changes induced by vitamin C in MCF7 human breast adenocarcinoma and HT29 human colon cancer cells using capillary electrophoresis time-of-flight mass spectrometry (CE-TOFMS). The metabolomic profiles of both cell lines were dramatically altered after exposure to cytotoxic concentrations of vitamin C. Levels of upstream metabolites in the glycolysis pathway and tricarboxylic acid (TCA) cycle were increased in both cell lines following treatment with vitamin C, while adenosine triphosphate (ATP) levels and adenylate energy charges were decreased concentration-dependently. Treatment with N-acetyl cysteine (NAC) and reduced glutathione (GSH) significantly inhibited vitamin C-induced cytotoxicity in MCF7 cells. NAC also suppressed vitamin C-dependent metabolic changes, and NAD treatment prevented vitamin C-induced cell death. Collectively, our data suggests that vitamin C inhibited energy metabolism through NAD depletion, thereby inducing cancer cell death.

共同研究・競争的資金等の研究課題

 2