Akt and c-Myc Differentially Activate Cellular Metabolic Programs and Prime Cells to Bioenergetic Inhibition

被引:97
作者
Fan, Yongjun
Dickman, Kathleen G. [1 ]
Zong, Wei-Xing
机构
[1] SUNY Stony Brook, Dept Pharmacol Sci, Stony Brook, NY 11794 USA
关键词
FACTOR-INDEPENDENT SURVIVAL; CANCER-CELLS; FATTY-ACID; IN-VIVO; MITOCHONDRIAL BIOGENESIS; GLUCOSE-METABOLISM; TUMOR-CELLS; GROWTH; EXPRESSION; HEXOKINASE;
D O I
10.1074/jbc.M109.035584
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The high glucose consumption of tumor cells even in an oxygen-rich environment, referred to as the Warburg effect, has been noted as a nearly universal biochemical characteristic of cancer cells. Targeting the glycolysis pathway has been explored as an anti-cancer therapeutic strategy to eradicate cancer based on this fundamental biochemical property of cancer cells. Oncoproteins such as Akt and c-Myc regulate cell metabolism. Accumulating studies have uncovered various molecular mechanisms by which oncoproteins affect cellular metabolism, raising a concern as to whether targeting glycolysis will be equally effective in treating cancers arising from different oncogenic activities. Here, we established a dual-regulatable FL5.12 pre-B cell line in which myristoylated Akt is expressed under the control of doxycycline, and c-Myc, fused to the hormone-binding domain of the human estrogen receptor, is activated by 4-hydroxytamoxifen. Using this system, we directly compared the effect of these oncoproteins on cell metabolism in an isogenic background. Activation of either Akt or c-Myc leads to the Warburg effect as indicated by increased cellular glucose uptake, glycolysis, and lactate generation. When cells are treated with glycolysis inhibitors, Akt sensitizes cells to apoptosis, whereas c-Myc does not. In contrast, c-Myc but not Akt sensitizes cells to the inhibition of mitochondrial function. This is correlated with enhanced mitochondrial activities in c-Myc cells. Hence, although both Akt and c-Myc promote aerobic glycolysis, they differentially affect mitochondrial functions and render cells susceptible to the perturbation of cellular metabolic programs.
引用
收藏
页码:7324 / 7333
页数:10
相关论文
共 52 条
  • [11] Rotavirus alters paracellular permeability and energy metabolism in Caco-2 cells
    Dickman, KG
    Hempson, SJ
    Anderson, J
    Lippe, S
    Zhao, LM
    Burakoff, R
    Shaw, RD
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY, 2000, 279 (04): : G757 - G766
  • [12] Characterization of fatty acid oxidation in human muscle mitochondria and myoblasts
    Djouadi, F
    Bonnefont, JP
    Munnich, A
    Bastin, J
    [J]. MOLECULAR GENETICS AND METABOLISM, 2003, 78 (02) : 112 - 118
  • [13] Akt maintains cell size and survival by increasing mTOR-dependent nutrient uptake
    Edinger, AL
    Thompson, CB
    [J]. MOLECULAR BIOLOGY OF THE CELL, 2002, 13 (07) : 2276 - 2288
  • [14] Mitochondrial transcription factor A regulates mtDNA copy number in mammals
    Ekstrand, MI
    Falkenberg, M
    Rantanen, A
    Park, CB
    Gaspari, M
    Hultenby, K
    Rustin, P
    Gustafsson, CM
    Larsson, NG
    [J]. HUMAN MOLECULAR GENETICS, 2004, 13 (09) : 935 - 944
  • [15] Akt stimulates aerobic glycolysis in cancer cells
    Elstrom, RL
    Bauer, DE
    Buzzai, M
    Karnauskas, R
    Harris, MH
    Plas, DR
    Zhuang, HM
    Cinalli, RM
    Alavi, A
    Rudin, CM
    Thompson, CB
    [J]. CANCER RESEARCH, 2004, 64 (11) : 3892 - 3899
  • [16] INDUCTION OF APOPTOSIS IN FIBROBLASTS BY C-MYC PROTEIN
    EVAN, GI
    WYLLIE, AH
    GILBERT, CS
    LITTLEWOOD, TD
    LAND, H
    BROOKS, M
    WATERS, CM
    PENN, LZ
    HANCOCK, DC
    [J]. CELL, 1992, 69 (01) : 119 - 128
  • [17] c-Myc suppression of miR-23a/b enhances mitochondrial glutaminase expression and glutamine metabolism
    Gao, Ping
    Tchernyshyov, Irina
    Chang, Tsung-Cheng
    Lee, Yun-Sil
    Kita, Kayoko
    Ochi, Takafumi
    Zeller, Karen I.
    De Marzo, Angelo M.
    Van Eyk, Jennifer E.
    Mendell, Joshua T.
    Dang, Chi V.
    [J]. NATURE, 2009, 458 (7239) : 762 - U100
  • [18] Geschwind Jean-Francois, 2004, Expert Rev Anticancer Ther, V4, P449, DOI 10.1586/14737140.4.3.449
  • [19] Mitochondria as targets for cancer chemotherapy
    Gogvadze, Vladimir
    Orrenius, Sten
    Zhivotovsky, Boris
    [J]. SEMINARS IN CANCER BIOLOGY, 2009, 19 (01) : 57 - 66
  • [20] Mitochondria as targets for chemotherapy
    Gogvadze, Vladimir
    Orrenius, Sten
    Zhivotovsky, Boris
    [J]. APOPTOSIS, 2009, 14 (04) : 624 - 640