Reciprocal signaling between mTORC1 and MNK2 controls cell growth and oncogenesis

被引:0
|
作者
Jianling Xie
Kaikai Shen
Ashley T. Jones
Jian Yang
Andrew R. Tee
Ming Hong Shen
Mengyuan Yu
Swati Irani
Derick Wong
James E. Merrett
Roman V. Lenchine
Stuart De Poi
Kirk B. Jensen
Paul J. Trim
Marten F. Snel
Makoto Kamei
Sally Kim Martin
Stephen Fitter
Shuye Tian
Xuemin Wang
Lisa M. Butler
Andrew C. W. Zannettino
Christopher G. Proud
机构
[1] South Australian Health and Medical Research Institute,Lifelong Health Theme
[2] Medical Research Council Toxicology Unit,School of Basic Medical Sciences
[3] Shanghai University of Traditional Chinese Medicine,Division of Cancer and Genetics
[4] Cardiff University,Adelaide Medical School and Freemasons Foundation Centre for Men’s Health
[5] Heath Park,Precision Medicine Theme
[6] University of Adelaide,Department of Molecular and Cellular Biology
[7] South Australian Health and Medical Research Institute,Hopwood Centre for Neurobiology
[8] University of Adelaide,Myeloma Research Laboratory, Adelaide Medical School, Faculty of Health and Medical Science
[9] South Australian Health and Medical Research Institute,Department of Biology
[10] University of Adelaide,undefined
[11] Southern University of Science and Technology,undefined
来源
关键词
Rapamycin; Prostate cancer; eIF4E; Protein synthesis; mRNA translation;
D O I
暂无
中图分类号
学科分类号
摘要
eIF4E plays key roles in protein synthesis and tumorigenesis. It is phosphorylated by the kinases MNK1 and MNK2. Binding of MNKs to eIF4G enhances their ability to phosphorylate eIF4E. Here, we show that mTORC1, a key regulator of mRNA translation and oncogenesis, directly phosphorylates MNK2 on Ser74. This suppresses MNK2 activity and impairs binding of MNK2 to eIF4G. These effects provide a novel mechanism by which mTORC1 signaling impairs the function of MNK2 and thereby decreases eIF4E phosphorylation. MNK2[S74A] knock-in cells show enhanced phosphorylation of eIF4E and S6K1 (i.e., increased mTORC1 signaling), enlarged cell size, and increased invasive and transformative capacities. MNK2[Ser74] phosphorylation was inversely correlated with disease progression in human prostate tumors. MNK inhibition exerted anti-proliferative effects in prostate cancer cells in vitro. These findings define a novel feedback loop whereby mTORC1 represses MNK2 activity and oncogenic signaling through eIF4E phosphorylation, allowing reciprocal regulation of these two oncogenic pathways.
引用
收藏
页码:249 / 270
页数:21
相关论文
共 50 条
  • [1] Reciprocal signaling between mTORC1 and MNK2 controls cell growth and oncogenesis
    Xie, Jianling
    Shen, Kaikai
    Jones, Ashley T.
    Yang, Jian
    Tee, Andrew R.
    Shen, Ming Hong
    Yu, Mengyuan
    Irani, Swati
    Wong, Derick
    Merrett, James E.
    Lenchine, Roman, V
    De Poi, Stuart
    Jensen, Kirk B.
    Trim, Paul J.
    Snel, Marten F.
    Kamei, Makoto
    Martin, Sally Kim
    Fitter, Stephen
    Tian, Shuye
    Wang, Xuemin
    Butler, Lisa M.
    Zannettino, Andrew C. W.
    Proud, Christopher G.
    CELLULAR AND MOLECULAR LIFE SCIENCES, 2021, 78 (01) : 249 - 270
  • [2] MNK Controls mTORC1: Substrate Association through Regulation of TELO2 Binding with mTORC1
    Brown, Michael C.
    Gromeier, Matthias
    CELL REPORTS, 2017, 18 (06): : 1444 - 1457
  • [3] mTORC1 signaling and the metabolic control of cell growth
    Ben-Sahra, Issam
    Manning, Brendan D.
    CURRENT OPINION IN CELL BIOLOGY, 2017, 45 : 72 - 82
  • [4] Reciprocal Regulation between Primary Cilia and mTORC1
    Lai, Yandong
    Jiang, Yu
    GENES, 2020, 11 (06) : 1 - 15
  • [5] mTORC1 Signaling Promotes Limb Bud Cell Growth and Chondrogenesis
    Jiang, Ming
    Fu, Xuejie
    Yang, Huilin
    Long, Fanxin
    Chen, Jianquan
    JOURNAL OF CELLULAR BIOCHEMISTRY, 2017, 118 (04) : 748 - 753
  • [6] mTORC1 signaling controls mammalian skeletal growth through stimulation of protein synthesis
    Chen, Jianquan
    Long, Fanxin
    DEVELOPMENT, 2014, 141 (14): : 2848 - 2854
  • [7] CIP2A oncoprotein controls cell growth and autophagy through mTORC1 activation
    Puustinen, Pietri
    Rytter, Anna
    Mortensen, Monika
    Kohonen, Pekka
    Moreira, Jose M.
    Jaattela, Maria
    JOURNAL OF CELL BIOLOGY, 2014, 204 (05): : 713 - 727
  • [8] TSC2/mTORC1 Signaling Controls Paneth and Goblet Cell Differentiation in the Intestinal Epithelium
    Zhou, Yuning
    Rychahou, Piotr
    Wang, Qingding
    Weiss, Heidi L.
    Evers, B. Mark
    GASTROENTEROLOGY, 2015, 148 (04) : S57 - S57
  • [9] TSC2/mTORC1 signaling controls Paneth and goblet cell differentiation in the intestinal epithelium
    Y Zhou
    P Rychahou
    Q Wang
    H L Weiss
    B M Evers
    Cell Death & Disease, 2015, 6 : e1631 - e1631
  • [10] TSC2/mTORC1 signaling controls Paneth and goblet cell differentiation in the intestinal epithelium
    Zhou, Y.
    Rychahou, P.
    Wang, Q.
    Weiss, H. L.
    Evers, B. M.
    CELL DEATH & DISEASE, 2015, 6 : e1631 - e1631