Radiation-induced cell signaling: inside-out and outside-in

被引:267
|
作者
Valerie, Kristoffer
Yacoub, Adly
Hagan, Michael P.
Curiel, David T.
Fisher, Paul B.
Grant, Steven
Dent, Paul
机构
[1] Virginia Commonwealth Univ, Dept Biochem, Richmond, VA 23298 USA
[2] Virginia Commonwealth Univ, Dept Med, Richmond, VA 23298 USA
[3] Virginia Commonwealth Univ, Dept Radiat Oncol, Richmond, VA 23298 USA
[4] Columbia Univ, Med Ctr, Coll Phys & Surg,Dept Pathol, Herbert Irving Comprehens Canc Ctr, New York, NY USA
[5] Columbia Univ, Med Ctr, Coll Phys & Surg,Dept Neurosurg & Urol, Herbert Irving Comprehens Canc Ctr, New York, NY USA
[6] Univ Alabama Birmingham, Div Human Gene Therapy, Dept Med, Birmingham, AL USA
[7] Univ Alabama Birmingham, Div Human Gene Therapy, Dept Pathol, Birmingham, AL USA
[8] Univ Alabama Birmingham, Div Human Gene Therapy, Dept Surg, Birmingham, AL USA
[9] Univ Alabama Birmingham, Gene Therapy Ctr, Birmingham, AL USA
关键词
GROWTH-FACTOR RECEPTOR; PROTEIN-TYROSINE PHOSPHATASES; DNA-DAMAGE RESPONSE; NF-KAPPA-B; BCL-X-L; IONIZING-RADIATION; DOWN-REGULATION; KINASE KINASE; STRAND-BREAKS; ATM PROTEIN;
D O I
10.1158/1535-7163.MCT-06-0596
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Exposure of tumor cells to clinically relevant doses of ionizing radiation causes DNA damage as well as mitochondria-dependent generation of reactive oxygen species. DNA damage causes activation of ataxia telangiectasia mutated and ataxia telangiectasia mutated and Rad3-related protein, which induce cell cycle checkpoints and also modulate the activation of prosurvival and proapoptotic signaling pathways, such as extracellular signal-regulated kinase 1/2 (ERK1/2) and c-Jun NH2-terminal kinase 1/2, respectively. Radiation causes a rapid reactive oxygen species-dependent activation of ERBB family and other tyrosine kinases, leading to activation of RAS proteins and multiple protective downstream signaling pathways (e.g., AKT and ERK1/2), which alter transcription factor function and the apoptotic threshold of cells. The initial radiation-induced activation of ERK1/2 can promote the cleavage and release of paracrine ligands, which cause a temporally delayed reactivation of receptors and intracellular signaling pathways in irradiated and unirradiated bystander cells. Hence, signals from within the cell can promote activation of membrane-associated receptors, which signal back into the cytosol: signaling from inside the cell outward to receptors and then inward again via kinase pathways. However, cytosolic signaling can also cause release of membrane-associated paracrine factors, and thus, paracrine signals from outside of the cell can promote activation of growth factor receptors: signaling from the outside inward. The ultimate consequence of these signaling events after multiple exposures may be to reprogram the irradiated and affected bystander cells in terms of their expression levels of growth-regulatory and cell survival proteins, resulting in altered mitogenic rates and thresholds at which genotoxic stresses cause cell death. Inhibition of signaling in one and/or multiple survival pathways enhances radiosensitivity. Prolonged inhibition of any one of these pathways, however, gives rise to lineages of cells, which have become resistant to the inhibitor drug, by evolutionary selection for the clonal outgrowth of cells with point mutations in the specific targeted protein that make the target protein drug resistant or by the reprogramming of multiple signaling processes within all cells, to maintain viability. Thus, tumor cells are dynamic with respect to their reliance on specific cell signaling pathways to exist and rapidly adapt to repeated toxic challenges in an attempt to maintain tumor cell survival.
引用
收藏
页码:789 / 801
页数:13
相关论文
共 50 条
  • [31] Furin-dependent integrin cleavage diversely affects outside-in/inside-out signaling in VSMCs
    Furundzija, V.
    Kappert, K.
    Meyborg, H.
    Fritzsche, J.
    Fleck, E.
    Graf, K.
    Stawowy, P.
    EUROPEAN HEART JOURNAL, 2009, 30 : 760 - 760
  • [32] DO WE UNDERSTAND SENTENCES FROM OUTSIDE-IN OR FROM INSIDE-OUT
    WANNER, E
    DAEDALUS, 1973, : 163 - 183
  • [33] Introduction: 'Inside-out/outside-in': constructions and practices of security in regional organizations
    Aris, Stephen
    Wenger, Andreas
    CAMBRIDGE REVIEW OF INTERNATIONAL AFFAIRS, 2014, 27 (02) : 289 - 294
  • [34] Editorial: "Inside-Out" vs "Outside-In" Paradigms in Multiple Sclerosis Etiopathogenesis
    Luchicchi, Antonio
    Preziosa, Paolo
    't Hart, Bert
    FRONTIERS IN CELLULAR NEUROSCIENCE, 2021, 15
  • [35] Outside-In vs "Inside-Out": Revisiting migraine's vascular hypothesis
    Rothrock, John E.
    HEADACHE, 2008, 48 (09): : 1409 - 1410
  • [36] Editorial: Bone inside-out and outside-in signals: Control of body homeostasis
    Sankar, Uma
    Brun, Lucas R.
    Plotkin, Lilian I.
    FRONTIERS IN ENDOCRINOLOGY, 2023, 13
  • [37] Substorms on February 26, 2008: Synthesis of the Outside-In and Inside-Out Scenarios
    不详
    GEOMAGNETISM AND AERONOMY, 2010, 50 (08) : 997 - 1002
  • [38] THE IMPACT ON GROWTH OF OUTSIDE-IN AND INSIDE-OUT INNOVATION IN SME NETWORK CONTEXTS
    Brink, Tove
    INTERNATIONAL JOURNAL OF INNOVATION MANAGEMENT, 2014, 18 (04)
  • [39] EX draconis: using eclipses to separate outside-in and inside-out outbursts
    Court, J. M. C.
    Scaringi, S.
    Littlefield, C.
    Segura, N. Castro
    Long, K. S.
    Maccarone, T.
    Altamirano, D.
    Degenaar, N.
    Wijnands, R.
    Shahbaz, T.
    Zhan, Z.
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2020, 494 (04) : 4656 - 4664
  • [40] Substorms on February 26, 2008: Synthesis of the outside-in and inside-out scenarios
    V. M. Mishin
    Z. Pu
    L. A. Sapronova
    M. V. Tolochko
    T. I. Saifudinova
    S. I. Solovyev
    Geomagnetism and Aeronomy, 2010, 50 : 997 - 1002