TGFβ-induced changes in membrane curvature influence Ras oncoprotein membrane localization

被引:0
|
作者
Alexandros Damalas
Ivana Vonkova
Marijonas Tutkus
Dimitrios Stamou
机构
[1] University of Copenhagen,Department of Chemistry
[2] National and Kapodistrian University of Athens,Fourth Department of Internal Medicine, School of Medicine
[3] Attikon University Hospital,Institute of Biotechnology
[4] CZ-OPENSCREEN,Department of Molecular Compounds Physics
[5] Institute of Molecular Genetics of the Czech Academy of Sciences,undefined
[6] Vilnius University,undefined
[7] Center for Physical Sciences and Technology,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
In the course of cancer progression tumor cells undergo morphological changes that lead to increased motility and invasiveness thus promoting formation of metastases. This process called epithelial to mesenchymal transition (EMT) is triggered by transforming growth factor (TGFβ) but for gaining the full invasive potential an interplay between signaling of TGFβ and Ras GTPases is required. Ras proteins possess a lipidated domain that mediates Ras association with the plasma membrane, which is essential for Ras biological functions. Type and number of the lipid anchors are the main difference among three Ras variants—H-ras, N-ras and K-ras. The lipid anchors determine membrane partitioning of lipidated proteins into membrane areas of specific physico-chemical properties and curvature. In this study, we investigated the effect of TGFβ treatment on the subcellular localization of H-ras and K-ras. We show that TGFβ increases positive plasma membrane curvature, which is subsequently sensed by H-ras, leading to its elevated plasma membrane localization and activation. This observation suggests the existence of a novel positive feedback loop whereby the increased level of plasma membrane curvature during TGFβ induced EMT attracts more Ras molecules to the plasma membrane resulting in increased Ras activity which in turn promotes further EMT and thus ultimately enables the acquisition of full invasive potential.
引用
收藏
相关论文
共 50 条
  • [21] Sorting of tN-Ras by Membrane Curvature in Lipid Vesicles and Tubes
    Rosholm, Kadla R.
    Larsen, Jannik
    Pedersen, Soren L.
    Munch, Henrik K.
    Jensen, Knud J.
    Hatzakis, Nikos
    Stamou, Dimitrios
    BIOPHYSICAL JOURNAL, 2013, 104 (02) : 549A - 549A
  • [22] Curvature induced membrane structure from fluorescence
    Munoz, Luis M. Davila
    Ranganathan, Radha
    BIOPHYSICAL JOURNAL, 2023, 122 (03) : 86A - 86A
  • [23] Membrane curvature and dynamics induced by amphiphilic oligomers
    Dimova, R
    Döbereiner, HG
    Lipowsky, R
    BIOPHYSICAL JOURNAL, 2002, 82 (01) : 506A - 506A
  • [24] Transmembrane protein-induced membrane curvature
    Kluge, C.
    Bockmann, R.
    ACTA PHYSIOLOGICA, 2017, 219 : 78 - 78
  • [25] Membrane curvature induced by sugar and polymer solutions
    Döbereiner, HG
    Lehmann, A
    Goedel, W
    Selchow, O
    Lipowsky, R
    MATERIALS SCIENCE OF THE CELL, 1998, 489 : 101 - 106
  • [26] Transmembrane protein-induced membrane curvature
    Kluge, C.
    Boeckmann, R. A.
    EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS, 2017, 46 : S221 - S221
  • [27] Ras membrane orientation and nanodomain localization generate isoform diversity
    Abankwa, Daniel
    Gorfe, Alemayehu A.
    Inder, Kerry
    Hancock, John F.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2010, 107 (03) : 1130 - 1135
  • [28] Modeling Membrane Localization: Case Study of a Ras Signaling Model
    Stites, Edward C.
    ADVANCES IN COMPUTATIONAL BIOLOGY, 2010, 680 : 661 - 667
  • [29] RAS MEMBRANE LOCALIZATION IS REQUIRED FOR GLUCOSE SIGNALING BUT NOT VIABILITY IN YEAST
    POWERS, S
    BHATTACHARYA, S
    LI, C
    BROACH, J
    JOURNAL OF CELLULAR BIOCHEMISTRY, 1995, : 58 - 58
  • [30] Vesiculation of biological membrane driven by curvature induced frustrations in membrane orientational ordering
    Jesenek, Dalija
    Perutkova, Sarka
    Gozdz, Wojciech
    Kralj-Iglic, Veronika
    Iglic, Ales
    Kralj, Samo
    INTERNATIONAL JOURNAL OF NANOMEDICINE, 2013, 8 : 677 - 687