4.7 Article

EIF3D promotes gallbladder cancer development by stabilizing GRK2 kinase and activating PI3K-AKT signaling pathway

Journal

CELL DEATH & DISEASE
Volume 8, Issue -, Pages -

Publisher

SPRINGERNATURE
DOI: 10.1038/cddis.2017.263

Keywords

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Funding

  1. National Natural Science Foundation of China [81172026, 81272402, 81301816, 81172029, 91440203, 81402403, 81672404, 81502433]
  2. National High Technology Research and Development Program (863 Program) [2012AA022606]
  3. Foundation for Interdisciplinary Research of Shanghai Jiao Tong University [YG2011ZD07]
  4. Shanghai Science and Technology Commission Intergovernmental International Cooperation Project [12410705900]
  5. Shanghai Science and Technology Commission Medical Guiding Project [12401905800]
  6. Program for Changjiang Scholars
  7. Natural Science Research Foundation of Shanghai Jiao Tong University School of Medicine [13XJ10037]
  8. Leading Talent program of Shanghai and Specialized Research Foundation for the PhD Program of Higher Education-Priority Development Field [20130073130014]
  9. Interdisciplinary Program of Shanghai Jiao Tong University [14JCRY05]
  10. Shanghai Rising-Star Program [15QA1403100]
  11. China Postdoctoral Science Foundation [2015 M571577]

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Recent evidence suggests that dysregulated eIF3d expression may be critical in various genetic disorders as well as cancer. In this study, we observed that EIF3d levels increased in gallbladder cancer (GBC) samples compared with non-tumor tissue. High eIF3d levels were associated with advanced tumor stage and metastasis and were correlated with poor prognosis in 92 patients with GBC. Depletion of EIF3d in GBC cell lines inhibited cell proliferation, colony formation and metastasis and induced apoptosis and cell cycle arrest in vitro and in vivo. In contrast, ectopic expression of eIF3d had the opposite effects. Moreover, in this study, we revealed that a novel non-translational factor function of eIF3d mediated its protumoral effects. In details, eIF3d stabilizes GRK2 protein by blocking ubiquitin-mediated degradation, consequently activates PI3K/Akt signaling, and promotes GBC cell proliferation and migration. In conclusion, eIF3d promotes GBC progression mainly via eIF3d-GRK2-AKT axis and it may be used as a prognostic factor. The therapeutic targeting of eIF3d-GRK2 axis may be a potential treatment approach for GBC.

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