Title of article :
The eEF2 Kinase Confers Resistance to Nutrient Deprivation by Blocking Translation Elongation
Author/Authors :
Gabriel Leprivier، نويسنده , , Marc Remke، نويسنده , , Barak Rotblat، نويسنده , , Adrian Dubuc، نويسنده , , Abigail-Rachele F. Mateo، نويسنده , , Marcel Kool، نويسنده , , Sameer Agnihotri، نويسنده , , Amal El-Naggar، نويسنده , , Bin Yu، نويسنده , , Syam Prakash Somasekharan، نويسنده , , Brandon Faubert، نويسنده , , Gaëlle Bridon، نويسنده , , Cristina E. Tognon، نويسنده , , Joan Mathers، نويسنده , , Ryan Thomas، نويسنده , , Amy Li، نويسنده , , Adi Barokas، نويسنده , , Brian Kwok، نويسنده , , Mary Bowden، نويسنده , , Stephanie Smith، نويسنده , , et al.، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2013
Pages :
16
From page :
1064
To page :
1079
Abstract :
Metabolic adaptation is essential for cell survival during nutrient deprivation. We report that eukaryotic elongation factor 2 kinase (eEF2K), which is activated by AMP-kinase (AMPK), confers cell survival under acute nutrient depletion by blocking translation elongation. Tumor cells exploit this pathway to adapt to nutrient deprivation by reactivating the AMPK-eEF2K axis. Adaptation of transformed cells to nutrient withdrawal is severely compromised in cells lacking eEF2K. Moreover, eEF2K knockdown restored sensitivity to acute nutrient deprivation in highly resistant human tumor cell lines. In vivo, overexpression of eEF2K rendered murine tumors remarkably resistant to caloric restriction. Expression of eEF2K strongly correlated with overall survival in human medulloblastoma and glioblastoma multiforme. Finally, C. elegans strains deficient in efk-1, the eEF2K ortholog, were severely compromised in their response to nutrient depletion. Our data highlight a conserved role for eEF2K in protecting cells from nutrient deprivation and in conferring tumor cell adaptation to metabolic stress.
Journal title :
CELL
Serial Year :
2013
Journal title :
CELL
Record number :
1021726
Link To Document :
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