Literature DB >> 26130148

mTORC2 Balances AKT Activation and eIF2α Serine 51 Phosphorylation to Promote Survival under Stress.

Clara Tenkerian1, Jothilatha Krishnamoorthy2, Zineb Mounir3, Urszula Kazimierczak4, Arkady Khoutorsky5, Kirk A Staschke6, Arnold S Kristof7, Shuo Wang2, Maria Hatzoglou8, Antonis E Koromilas9.   

Abstract

UNLABELLED: The mTOR nucleates two complexes, namely mTOR complex 1 and 2 (mTORC1 and mTORC2), which are implicated in cell growth, survival, metabolism, and cancer. Phosphorylation of the α-subunit of translation initiation factor eIF2 at serine 51 (eIF2αS51P) is a key event of mRNA translation initiation and a master regulator of cell fate during cellular stress. Recent studies have implicated mTOR signaling in the stress response, but its connection to eIF2αS51P has remained unclear. Herein, we report that genetic as well as catalytic inhibition of mTORC2 induces eIF2αS51P. On the other hand, the allosteric inhibitor rapamycin induces eIF2αS51P through pathways that are independent of mTORC1 inactivation. Increased eIF2αS51P by impaired mTORC2 depends on the inactivation of AKT, which primes the activation of the endoplasmic reticulum (ER)-resident kinase PERK/PEK. The biologic function of eIF2αS51P was characterized in tuberous sclerosis complex (TSC)-mutant cells, which are defective in mTORC2 and AKT activity. TSC-mutant cells exhibit increased PERK activity, which is downregulated by the reconstitution of the cells with an activated form of AKT1. Also, TSC-mutant cells are increasingly susceptible to ER stress, which is reversed by AKT1 reconstitution. The susceptibility of TSC-mutant cells to ER stress is further enhanced by the pharmacologic inhibition of PERK or genetic inactivation of eIF2αS51P. Thus, the PERK/eIF2αS51P arm is an important compensatory prosurvival mechanism, which substitutes for the loss of AKT under ER stress. IMPLICATIONS: A novel mechanistic link between mTOR function and protein synthesis is identified in TSC-null tumor cells under stress and reveals potential for the development of antitumor treatments with stress-inducing chemotherapeutics. ©2015 American Association for Cancer Research.

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Year:  2015        PMID: 26130148     DOI: 10.1158/1541-7786.MCR-15-0184-T

Source DB:  PubMed          Journal:  Mol Cancer Res        ISSN: 1541-7786            Impact factor:   5.852


  16 in total

1.  Development of 1-((1,4-trans)-4-Aryloxycyclohexyl)-3-arylurea Activators of Heme-Regulated Inhibitor as Selective Activators of the Eukaryotic Initiation Factor 2 Alpha (eIF2α) Phosphorylation Arm of the Integrated Endoplasmic Reticulum Stress Response.

Authors:  Revital Yefidoff-Freedman; Jing Fan; Lu Yan; Qingwen Zhang; Guillermo Rodrigo Reis Dos Santos; Sandeep Rana; Jacob I Contreras; Rupam Sahoo; Debin Wan; Jun Young; Karina Luiza Dias Teixeira; Christophe Morisseau; Jose Halperin; Bruce Hammock; Amarnath Natarajan; Peimin Wang; Michael Chorev; Bertal H Aktas
Journal:  J Med Chem       Date:  2017-06-19       Impact factor: 7.446

Review 2.  Cross-talk between protein synthesis, energy metabolism and autophagy in cancer.

Authors:  Lisa M Lindqvist; Kristofferson Tandoc; Ivan Topisirovic; Luc Furic
Journal:  Curr Opin Genet Dev       Date:  2017-11-25       Impact factor: 5.578

3.  Disruption of Protein Processing in the Endoplasmic Reticulum of DYT1 Knock-in Mice Implicates Novel Pathways in Dystonia Pathogenesis.

Authors:  Genevieve Beauvais; Nicole M Bode; Jaime L Watson; Hsiang Wen; Kevin A Glenn; Hiroyuki Kawano; N Charles Harata; Michelle E Ehrlich; Pedro Gonzalez-Alegre
Journal:  J Neurosci       Date:  2016-10-05       Impact factor: 6.167

4.  Inadequate fine-tuning of protein synthesis and failure of amino acid homeostasis following inhibition of the ATPase VCP/p97.

Authors:  K Parzych; T M Chinn; Z Chen; S Loaiza; F Porsch; G N Valbuena; M F Kleijnen; A Karadimitris; E Gentleman; H C Keun; H W Auner
Journal:  Cell Death Dis       Date:  2015-12-31       Impact factor: 8.469

5.  [Pemetrexed + Sorafenib] lethality is increased by inhibition of ERBB1/2/3-PI3K-NFκB compensatory survival signaling.

Authors:  Laurence Booth; Jane L Roberts; Mehrad Tavallai; John Chuckalovcak; Daniel K Stringer; Antonis E Koromilas; David L Boone; William P McGuire; Andrew Poklepovic; Paul Dent
Journal:  Oncotarget       Date:  2016-04-26

6.  mTOR inhibitors activate PERK signaling and favor viability of gastrointestinal neuroendocrine cell lines.

Authors:  Patricia Freis; Julien Bollard; Justine Lebeau; Patrick Massoma; Joëlle Fauvre; Cécile Vercherat; Thomas Walter; Serge Manié; Colette Roche; Jean-Yves Scoazec; Carole Ferraro-Peyret
Journal:  Oncotarget       Date:  2017-03-28

7.  Downregulation of PERK activity and eIF2α serine 51 phosphorylation by mTOR complex 1 elicits pro-oxidant and pro-death effects in tuberous sclerosis-deficient cells.

Authors:  Jothilatha Krishnamoorthy; Clara Tenkerian; Jyotsana Gupta; Nour Ghaddar; Shuo Wang; Cedric Darini; Kirk A Staschke; Abhishek Ghosh; Valentina Gandin; Ivan Topisirovic; Arnold S Kristof; Maria Hatzoglou; George Simos; Antonis E Koromilas
Journal:  Cell Death Dis       Date:  2018-02-15       Impact factor: 8.469

8.  mTORC1 and CK2 coordinate ternary and eIF4F complex assembly.

Authors:  Valentina Gandin; Laia Masvidal; Marie Cargnello; Laszlo Gyenis; Shannon McLaughlan; Yutian Cai; Clara Tenkerian; Masahiro Morita; Preetika Balanathan; Olivier Jean-Jean; Vuk Stambolic; Matthias Trost; Luc Furic; Louise Larose; Antonis E Koromilas; Katsura Asano; David Litchfield; Ola Larsson; Ivan Topisirovic
Journal:  Nat Commun       Date:  2016-04-04       Impact factor: 14.919

9.  mTOR Regulates Gap Junction Alpha-1 Protein Trafficking in Sertoli Cells and Is Required for the Maintenance of Spermatogenesis in Mice.

Authors:  Alexandre Boyer; Meggie Girard; Dayananda S Thimmanahalli; Adrien Levasseur; Christophe Céleste; Marilène Paquet; Rajesha Duggavathi; Derek Boerboom
Journal:  Biol Reprod       Date:  2016-06-08       Impact factor: 4.285

10.  Inhibition of Sec61-dependent translocation by mycolactone uncouples the integrated stress response from ER stress, driving cytotoxicity via translational activation of ATF4.

Authors:  Joy Ogbechi; Belinda S Hall; Thomas Sbarrato; Jack Taunton; Anne E Willis; Ronald C Wek; Rachel E Simmonds
Journal:  Cell Death Dis       Date:  2018-03-14       Impact factor: 8.469

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