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Proceedings of the National Academy of Sciences of the United States of America|May 22, 2012
Distinct perturbation of the translatome by the antidiabetic drug metforminOla Larsson, Masahiro Morita, Ivan Topisirovic, et al.Structure (London, England : 1993)|March 13, 2013
Structural analysis of the DAP5 MIF4G domain and its interaction with eIF4AGeneviève Virgili, Filipp Frank, Kateryna Feoktistova, et al.Nature Communications|April 3, 2020
The translational landscape of ground state pluripotencyYaser Atlasi, Seyed Mehdi Jafarnejad, Christos G Gkogkas, et al.Genes|November 25, 2023
C8ORF88: A Novel eIF4E-Binding ProteinLauren Pugsley, Sai Kiran Naineni, Mehdi Amiri, et al.Molecular Biology of the Cell|July 26, 2008
The dynamics of mammalian P body transport, assembly, and disassembly in vivoAdva Aizer, Yehuda Brody, Lian Wee Ler, et al.Nature Reviews. Molecular Cell Biology|March 24, 2011
mRNA helicases: the tacticians of translational controlArmen Parsyan, Yuri Svitkin, David Shahbazian, et al.The Journal of Biological Chemistry|July 20, 2005
Akt activates the mammalian target of rapamycin by regulating cellular ATP level and AMPK activityAnnett Hahn-Windgassen, Veronique Nogueira, Chia-Chen Chen, et al.Molecular and Cellular Biology|April 15, 2004
A novel function of the MA-3 domains in transformation and translation suppressor Pdcd4 is essential for its binding to eukaryotic translation initiation factor 4AHsin-Sheng Yang, Myung-Haing Cho, Halina Zakowicz, et al.Molecular and Cellular Biology|November 17, 2005
Eukaryotic translation initiation factor 4E availability controls the switch between cap-dependent and internal ribosomal entry site-mediated translationYuri V Svitkin, Barbara Herdy, Mauro Costa-Mattioli, et al.Developmental Biology|March 22, 2003
eIF4E/4E-BP dissociation and 4E-BP degradation in the first mitotic division of the sea urchin embryoPatrick Salaün, Stéphane Pyronnet, Julia Morales, et al.Pageof 47