Crystal Structure of the C-terminal Domain of Human eIF2D and Its Implications on Eukaryotic Translation Initiation.
暂无分享,去创建一个
[1] J. Pelletier,et al. Translation Initiation Factors: Reprogramming Protein Synthesis in Cancer. , 2016, Trends in cell biology.
[2] D. Walsh,et al. A Cap-to-Tail Guide to mRNA Translation Strategies in Virus-Infected Cells. , 2016, Annual review of virology.
[3] M. Holcik. Could the eIF2α-Independent Translation Be the Achilles Heel of Cancer? , 2015, Front. Oncol..
[4] Colin Echeverría Aitken,et al. Conformational Differences between Open and Closed States of the Eukaryotic Translation Initiation Complex , 2015, Molecular cell.
[5] A. Teleman,et al. DENR•MCT-1 Promotes Translation Reinitiation Downstream of uORFs to Control Tissue Growth , 2014, Nature.
[6] C. Hellen,et al. Reinitiation and other unconventional posttermination events during eukaryotic translation. , 2013, Molecular cell.
[7] T. Steitz,et al. The initiation of mammalian protein synthesis and the mechanism of scanning , 2013, Nature.
[8] Y. Tong,et al. Crystal structure of human multiple copies in T‐cell lymphoma‐1 oncoprotein , 2013, Proteins.
[9] Nahum Sonenberg,et al. Host Translation at the Nexus of Infection and Immunity , 2012, Cell Host & Microbe.
[10] Xinjiang Wang,et al. Mdm2 and MdmX partner to regulate p53 , 2012, FEBS letters.
[11] J. Kieft,et al. The structures of nonprotein‐coding RNAs that drive internal ribosome entry site function , 2012, Wiley interdisciplinary reviews. RNA.
[12] A. Hinnebusch,et al. Molecular Mechanism of Scanning and Start Codon Selection in Eukaryotes , 2011, Microbiology and Molecular Reviews.
[13] Randy J. Read,et al. Overview of the CCP4 suite and current developments , 2011, Acta crystallographica. Section D, Biological crystallography.
[14] A. Komar,et al. Activities of Ligatin and MCT-1/DENR in eukaryotic translation initiation and ribosomal recycling. , 2010, Genes & development.
[15] W. Merrick,et al. GTP-independent tRNA Delivery to the Ribosomal P-site by a Novel Eukaryotic Translation Factor* , 2010, The Journal of Biological Chemistry.
[16] P. Emsley,et al. Features and development of Coot , 2010, Acta crystallographica. Section D, Biological crystallography.
[17] R. Jackson,et al. The mechanism of eukaryotic translation initiation and principles of its regulation , 2010, Nature Reviews Molecular Cell Biology.
[18] Randy J. Read,et al. Acta Crystallographica Section D Biological , 2003 .
[19] S. Marzi,et al. Structure-function insights into prokaryotic and eukaryotic translation initiation. , 2009, Current opinion in structural biology.
[20] R. E. Luna,et al. Eukaryotic Initiation Factor (eIF) 1 Carries Two Distinct eIF5-binding Faces Important for Multifactor Assembly and AUG Selection* , 2008, Journal of Biological Chemistry.
[21] Randy J. Read,et al. Phaser crystallographic software , 2007, Journal of applied crystallography.
[22] M. Yusupov,et al. The fidelity of translation initiation: reciprocal activities of eIF1, IF3 and YciH , 2006, The EMBO journal.
[23] G. Wagner,et al. Structure and interactions of the translation initiation factor eIF1 , 1999, The EMBO journal.
[24] A. Levine,et al. Structure of the MDM2 Oncoprotein Bound to the p53 Tumor Suppressor Transactivation Domain , 1996, Science.
[25] Gaetano T Montelione,et al. DisMeta: a meta server for construct design and optimization. , 2014, Methods in molecular biology.
[26] W. Delano. The PyMOL Molecular Graphics System , 2002 .