Nucleic Acids Research · 2018 · 35 citations · 56 references
Protein AssemblyMolecular BiologyHydrophobic GrooveAnalytical UltracentrifugationProtein SynthesisProtein X-ray CrystallographyRibosomal P StalkReleasing GtpasesProkaryotic SystemBiochemistryRna Structure PredictionMacromolecular MachineC-terminal HelixTranslational GtpasesStructural BiologyProtein BiosynthesisNatural SciencesMicrobial ProteomicsRibosomal P StalksMicrobiologyMedicine
Archaea and eukaryotes have ribosomal P stalks composed of anchor protein P0 and aP1 homodimers (archaea) or P1•P2 heterodimers (eukaryotes). These P stalks recruit translational GTPases to the GTPase-associated center in ribosomes to provide energy during translation. The C-terminus of the P stalk is known to selectively recognize GTPases. Here we investigated the interaction between the P stalk and elongation factor 2 by determining the structures of Pyrococcus horikoshii EF-2 (PhoEF-2) in the Apo-form, GDP-form, GMPPCP-form (GTP-form), and GMPPCP-form bound with 11 C-terminal residues of P1 (P1C11). Helical structured P1C11 binds to a hydrophobic groove between domain G and subdomain G' of PhoEF-2, where is completely different from that of aEF-1α in terms of both position and sequence, implying that such interaction characteristic may be requested by how GTPases perform their functions on the ribosome. Combining PhoEF-2 P1-binding assays with a structural comparison of current PhoEF-2 structures and molecular dynamics model of a P1C11-bound GDP form, the conformational changes of the P1C11-binding groove in each form suggest that in response to the translation process, the groove has three states: closed, open, and release for recruiting and releasing GTPases.
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VMD: Visual molecular dynamics
William Humphrey, Andrew Dalke, Klaus Schulten · Journal of Molecular Graphics · 1996 · 64.1K citations
Engineering, Visual Molecular Dynamics, Molecular Biology +5
Features and development of <i>Coot</i>
Paul Emsley, Bernhard Lohkamp, W. G. Scott et al. · Acta Crystallographica Section D Biological Crystallography · 2010 · 28.8K citations · Full text
<i>PHENIX</i>: a comprehensive Python-based system for macromolecular structure solution
Paul D. Adams, Pavel V. Afonine, G. Bunkóczi et al. · Acta Crystallographica Section D Biological Crystallography · 2010 · 24.1K citations · Full text
X-ray Crystallography, Structural Bioinformatics, Biomolecular Structure Prediction +14
<i>Phaser</i>crystallographic software
Airlie J. McCoy, Ralf W. Grosse‐Kunstleve, Paul D. Adams et al. · Journal of Applied Crystallography · 2007 · 20.6K citations · Full text