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Scientific Reports|January 9, 2015
A conserved P-loop anchor limits the structural dynamics that mediate nucleotide dissociation in EF-TuEvan Mercier, Dylan Girodat, Hans-Joachim WiedenJournal of the American Chemical Society|May 7, 2019
Elongation Factor Tu's Nucleotide Binding Is Governed by a Thermodynamic Landscape Unique among Bacterial Translation FactorsDylan Girodat, Evan Mercier, Katherine E Gzyl, et al.Analytical Biochemistry|September 25, 2017
Streamlined purification of fluorescently labeled Escherichia coli phosphate-binding protein (PhoS) suitable for rapid-kinetics applicationsDustin D Smith, Dylan Girodat, Hans-Joachim Wieden, et al.Journal of Molecular Biology|February 17, 2020
Elongation Factor Tu Switch I Element is a Gate for Aminoacyl-tRNA SelectionDylan Girodat, Scott C Blanchard, Hans-Joachim Wieden, et al.Biosensors & Bioelectronics|January 2, 2022
Construction of a highly selective and sensitive carbohydrate-detecting biosensor utilizing Computational Identification of Non-disruptive Conjugation sites (CINC) for flexible and streamlined biosensor designDustin D Smith, Dylan Girodat, D Wade Abbott, et al.Nature Communications|September 11, 2023
Geometric alignment of aminoacyl-tRNA relative to catalytic centers of the ribosome underpins accurate mRNA decodingDylan Girodat, Hans-Joachim Wieden, Scott C Blanchard, et al.The Journal of Biological Chemistry|September 15, 2016
The C-terminal Helix of Pseudomonas aeruginosa Elongation Factor Ts Tunes EF-Tu Dynamics to Modulate Nucleotide ExchangeEvelina Ines De Laurentiis, Evan Mercier, Hans-Joachim WiedenBiophysical Journal|November 30, 2010
A combined molecular dynamics and rapid kinetics approach to identify conserved three-dimensional communication networks in elongation factor TuHans-Joachim Wieden, Evan Mercier, John Gray, et al.The Journal of Biological Chemistry|May 29, 2015
Histidine 114 Is Critical for ATP Hydrolysis by the Universally Conserved ATPase YchFKirsten S Rosler, Evan Mercier, Ian C Andrews, et al.Nucleic Acids Research|December 28, 2013
An arginine-aspartate network in the active site of bacterial TruB is critical for catalyzing pseudouridine formationJenna Friedt, Fern M V Leavens, Evan Mercier, et al.Pageof 9