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Frontiers in Physiology|July 26, 2018
Acidosis and Phosphate Directly Reduce Myosin's Force-Generating Capacity Through Distinct Molecular MechanismsMike Woodward, Edward P DeboldCytoskeleton (Hoboken, N.J.)|July 31, 2021
Myosin's powerstroke occurs prior to the release of phosphate from the active siteBrent Scott, Christopher Marang, Mike Woodward, et al.Journal of Muscle Research and Cell Motility|November 2, 2018
Acidosis affects muscle contraction by slowing the rates myosin attaches to and detaches from actinKatelyn Jarvis, Mike Woodward, Edward P Debold, et al.Biophysical Journal|November 26, 2013
Direct observation of phosphate inhibiting the force-generating capacity of a miniensemble of Myosin moleculesEdward P Debold, Sam Walcott, Mike Woodward, et al.Frontiers in Physiology|August 4, 2015
Modifications of myofilament protein phosphorylation and function in response to cardiac arrest induced in a swine modelMike Woodward, Michael J Previs, Timothy J Mader, et al.Medicine and Science in Sports and Exercise|February 15, 2012
Recent insights into the molecular basis of muscular fatigueEdward P DeboldFrontiers in Physiology|September 22, 2015
Potential molecular mechanisms underlying muscle fatigue mediated by reactive oxygen and nitrogen speciesEdward P DeboldFrontiers in Physiology|June 8, 2012
Recent insights into muscle fatigue at the cross-bridge levelEdward P DeboldCytoskeleton (Hoboken, N.J.)|March 12, 2022
Recent insights into the relative timing of myosin's powerstroke and release of phosphateEdward P DeboldBiophysical Journal|July 12, 2020
Positional Isomers of a Non-Nucleoside Substrate Differentially Affect Myosin FunctionMike Woodward, Eric Ostrander, Seung P Jeong, et al.Pageof 4