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American Journal of Physiology. Cell Physiology|July 25, 2019
Acidosis decreases the Ca2+ sensitivity of thin filaments by preventing the first actomyosin interactionMatthew Unger, Edward P Debold
American Journal of Physiology. Cell Physiology|July 29, 2024
New insights into the cellular and molecular mechanisms of skeletal muscle fatigue: the Marion J. Siegman Award LectureshipsEdward P Debold, Håkan Westerblad
Scientific Reports|May 14, 2017
The molecular basis of thin filament activation: from single molecule to muscleThomas Longyear, Sam Walcott, Edward P Debold
Biophysical Journal|September 6, 2012
Mechanical coupling between myosin molecules causes differences between ensemble and single-molecule measurementsSam Walcott, David M Warshaw, Edward P Debold
Biophysical Journal|September 20, 2005
Slip sliding away: load-dependence of velocity generated by skeletal muscle myosin molecules in the laser trapEdward P Debold, Joseph B Patlak, David M Warshaw
American Journal of Physiology. Cell Physiology|September 5, 2014
Phosphate and acidosis act synergistically to depress peak power in rat muscle fibersCassandra R Nelson, Edward P Debold, Robert H Fitts
Journal of Applied Physiology (Bethesda, Md. : 1985)|September 29, 2012
The effects of phosphate and acidosis on regulated thin-filament velocity in an in vitro motility assayEdward P Debold, Thomas J Longyear, Matthew A Turner
Frontiers in Physiology|December 12, 2025
The order of things: phosphate release or the power stroke, which does actomyosin do first?Edward P Debold, Christopher P Marang, Brent D Scott
The Journal of Biological Chemistry|July 31, 2013
Cardiac muscle activation blunted by a mutation to the regulatory component, troponin TMinae Kobayashi, Edward P Debold, Matthew A Turner, et al.
American Journal of Physiology. Regulatory, Integrative and Comparative Physiology|February 25, 2011
Phosphate enhances myosin-powered actin filament velocity under acidic conditions in a motility assayEdward P Debold, Matthew A Turner, Jordan C Stout, et al.
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