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Plos One|June 19, 2013
Functional characterization of the cardiac ryanodine receptor pore-forming regionJoanne Euden, Sammy A Mason, Alan J WilliamsMolecular Pharmacology|July 9, 2014
Insights into the gating mechanism of the ryanodine-modified human cardiac Ca2+-release channel (ryanodine receptor 2)Saptarshi Mukherjee, N Lowri Thomas, Alan J WilliamsScientific Reports|October 6, 2016
Unambiguous observation of blocked states reveals altered, blocker-induced, cardiac ryanodine receptor gatingSaptarshi Mukherjee, N Lowri Thomas, Alan J WilliamsThe Journal of General Physiology|July 18, 2012
A mechanistic description of gating of the human cardiac ryanodine receptor in a regulated minimal environmentSaptarshi Mukherjee, N Lowri Thomas, Alan J WilliamsBiochemical and Biophysical Research Communications|June 8, 2002
A novel and rapid approach to isolating functional ryanodine receptorsDuncan J West, Eileen C J Smith, Alan J WilliamsBiophysical Journal|September 30, 2004
A model of the putative pore region of the cardiac ryanodine receptor channelWilliam Welch, Shana Rheault, Duncan J West, et al.FEBS Letters|February 6, 2010
Ryanodine receptor mutations in arrhythmia: The continuing mystery of channel dysfunctionN Lowri Thomas, Chloé Maxwell, Saptarshi Mukherjee, et al.Journal of Cell Science|May 26, 2006
Ryanodine receptor interaction with the SNARE-associated protein snapinSpyros Zissimopoulos, Duncan J West, Alan J Williams, et al.Biophysical Journal|January 18, 2005
Voltage-sensitive equilibrium between two states within a ryanoid-modified conductance state of the ryanodine receptor channelBhavna Tanna, William Welch, Luc Ruest, et al.The Journal of General Physiology|May 14, 2003
An anionic ryanoid, 10-O-succinoylryanodol, provides insights into the mechanisms governing the interaction of ryanoids and the subsequent altered function of ryanodine-receptor channelsBhavna Tanna, William Welch, Luc Ruest, et al.Pageof 5