Amanda H. Lewis

Affiliations: 
Duke University, Durham, NC 
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"Amanda Lewis"
Mean distance: 15.21 (cluster 6)
 
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Publications

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Young MN, Sindoni MJ, Lewis AH, et al. (2023) The energetics of rapid cellular mechanotransduction. Proceedings of the National Academy of Sciences of the United States of America. 120: e2215747120
Young M, Lewis AH, Grandl J. (2022) Physics of mechanotransduction by Piezo ion channels. The Journal of General Physiology. 154
Lewis AH, Grandl J. (2021) Piezo1 ion channels inherently function as independent mechanotransducers. Elife. 10
Lewis AH, Grandl J. (2021) Stretch and poke stimulation for characterizing mechanically activated ion channels. Methods in Enzymology. 654: 225-253
Lewis AH, Grandl J. (2020) Inactivation Kinetics and Mechanical Gating of Piezo1 Ion Channels Depend on Subdomains within the Cap. Cell Reports. 30: 870-880.e2
Wu J, Young M, Lewis AH, et al. (2017) Inactivation of Mechanically Activated Piezo1 Ion Channels Is Determined by the C-Terminal Extracellular Domain and the Inner Pore Helix. Cell Reports. 21: 2357-2366
Wu J, Young M, Lewis AH, et al. (2017) Inactivation of Mechanically Activated Piezo1 Ion Channels Is Determined by the C-Terminal Extracellular Domain and the Inner Pore Helix. Cell Reports. 21: 2357-2366
Wu J, Young M, Lewis AH, et al. (2017) Inactivation of Mechanically Activated Piezo1 Ion Channels Is Determined by the C-Terminal Extracellular Domain and the Inner Pore Helix. Cell Reports. 21: 2357-2366
Lewis AH, Cui AF, McDonald MF, et al. (2017) Transduction of Repetitive Mechanical Stimuli by Piezo1 and Piezo2 Ion Channels. Cell Reports. 19: 2572-2585
Dubin AE, Murthy S, Lewis AH, et al. (2017) Endogenous Piezo1 Can Confound Mechanically Activated Channel Identification and Characterization. Neuron. 94: 266-270.e3
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