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Plant Signaling & Behavior|May 15, 2012
Plastids and pathogens: mechanosensitive channels and survival in a hypoosmotic worldKira M Veley, Elizabeth S HaswellChannels (Austin, Tex.)|September 29, 2020
Charged pore-lining residues are required for normal channel kinetics in the eukaryotic mechanosensitive ion channel MSL1Angela M Schlegel, Elizabeth S HaswellMethods in Cell Biology|September 8, 2020
Analyzing plant mechanosensitive ion channels expressed in giant E. coli spheroplasts by single-channel patch-clamp electrophysiologyAngela M Schlegel, Elizabeth S HaswellCurrent Biology : CB|January 13, 2006
MscS-like proteins control plastid size and shape in Arabidopsis thalianaElizabeth S Haswell, Elliot M MeyerowitzPlant & Cell Physiology|March 25, 2017
The Tension-sensitive Ion Transport Activity of MSL8 is Critical for its Function in Pollen Hydration and GerminationEric S Hamilton, Elizabeth S HaswellPlos One|July 7, 2012
Functional analysis of conserved motifs in the mechanosensitive channel homolog MscS-Like2 from Arabidopsis thalianaGregory S Jensen, Elizabeth S HaswellCurrent Biology : CB|February 26, 2020
Plant Biomechanics: No Pain, No Gain for Birch Tree StemsAngela M Schlegel, Elizabeth S HaswellPlant Reproduction|November 3, 2025
Mechanosensitive ion channel MSL8 is required for oscillatory growth and cell wall dynamics in Arabidopsis pollen tubesJoshua H Coomey, Elizabeth S HaswellJournal of Experimental Botany|April 14, 2020
Interactions between the N- and C-termini of the mechanosensitive ion channel AtMSL10 are consistent with a three-step mechanism for activationDebarati Basu, Jennette M Shoots, Elizabeth S HaswellBiochemistry|August 17, 2013
MscS-like mechanosensitive channels in plants and microbesMargaret E Wilson, Grigory Maksaev, Elizabeth S HaswellPageof 6