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Bile acids inhibit human purinergic receptor P2X4 in a heterologous expression system. , Ilyaskin AV., J Gen Physiol. June 3, 2019; 151 (6): 820-833.
A valve-like mechanism controls desensitization of functional mammalian isoforms of acid-sensing ion channels. , Wu Y., Elife. May 2, 2019; 8
Functional features of the "finger" domain of the DEG/ENaC channels MEC-4 and UNC-8. , Matthewman C., Am J Physiol Cell Physiol. August 1, 2018; 315 (2): C155-C163.
Molecular basis of inhibition of acid sensing ion channel 1A by diminazene. , Krauson AJ., PLoS One. May 15, 2018; 13 (5): e0196894.
Dimerization of the voltage-sensing phosphatase controls its voltage-sensing and catalytic activity. , Rayaprolu V., J Gen Physiol. May 7, 2018; 150 (5): 683-696.
The ASIC3/P2X3 cognate receptor is a pain-relevant and ligand-gated cationic channel. , Stephan G., Nat Commun. April 10, 2018; 9 (1): 1354.
A selectivity filter at the intracellular end of the acid-sensing ion channel pore. , Lynagh T., Elife. May 12, 2017; 6
Bile acids potentiate proton-activated currents in Xenopus laevis oocytes expressing human acid-sensing ion channel ( ASIC1a). , Ilyaskin AV., Physiol Rep. February 1, 2017; 5 (3):
Xenopus borealis as an alternative source of oocytes for biophysical and pharmacological studies of neuronal ion channels. , Cristofori-Armstrong B., Sci Rep. January 12, 2015; 5 14763.
The comprehensive analysis of DEG/ENaC subunits in Hydra reveals a large variety of peptide-gated channels, potentially involved in neuromuscular transmission. , Assmann M., BMC Biol. October 14, 2014; 12 84.
Intersubunit conformational changes mediate epithelial sodium channel gating. , Collier DM., J Gen Physiol. October 1, 2014; 144 (4): 337-48.
The bile acid-sensitive ion channel (BASIC) is activated by alterations of its membrane environment. , Schmidt A., PLoS One. January 1, 2014; 9 (10): e111549.
The Drosophila gene CheB42a is a novel modifier of Deg/ENaC channel function. , Ben-Shahar Y., PLoS One. February 2, 2010; 5 (2): e9395.
The tarantula toxin psalmotoxin 1 inhibits acid-sensing ion channel ( ASIC) 1a by increasing its apparent H+ affinity. , Chen X., J Gen Physiol. July 1, 2005; 126 (1): 71-9.
Identification of the Ca2+ blocking site of acid-sensing ion channel ( ASIC) 1: implications for channel gating. , Paukert M., J Gen Physiol. October 1, 2004; 124 (4): 383-94.
Single channel properties of rat acid-sensitive ion channel-1alpha, -2a, and -3 expressed in Xenopus oocytes. , Zhang P., J Gen Physiol. October 1, 2002; 120 (4): 553-66.
Single-channel properties of recombinant acid-sensitive ion channels formed by the subunits ASIC2 and ASIC3 from dorsal root ganglion neurons expressed in Xenopus oocytes. , Zhang P., J Gen Physiol. June 1, 2001; 117 (6): 563-72.
On the molecular basis of ion permeation in the epithelial Na+ channel. , Kellenberger S., J Gen Physiol. July 1, 1999; 114 (1): 13-30.