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The Journal of Physiology|March 7, 2001
Alternative splicing of KCNQ2 potassium channel transcripts contributes to the functional diversity of M-currentsZ Pan, A A Selyanko, J K Hadley, et al.
British Journal of Pharmacology|March 11, 2000
Differential tetraethylammonium sensitivity of KCNQ1-4 potassium channelsJ K Hadley, M Noda, A A Selyanko, et al.
The Journal of Physiology|March 14, 2000
Inhibition of KCNQ1-4 potassium channels expressed in mammalian cells via M1 muscarinic acetylcholine receptorsA A Selyanko, J K Hadley, I C Wood, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|March 7, 2002
Dominant-negative subunits reveal potassium channel families that contribute to M-like potassium currentsA A Selyanko, P Delmas, J K Hadley, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 10, 1999
Two types of K(+) channel subunit, Erg1 and KCNQ2/3, contribute to the M-like current in a mammalian neuronal cellA A Selyanko, J K Hadley, I C Wood, et al.
Life Sciences|January 1, 1997
Muscarinic mechanisms in nerve cellsD A Brown, F C Abogadie, T G Allen, et al.
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