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The Journal of Biological Chemistry|November 15, 1996
Phosphorylation of a K+ channel alpha subunit modulates the inactivation conferred by a beta subunit. Involvement of cytoskeletonG Levin, D Chikvashvili, D Singer-Lahat, et al.
Brain Research|September 13, 2005
Effects of Kv1.1 channel glycosylation on C-type inactivation and simulated action potentialsJhon J Sutachan, Itaru Watanabe, Jing Zhu, et al.
Brain Research|February 28, 2007
The glycosylation state of Kv1.2 potassium channels affects trafficking, gating, and simulated action potentialsItaru Watanabe, Jing Zhu, Jhon J Sutachan, et al.
FEBS Letters|September 1, 2007
A proteomic screen reveals novel Fas ligand interacting proteins within nervous system Schwann cellsPeter B Thornhill, Jason B Cohn, Gillian Drury, et al.
Neuron|November 1, 1990
Neuraminidase treatment modifies the function of electroplax sodium channels in planar lipid bilayersE Recio-Pinto, W B Thornhill, D S Duch, et al.
The Journal of Membrane Biology|October 6, 1997
K+ channel subunit isoforms with divergent carboxy-terminal sequences carry distinct membrane targeting signalsA Ponce, E Vega-Saenz de Miera, C Kentros, et al.
The Journal of Physiology|July 26, 2003
Glycosylation affects rat Kv1.1 potassium channel gating by a combined surface potential and cooperative subunit interaction mechanismItaru Watanabe, Hong-Gang Wang, Jhon J Sutachan, et al.
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