Interaction of KCNE subunits with the KCNQ1 K+ channel pore
Panaghie, Gianina, Tai, Kwok‐Keung, Abbott, Geoffrey W.
Published in The Journal of physiology (01.02.2006)
Published in The Journal of physiology (01.02.2006)
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KCNQ1, KCNE2, and Na+-coupled solute transporters form reciprocally regulating complexes that affect neuronal excitability
Abbott, Geoffrey W, Tai, Kwok-Keung, Neverisky, Daniel L, Hansler, Alex, Hu, Zhaoyang, Roepke, Torsten K, Lerner, Daniel J, Chen, Qiuying, Liu, Li, Zupan, Bojana, Toth, Miklos, Haynes, Robin, Huang, Xiaoping, Demirbas, Didem, Buccafusca, Roberto, Gross, Steven S, Kanda, Vikram A, Berry, Gerard T
Published in Science signaling (04.03.2014)
Published in Science signaling (04.03.2014)
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Voltage-Dependent C-Type Inactivation in a Constitutively Open K+ Channel
Panaghie, Gianina, Purtell, Kerry, Tai, Kwok-Keung, Abbott, Geoffrey W.
Published in Biophysical journal (15.09.2008)
Published in Biophysical journal (15.09.2008)
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Post-hypoxic animal model of myoclonus
Tai, Kwok-Keung, Bhidayasiri, Roongroj, Truong, Daniel D
Published in Parkinsonism & related disorders (01.10.2007)
Published in Parkinsonism & related disorders (01.10.2007)
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MinK Potassium Channels Are Heteromultimeric Complexes
Tai, Kwok-Keung, Wang, Ke-Wei, Goldstein, Steve A.N.
Published in The Journal of biological chemistry (17.01.1997)
Published in The Journal of biological chemistry (17.01.1997)
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MinK Residues Line a Potassium Channel Pore
Wang, Ke-Wei, Tai, Kwok-Keung, Goldstein, Steve A.N
Published in Neuron (Cambridge, Mass.) (01.03.1996)
Published in Neuron (Cambridge, Mass.) (01.03.1996)
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