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The Journal of General Physiology|December 1, 2005
Electrostatics in the cytoplasmic pore produce intrinsic inward rectification in kir2.1 channelsShih-Hao Yeh, Hsueh-Kai Chang, Ru-Chi Shieh
Scientific Reports|December 19, 2015
Mechanism for attenuated outward conductance induced by mutations in the cytoplasmic pore of Kir2.1 channelsHsueh-Kai Chang, Masayuki Iwamoto, Shigetoshi Oiki, et al.
Pflugers Archiv : European Journal of Physiology|November 14, 2016
Activation of the Ca2+-sensing receptors increases currents through inward rectifier K+ channels via activation of phosphatidylinositol 4-kinaseChung-Hung Liu, Hsueh-Kai Chang, Sue-Ping Lee, et al.
Biochimica Et Biophysica Acta|November 26, 2008
K+ binding in the G-loop and water cavity facilitates Ba2+ movement in the Kir2.1 channelHsueh-Kai Chang, Laurence J Marton, Kuo Kan Liang, et al.
Protein Science : a Publication of the Protein Society|January 16, 2002
Solution structure of a K(+)-channel blocker from the scorpion Tityus cambridgeiIren Wang, Shih-Hsiung Wu, Hsueh-Kai Chang, et al.
The Journal of Biological Chemistry|May 25, 2010
The extracellular K+ concentration dependence of outward currents through Kir2.1 channels is regulated by extracellular Na+ and Ca2+Hsueh-Kai Chang, Jay-Ron Lee, Tai-An Liu, et al.
The Journal of General Physiology|December 16, 2015
Gating the glutamate gate of CLC-2 chloride channel by pore occupancyJosé J De Jesús-Pérez, Alejandra Castro-Chong, Ru-Chi Shieh, et al.
The Journal of Biological Chemistry|June 27, 2009
Oligomerization is crucial for the stability and function of heme oxygenase-1 in the endoplasmic reticulumHsuan-Wen Hwang, Jay-Ron Lee, Kuan-Yu Chou, et al.
Cell Reports|September 15, 2015
Defined MicroRNAs Induce Aspects of Maturation in Mouse and Human Embryonic-Stem-Cell-Derived CardiomyocytesDesy S Lee, Jyh-Hong Chen, David J Lundy, et al.
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