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Summary Expression Phenotypes Gene Literature (7) GO Terms (5) Nucleotides (46) Proteins (30) Interactants (19) Wiki
XB-GENEPAGE-490026

Papers associated with kcnj14



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Identification of a unique endoplasmic retention motif in the Xenopus GIRK5 channel and its contribution to oocyte maturation., Rangel-Garcia CI, Salvador C, Chavez-Garcia K, Diaz-Bello B, Lopez-Gonzalez Z, Vazquez-Cruz L, Angel Vazquez-Martinez J, Ortiz-Navarrete V, Riveros-Rosas H, Escobar LI., FEBS Open Bio. April 1, 2021; 11 (4): 1093-1108.            


Kir2.4 surface expression and basal current are affected by heterotrimeric G-proteins., Sulaiman P, Xu Y, Xu Y, Fina ME, Tummala SR, Ramakrishnan H, Dhingra A, Vardi N., J Biol Chem. March 8, 2013; 288 (10): 7420-9.


Impaired interaction between the slide helix and the C-terminus of Kir2.1: a novel mechanism of Andersen syndrome., Decher N, Renigunta V, Zuzarte M, Soom M, Heinemann SH, Timothy KW, Keating MT, Daut J, Sanguinetti MC, Splawski I., Cardiovasc Res. September 1, 2007; 75 (4): 748-57.


Kir2.4 and Kir2.1 K(+) channel subunits co-assemble: a potential new contributor to inward rectifier current heterogeneity., Schram G, Melnyk P, Pourrier M, Wang Z, Nattel S., J Physiol. October 15, 2002; 544 (2): 337-49.


Comparison of cloned Kir2 channels with native inward rectifier K+ channels from guinea-pig cardiomyocytes., Liu GX, Derst C, Schlichthörl G, Heinen S, Seebohm G, Brüggemann A, Kummer W, Veh RW, Daut J, Preisig-Müller R., J Physiol. April 1, 2001; 532 (Pt 1): 115-26.


Cloning and functional expression of human retinal kir2.4, a pH-sensitive inwardly rectifying K(+) channel., Hughes BA, Kumar G, Yuan Y, Swaminathan A, Yan D, Sharma A, Plumley L, Yang-Feng TL, Swaroop A., Am J Physiol Cell Physiol. September 1, 2000; 279 (3): C771-84.


Kir2.4: a novel K+ inward rectifier channel associated with motoneurons of cranial nerve nuclei., Töpert C, Döring F, Wischmeyer E, Karschin C, Brockhaus J, Ballanyi K, Derst C, Karschin A., J Neurosci. June 1, 1998; 18 (11): 4096-105.

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