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Summary Expression Phenotypes Gene Literature (14) GO Terms (5) Nucleotides (95) Proteins (51) Interactants (32) Wiki
XB-GENEPAGE-973727

Papers associated with kcnip1



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Structural basis of gating modulation of Kv4 channel complexes., Kise Y, Kasuya G, Okamoto HH, Yamanouchi D, Kobayashi K, Kusakizako T, Nishizawa T, Nakajo K, Nureki O., Nature. November 1, 2021; 599 (7883): 158-164.


Kcnip1 a Ca²⁺-dependent transcriptional repressor regulates the size of the neural plate in Xenopus., Néant I, Mellström B, Gonzalez P, Naranjo JR, Moreau M, Leclerc C., Biochim Biophys Acta. September 1, 2015; 1853 (9): 2077-85.  


Functional rescue of Kv4.3 channel tetramerization mutants by KChIP4a., Liang P, Chen H, Cui Y, Lei L, Wang K., Biophys J. June 16, 2010; 98 (12): 2867-76.


Structural Insights into KChIP4a Modulation of Kv4.3 Inactivation., Liang P, Wang H, Chen H, Cui Y, Gu L, Chai J, Wang K., J Biol Chem. February 20, 2009; 284 (8): 4960-7.


Enhanced trafficking of tetrameric Kv4.3 channels by KChIP1 clamping., Cui YY, Liang P, Wang KW., Neurochem Res. October 1, 2008; 33 (10): 2078-84.


Structural basis for modulation of Kv4 K+ channels by auxiliary KChIP subunits., Wang H, Yan Y, Liu Q, Huang Y, Shen Y, Chen L, Chen Y, Yang Q, Hao Q, Wang K, Chai J., Nat Neurosci. January 1, 2007; 10 (1): 32-9.


Three-dimensional structure of the KChIP1-Kv4.3 T1 complex reveals a cross-shaped octamer., Pioletti M, Findeisen F, Hura GL, Minor DL., Nat Struct Mol Biol. November 1, 2006; 13 (11): 987-95.


Identification and characterization of small molecule modulators of KChIP/Kv4 function., Bowlby MR, Chanda P, Edris W, Hinson J, Jow F, Katz AH, Kennedy J, Krishnamurthy G, Pitts K, Ryan K, Zhang H, Greenblatt L., Bioorg Med Chem. November 15, 2005; 13 (22): 6112-9.


Functional properties of a brain-specific NH2-terminally spliced modulator of Kv4 channels., Boland LM, Jiang M, Lee SY, Fahrenkrug SC, Harnett MT, O'Grady SM., Am J Physiol Cell Physiol. July 1, 2003; 285 (1): C161-70.


KChIP1 and frequenin modify shal-evoked potassium currents in pyloric neurons in the lobster stomatogastric ganglion., Zhang Y, MacLean JN, An WF, Lanning CC, Harris-Warrick RM., J Neurophysiol. April 1, 2003; 89 (4): 1902-9.


Remodelling inactivation gating of Kv4 channels by KChIP1, a small-molecular-weight calcium-binding protein., Beck EJ, Bowlby M, An WF, Rhodes KJ, Covarrubias M., J Physiol. February 1, 2002; 538 (Pt 3): 691-706.


Elimination of fast inactivation in Kv4 A-type potassium channels by an auxiliary subunit domain., Holmqvist MH, Cao J, Hernandez-Pineda R, Jacobson MD, Carroll KI, Sung MA, Betty M, Ge P, Gilbride KJ, Brown ME, Jurman ME, Lawson D, Silos-Santiago I, Xie Y, Covarrubias M, Rhodes KJ, Distefano PS, An WF., Proc Natl Acad Sci U S A. January 22, 2002; 99 (2): 1035-40.


Different effects of the Ca(2+)-binding protein, KChIP1, on two Kv4 subfamily members, Kv4.1 and Kv4.2., Nakamura TY, Nandi S, Pountney DJ, Artman M, Rudy B, Coetzee WA., FEBS Lett. June 22, 2001; 499 (3): 205-9.


Kinetic modulation of Kv4-mediated A-current by arachidonic acid is dependent on potassium channel interacting proteins., Holmqvist MH, Cao J, Knoppers MH, Jurman ME, Distefano PS, Rhodes KJ, Xie Y, An WF., J Neurosci. June 15, 2001; 21 (12): 4154-61.

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