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Summary Expression Phenotypes Gene Literature (47) GO Terms (13) Nucleotides (74) Proteins (41) Interactants (173) Wiki
XB--5867970

Papers associated with kcnd3



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W-7 modulates Kv4.3: pore block and Ca2+-calmodulin inhibition., Qu YJ, Bondarenko VE, Xie C, Wang S, Awayda MS, Strauss HC, Morales MJ., Am J Physiol Heart Circ Physiol. May 1, 2007; 292 (5): H2364-77.


Diminished Kv4.2/3 but not KChIP2 levels reduce the cardiac transient outward K+ current in spontaneously hypertensive rats., Goltz D, Schultz JH, Stucke C, Wagner M, Bassalaý P, Schwoerer AP, Ehmke H, Volk T., Cardiovasc Res. April 1, 2007; 74 (1): 85-95.


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.


Regulation of Kv4.3 closed state inactivation and recovery by extracellular potassium and intracellular KChIP2b., Amadi CC, Brust RD, Skerritt MR, Campbell DL., Channels (Austin). January 1, 2007; 1 (4): 305-14.


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.


DPP10 is an inactivation modulatory protein of Kv4.3 and Kv1.4., Li HL, Qu YJ, Lu YC, Bondarenko VE, Wang S, Skerrett IM, Morales MJ., Am J Physiol Cell Physiol. November 1, 2006; 291 (5): C966-76.


KCNE3 is an inhibitory subunit of the Kv4.3 potassium channel., Lundby A, Olesen SP., Biochem Biophys Res Commun. August 4, 2006; 346 (3): 958-67.


KChIP2b modulates the affinity and use-dependent block of Kv4.3 by nifedipine., Bett GC, Morales MJ, Strauss HC, Rasmusson RL., Biochem Biophys Res Commun. February 24, 2006; 340 (4): 1167-77.


Time- and voltage-dependent components of Kv4.3 inactivation., Wang S, Bondarenko VE, Qu YJ, Bett GC, Morales MJ, Rasmusson RL, Strauss HC., Biophys J. November 1, 2005; 89 (5): 3026-41.


Functionally active t1-t1 interfaces revealed by the accessibility of intracellular thiolate groups in kv4 channels., Wang G, Shahidullah M, Rocha CA, Strang C, Pfaffinger PJ, Covarrubias M., J Gen Physiol. July 1, 2005; 126 (1): 55-69.                    


Disinactivation of N-type inactivation of voltage-gated K channels by an erbstatin analogue., Zhang ZH, Rhodes KJ, Childers WE, Argentieri TM, Wang Q., J Biol Chem. July 9, 2004; 279 (28): 29226-30.


Novel KChIP2 isoforms increase functional diversity of transient outward potassium currents., Decher N, Barth AS, Gonzalez T, Steinmeyer K, Sanguinetti MC., J Physiol. June 15, 2004; 557 (Pt 3): 761-72.


Activation properties of Kv4.3 channels: time, voltage and [K+]o dependence., Wang S, Bondarenko VE, Qu Y, Morales MJ, Rasmusson RL, Strauss HC., J Physiol. June 15, 2004; 557 (Pt 3): 705-17.


Regulation of Kv4.3 voltage-dependent gating kinetics by KChIP2 isoforms., Patel SP, Parai R, Parai R, Campbell DL., J Physiol. May 15, 2004; 557 (Pt 1): 19-41.


Differential inhibition of transient outward currents of Kv1.4 and Kv4.3 by endothelin., Hagiwara K, Nunoki K, Ishii K, Abe T, Yanagisawa T., Biochem Biophys Res Commun. October 17, 2003; 310 (2): 634-40.


Elucidating KChIP effects on Kv4.3 inactivation and recovery kinetics with a minimal KChIP2 isoform., Patel SP, Campbell DL, Strauss HC., J Physiol. November 15, 2002; 545 (1): 5-11.


Expression of voltage-dependent potassium channels in the developing visual system of Xenopus laevis., Pollock NS, Ferguson SC, McFarlane S., J Comp Neurol. October 28, 2002; 452 (4): 381-91.                


Kinetic properties of Kv4.3 and their modulation by KChIP2b., Wang S, Patel SP, Qu Y, Hua P, Strauss HC, Morales MJ., Biochem Biophys Res Commun. July 12, 2002; 295 (2): 223-9.


Heterogeneous expression of KChIP2 isoforms in the ferret heart., Patel SP, Campbell DL, Morales MJ, Strauss HC., J Physiol. March 15, 2002; 539 (Pt 3): 649-56.


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.


Remodeling of Kv4.3 potassium channel gene expression under the control of sex hormones., Song M, Helguera G, Eghbali M, Zhu N, Zarei MM, Olcese R, Toro L, Stefani E., J Biol Chem. August 24, 2001; 276 (34): 31883-90.


Kv4 channels exhibit modulation of closed-state inactivation in inside-out patches., Beck EJ, Covarrubias M., Biophys J. August 1, 2001; 81 (2): 867-83.


Regulation of KChIP2 potassium channel beta subunit gene expression underlies the gradient of transient outward current in canine and human ventricle., Rosati B, Pan Z, Lypen S, Wang HS, Cohen I, Dixon JE, McKinnon D., J Physiol. May 15, 2001; 533 (Pt 1): 119-25.


Nicotine is a potent blocker of the cardiac A-type K(+) channels. Effects on cloned Kv4.3 channels and native transient outward current., Wang H, Shi H, Zhang L, Pourrier M, Yang B, Nattel S, Wang Z., Circulation. September 5, 2000; 102 (10): 1165-71.


Cloning and expression of the human kv4.3 potassium channel., Dilks D, Ling HP, Cockett M, Sokol P, Numann R., J Neurophysiol. April 1, 1999; 81 (4): 1974-7.


Unexpected and differential effects of Cl- channel blockers on the Kv4.3 and Kv4.2 K+ channels. Implications for the study of the I(to2) current., Wang HS, Dixon JE, McKinnon D., Circ Res. November 1, 1997; 81 (5): 711-8.


Cloning, expression and CNS distribution of Kv4.3, an A-type K+ channel alpha subunit., Tsaur ML, Chou CC, Shih YH, Wang HL., FEBS Lett. January 3, 1997; 400 (2): 215-20.

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