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Distinctive mechanisms of epilepsy-causing mutants discovered by measuring S4 movement in KCNQ2 channels. , Edmond MA., Elife. June 1, 2022; 11
In silico re-engineering of a neurotransmitter to activate KCNQ potassium channels in an isoform-specific manner. , Manville RW., Commun Biol. January 1, 2019; 2 401.
Negative allosteric modulation of alpha 5-containing GABAA receptors engenders antidepressant-like effects and selectively prevents age-associated hyperactivity in tau-depositing mice. , Xu NZ., Psychopharmacology (Berl). April 1, 2018; 235 (4): 1151-1161.
Mechanism of functional interaction between potassium channel Kv1.3 and sodium channel NavBeta1 subunit. , Kubota T., Sci Rep. March 28, 2017; 7 45310.
A synergistic blocking effect of Mg²⁺ and spermine on the inward rectifier K⁺ (Kir2.1) channel pore. , Huang CW., Sci Rep. January 22, 2016; 6 21493.
Molecular Cloning and Functional Expression of the Equine K+ Channel KV11.1 (Ether à Go-Go-Related/KCNH2 Gene) and the Regulatory Subunit KCNE2 from Equine Myocardium. , Pedersen PJ., PLoS One. September 4, 2015; 10 (9): e0138320.
Microtubule-associated protein tau promotes neuronal class II β-tubulin microtubule formation and axon elongation in embryonic Xenopus laevis. , Liu Y ., Eur J Neurosci. May 1, 2015; 41 (10): 1263-75.
Paxilline inhibits BK channels by an almost exclusively closed-channel block mechanism. , Zhou Y., J Gen Physiol. November 1, 2014; 144 (5): 415-40.
FAK is required for tension-dependent organization of collective cell movements in Xenopus mesendoderm. , Bjerke MA., Dev Biol. October 15, 2014; 394 (2): 340-56.
Domain-domain interactions determine the gating, permeation, pharmacology, and subunit modulation of the IKs ion channel. , Zaydman MA., Elife. March 12, 2014; 3 e03606.
Comparative expression analysis of cysteine-rich intestinal protein family members crip1, 2 and 3 during Xenopus laevis embryogenesis. , Hempel A., Int J Dev Biol. January 1, 2014; 58 (10-12): 841-9.
Asymmetric divergence in structure and function of HCN channel duplicates in Ciona intestinalis. , Jackson HA., PLoS One. January 1, 2012; 7 (11): e47590.
Identification of the pre-T-cell receptor alpha chain in nonmammalian vertebrates challenges the structure-function of the molecule. , Smelty P., Proc Natl Acad Sci U S A. November 16, 2010; 107 (46): 19991-6.
Fast and slow voltage sensor rearrangements during activation gating in Kv1.2 channels detected using tetramethylrhodamine fluorescence. , Horne AJ., J Gen Physiol. July 1, 2010; 136 (1): 83-99.
Multiple intermediate states precede pore block during N-type inactivation of a voltage-gated potassium channel. , Prince-Carter A., J Gen Physiol. July 1, 2009; 134 (1): 15-34.
Developmental regulation of central spindle assembly and cytokinesis during vertebrate embryogenesis. , Kieserman EK ., Curr Biol. January 22, 2008; 18 (2): 116-23.
Differential role of 14-3-3 family members in Xenopus development. , Lau JM., Dev Dyn. July 1, 2006; 235 (7): 1761-76.
Expression and functional characterization of the human ether-à- go-go-related gene ( HERG) K+ channel cardiac splice variant in Xenopus laevis oocytes. , Aydar E., J Membr Biol. January 1, 2006; 211 (2): 115-26.
The circadian clock-containing photoreceptor cells in Xenopus laevis express several isoforms of casein kinase I. , Constance CM ., Brain Res Mol Brain Res. May 20, 2005; 136 (1-2): 199-211.
Hysteresis in the voltage dependence of HCN channels: conversion between two modes affects pacemaker properties. , Männikkö R., J Gen Physiol. March 1, 2005; 125 (3): 305-26.
Negative charges in the DIII-DIV linker of human skeletal muscle Na+ channels regulate deactivation gating. , Groome JR ., J Physiol. April 1, 2003; 548 (Pt 1): 85-96.
Fluorescent labeling of endothelial cells allows in vivo, continuous characterization of the vascular development of Xenopus laevis. , Levine AJ., Dev Biol. February 1, 2003; 254 (1): 50-67.
Open channel block by KCB-328 [1-(2-amino-4-methanesulfonamidophenoxy)-2-[N-(3,4-dimethoxyphenethyl)-N-methylamino]ethane hydrochloride] of the heterologously expressed human ether-a- go-go-related gene K+ channels. , Park JB ., J Pharmacol Exp Ther. July 1, 2002; 302 (1): 314-9.
Cations affect the rate of gating charge recovery in wild-type and W434F Shaker channels through a variety of mechanisms. , Varga Z., J Gen Physiol. May 1, 2002; 119 (5): 467-85.
Molecular cloning of XTP, a tau-like microtubule-associated protein from Xenopus laevis tadpoles. , Olesen OF., Gene. January 23, 2002; 283 (1-2): 299-309.
Fast and slow gating relaxations in the muscle chloride channel CLC-1. , Accardi A., J Gen Physiol. September 1, 2000; 116 (3): 433-44.
Voltage-dependent inactivation of the human K+ channel KvLQT1 is eliminated by association with minimal K+ channel ( minK) subunits. , Tristani-Firouzi M., J Physiol. July 1, 1998; 510 ( Pt 1) 37-45.
Identification of regions that regulate the expression and activity of G protein-gated inward rectifier K+ channels in Xenopus oocytes. , Stevens EB., J Physiol. September 15, 1997; 503 ( Pt 3) 547-62.
Sequence and expression analysis of a Xenopus laevis cDNA which encodes a homologue of mammalian 14-3-3 zeta protein. , Kousteni S., Gene. May 6, 1997; 190 (2): 279-85.
High affinity open channel block by dofetilide of HERG expressed in a human cell line. , Snyders DJ., Mol Pharmacol. June 1, 1996; 49 (6): 949-55.
The Xenopus laevis homologue to the neuronal cyclin-dependent kinase ( cdk5) is expressed in embryos by gastrulation. , Gervasi C ., Brain Res Mol Brain Res. November 1, 1995; 33 (2): 192-200.
Intrinsic gating properties of a cloned G protein-activated inward rectifier K+ channel. , Doupnik CA., J Gen Physiol. July 1, 1995; 106 (1): 1-23.