Functional effects of KCNQ K+ channels in airway smooth muscle

被引:21
作者
Evseev, Alexey I. [1 ]
Semenov, Iurii [1 ]
Archer, Crystal R. [1 ]
Medina, Jorge L. [2 ]
Dube, Peter H. [2 ]
Shapiro, Mark S. [1 ]
Brenner, Robert [1 ]
机构
[1] Univ Texas Hlth Sci Ctr San Antonio, Dept Physiol, San Antonio, TX 78229 USA
[2] Univ Texas Hlth Sci Ctr San Antonio, Dept Microbiol, San Antonio, TX 78229 USA
关键词
KCNQ; K(v)7; airway smooth muscle; muscarinic receptors; patch-clamp electrophysiology; voltage-gated potassium channels; MUSCARINIC RECEPTOR SUBTYPES; KV7 POTASSIUM CHANNELS; DOWN-REGULATION; BETA-1; SUBUNIT; CA2+ CURRENT; TARGETS; CALCIUM; CONSTRICTION; MECHANISMS; REGULATORS;
D O I
10.3389/fphys.2013.00277
中图分类号
Q4 [生理学];
学科分类号
071003 [生理学];
摘要
KCNQ (K(v)7) channels underlie a voltage-gated K+ current best known for control of neuronal excitability, and its inhibition by G(q/11)-coupled, muscarinic signaling. Studies have indicated expression of KCNQ channels in airway smooth muscle (ASM), a tissue that is predominantly regulated by muscarinic receptor signaling. Therefore, we investigated the function of KCNQ channels in rodent ASM and their interplay with G(q/11)-coupled M-3 muscarinic receptors. Perforated-patch clamp of dissociated ASM cells detected a K+ current inhibited by the KCNQ antagonist, XE991, and augmented by the specific agonist, flupirtine. KCNQ channels begin to activate at voltages near resting potentials for ASM cells, and indeed XE991 depolarized resting membrane potentials. Muscannic receptor activation inhibited KCNQ current weakly (similar to 20%) at concentrations half-maximal for contractions. Thus, we were surprised to see that KCNQ had no affect on membrane voltage or muscle contractility following muscarinic activation. Further, M3 receptor-specific antagonist J104129 fumarate alone did not reveal KCNQ effects on muscarinic evoked depolarization or contractility. However, a role for KCNQ channels was revealed when BK-K+ channel activities are reduced. While KCNQ channels do control resting potentials, they appear to play a redundant role with BK calcium-activated K+ channels during ASM muscarinic signaling. In contrast to effect of antagonist, we observe that KCNQ agonist flupirtine caused a significant hyperpolarization and reduced contraction in vitro irrespective of muscarinic activation. Using non-invasive whole animal plethysmography, the clinically approved KCNQ agonist retigabine caused a transient reduction in indexes of airway resistance in both wild type and BK beta 1 knockout (KO) mice treated with the muscarinic agonist. These findings indicate that KCNQ channels can be recruited via agonists to oppose muscarinic evoked contractions and may be of therapeutic value as bronchodilators.
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页数:11
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