Stretch-activated two-pore-domain (K2P) potassium channels in the heart: Focus on atrial fibrillation and heart failure

机械敏感通道 心力衰竭 内科学 心房颤动 下调和上调 钾通道 内分泌学 心脏病学 信使核糖核酸 心脏病 医学 化学 离子通道 受体 生物化学 基因
作者
Constanze Schmidt,Felix Wiedmann,Stefan M. Kallenberger,Antonius Ratte,Jan S. Schulte,Beatrix Scholz,Frank U. Müller,Niels Voigt,Maria-Patapia Zafeiriou,Joachim R. Ehrlich,U. Tochtermann,Gábor Veres,Arjang Ruhparwar,Matthias Karck,Hugo A. Katus,Dierk Thomas
出处
期刊:Progress in Biophysics & Molecular Biology [Elsevier]
卷期号:130: 233-243 被引量:42
标识
DOI:10.1016/j.pbiomolbio.2017.05.004
摘要

Two-pore-domain potassium (K2P) channels modulate cellular excitability. The significance of stretch-activated cardiac K2P channels (K2P2.1, TREK-1, KCNK2; K2P4.1, TRAAK, KCNK4; K2P10.1, TREK-2, KCNK10) in heart disease has not been elucidated in detail. The aim of this work was to assess expression and remodeling of mechanosensitive K2P channels in atrial fibrillation (AF) and heart failure (HF) patients in comparison to murine models. Cardiac K2P channel levels were quantified in atrial (A) and ventricular (V) tissue obtained from patients undergoing open heart surgery. In addition, control mice and mouse models of AF (cAMP-response element modulator (CREM)-IbΔC-X transgenic animals) or HF (cardiac dysfunction induced by transverse aortic constriction, TAC) were employed. Human and murine KCNK2 displayed highest mRNA abundance among mechanosensitive members of the K2P channel family (V > A). Disease-associated K2P2.1 remodeling was studied in detail. In patients with impaired left ventricular function, atrial KCNK2 (K2P2.1) mRNA and protein expression was significantly reduced. In AF subjects, downregulation of atrial and ventricular KCNK2 (K2P2.1) mRNA and protein levels was observed. AF-associated suppression of atrial Kcnk2 (K2P2.1) mRNA and protein was recapitulated in CREM-transgenic mice. Ventricular Kcnk2 expression was not significantly altered in mouse models of disease. In conclusion, mechanosensitive K2P2.1 and K2P10.1 K+ channels are expressed throughout the heart. HF- and AF-associated downregulation of KCNK2 (K2P2.1) mRNA and protein levels suggest a mechanistic contribution to cardiac arrhythmogenesis.
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