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CFTR 抑制剂 GlyH-101 对心肌离子通道电流的调制作用。

Cardiac ion channel current modulation by the CFTR inhibitor GlyH-101.

机构信息

Cardiovascular Research Laboratories, School of Physiology and Pharmacology and Bristol Heart Institute, University of Bristol, Bristol BS8 1TD, UK.

出版信息

Biochem Biophys Res Commun. 2011 Apr 29;408(1):12-7. doi: 10.1016/j.bbrc.2011.03.089. Epub 2011 Mar 31.

Abstract

The role in the heart of the cardiac isoform of the cystic fibrosis transmembrane conductance regulator (CFTR), which underlies a protein kinase A-dependent Cl(-) current (I(Cl.PKA)) in cardiomyocytes, remains unclear. The identification of a CFTR-selective inhibitor would provide an important tool for the investigation of the contribution of CFTR to cardiac electrophysiology. GlyH-101 is a glycine hydrazide that has recently been shown to block CFTR channels but its effects on cardiomyocytes are unknown. Here the action of GlyH-101 on cardiac I(Cl.PKA) and on other ion currents has been established. Whole-cell patch-clamp recordings were made from rabbit isolated ventricular myocytes. GlyH-101 blocked I(Cl.PKA) in a concentration- and voltage-dependent fashion (IC(50) at +100 mV=0.3 ± 1.5 μM and at -100 mV=5.1 ± 1.3 μM). Woodhull analysis suggested that GlyH-101 blocks the open pore of cardiac CFTR channels at an electrical distance of 0.15 ± 0.03 from the external membrane surface. A concentration of GlyH-101 maximally effective against I(Cl.PKA) (30 μM) was tested on other cardiac ion currents. Inward current at -120 mV, comprised predominantly of the inward-rectifier background K(+) current, I(K1), was reduced by ∼43% (n=5). Under selective recording conditions, the Na(+) current (I(Na)) was markedly inhibited by GlyH-101 over the entire voltage range (with a fractional block at -40 mV of ∼82%; n=8). GlyH-101 also produced a voltage-dependent inhibition of L-type Ca(2+) channel current (I(Ca,L)); fractional block at +10 mV of ∼49% and of ∼28% at -10 mV; n=11, with a ∼-3 mV shift in the voltage-dependence of I(Ca,L) activation. Thus, this study demonstrates for the first time that GlyH-101 blocks cardiac I(Cl.PKA) channels in a similar fashion to that reported for recombinant CFTR. However, inhibition of other cardiac conductances may limit its use as a CFTR-selective blocker in the heart.

摘要

心脏型囊性纤维化跨膜电导调节因子(CFTR)异构体在心肌细胞中构成蛋白激酶 A 依赖性氯离子电流(I(Cl.PKA))的作用尚不清楚。CFTR 选择性抑制剂的鉴定将为研究 CFTR 对心脏电生理学的贡献提供重要工具。GlyH-101 是一种甘氨酸酰肼,最近已被证明可阻断 CFTR 通道,但对心肌细胞的作用尚不清楚。本文建立了 GlyH-101 对心脏 I(Cl.PKA)和其他离子电流的作用。采用兔离体心室肌细胞全细胞膜片钳记录。GlyH-101 以浓度和电压依赖性方式阻断 I(Cl.PKA)(在+100 mV 时 IC(50)=0.3±1.5 μM,在-100 mV 时 IC(50)=5.1±1.3 μM)。Woodhull 分析表明,GlyH-101 阻断位于细胞膜外表面 0.15±0.03 处的心脏 CFTR 通道的开放孔。在最大程度上抑制 I(Cl.PKA)(30 μM)的 GlyH-101 浓度作用于其他心脏离子电流。在-120 mV 的内向电流中,主要由内向整流背景 K(+)电流 I(K1)组成,被抑制约 43%(n=5)。在选择性记录条件下,GlyH-101 在整个电压范围内显著抑制钠电流(I(Na))(在-40 mV 时的分数阻断约为 82%;n=8)。GlyH-101 还产生电压依赖性抑制 L 型钙电流(I(Ca,L));在+10 mV 时的分数阻断约为 49%,在-10 mV 时的分数阻断约为 28%;n=11,I(Ca,L)激活的电压依赖性有大约-3 mV 的偏移。因此,本研究首次证明 GlyH-101 以与报道的重组 CFTR 相似的方式阻断心脏 I(Cl.PKA)通道。然而,对其他心脏电导的抑制可能会限制其在心脏中作为 CFTR 选择性阻断剂的使用。

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