Wang Jun, Xu Hongtao, Sun Xiqing, Niu Weizhen
Department of Physiology, Capital University of Medical Sciences, Beijing, People's Republic of China.
Chin J Physiol. 2006 Jun 30;49(3):126-31.
The present study was designed to observe the properties of swelling-activated chloride channel (ICl.swell) in mouse cardiac myocytes using patch clamp techniques. In whole-cell recordings, hypotonic solution activated a chloride current that exhibited outward rectification, weak voltage-dependent inactivation, and anion selectivity with permeability sequence of I- > Br- > Cl-. The current was sensitive to Cl- channel blockers tamoxifen, NPPB and DIDS. In single-channel recordings, cell swelling activated a single channel current which showed outward rectification with open probability of 0.76 +/- 0.08 and conductance of 38.1 +/- 2.5 pS at +100 mV under [Cl-] symmetrical condition. I-V relation revealed the reversal potential as expected for a Cl(-)-selective channel. These results suggested that in mouse cardiac myocytes, swelling-activated, outward rectifying chloride channel with a single channel conductance of 38.1 +/- 2.5 pS (at +100 mV under [Cl-] symmetrical condition) underlies the volume regulatory Cl- channel.
本研究旨在运用膜片钳技术观察小鼠心肌细胞中肿胀激活氯离子通道(ICl.swell)的特性。在全细胞记录中,低渗溶液激活了一种氯离子电流,该电流表现出外向整流、弱电压依赖性失活以及阴离子选择性,其通透性顺序为I- > Br- > Cl-。该电流对氯离子通道阻滞剂他莫昔芬、NPPB和DIDS敏感。在单通道记录中,细胞肿胀激活了一种单通道电流,在[Cl-]对称条件下,+100 mV时该电流表现出外向整流,开放概率为0.76±0.08,电导为38.1±2.5 pS。电流-电压关系显示出如氯离子选择性通道所预期的反转电位。这些结果表明,在小鼠心肌细胞中,肿胀激活的、外向整流的氯离子通道,其单通道电导为38.1±2.5 pS(在[Cl-]对称条件下,+100 mV时)构成了容积调节性氯离子通道的基础。