Mayo Clinic, 200 First Street SW, Rochester, MN 55905, USA.
J Physiol. 2010 Dec 15;588(Pt 24):4969-85. doi: 10.1113/jphysiol.2010.199034. Epub 2010 Nov 1.
The voltage-sensitive sodium channel Na(v)1.5 (encoded by SCN5A) is expressed in electromechanical organs and is mechanosensitive. This study aimed to determine the mechanosensitive transitions of Na(v)1.5 at the molecular level. Na(v)1.5 was expressed in HEK 293 cells and mechanosensitivity was studied in cell-attached patches. Patch pressure up to -50 mmHg produced increases in current and large hyperpolarizing shifts of voltage dependence with graded shifts of half-activation and half-inactivation voltages (V(1/2)) by ∼0.7 mV mmHg(-1). Voltage dependence shifts affected channel kinetics by a single constant. This suggested that stretch accelerated only one of the activation transitions. Stretch accelerated voltage sensor movement, but not rate constants for gate opening and fast inactivation. Stretch also appeared to stabilize the inactivated states, since recovery from inactivation was slowed with stretch. Unitary conductance and maximum open probability were unaffected by stretch, but peak current was increased due to an increased number of active channels. Stretch effects were partially reversible, but recovery following a single stretch cycle required minutes. These data suggest that mechanical activation of Na(v)1.5 results in dose-dependent voltage dependence shifts of activation and inactivation due to mechanical modulation of the voltage sensors.
电压门控钠离子通道 Na(v)1.5(由 SCN5A 编码)在机电器官中表达,并具有机械敏感性。本研究旨在从分子水平上确定 Na(v)1.5 的机械敏感性转变。Na(v)1.5 在 HEK 293 细胞中表达,并在细胞贴附式膜片钳中研究其机械敏感性。膜片钳压力高达-50mmHg 会导致电流增加和电压依赖性的大超极化偏移,其半数激活和半数失活电压(V(1/2))的梯度偏移约为 0.7mVmmHg(-1)。电压依赖性偏移通过单个常数影响通道动力学。这表明伸展仅加速了一个激活转变。伸展加速电压传感器运动,但不影响门控开启和快速失活的速率常数。伸展似乎也稳定了失活状态,因为失活后的恢复随着伸展而减慢。单位电导和最大开放概率不受伸展影响,但由于活性通道数量增加,峰值电流增加。伸展作用部分可逆,但单次伸展循环后的恢复需要几分钟。这些数据表明,Na(v)1.5 的机械激活导致激活和失活的电压依赖性偏移呈剂量依赖性,这是由于电压传感器的机械调制所致。