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Membrane permeable local anesthetics modulate NaV1.5 mechanosensitivity

机译:膜渗透性局部麻醉药调节NaV1.5的机械敏感性

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摘要

Voltage-gated sodium selective ion channel NaV1.5 is expressed in the heart and the gastrointestinal tract, which are mechanically active organs. NaV1.5 is mechanosensitive at stimuli that gate other mechanosensitive ion channels. Local anesthetic and antiarrhythmic drugs act upon NaV1.5 to modulate activity by multiple mechanisms. This study examined whether NaV1.5 mechanosensitivity is modulated by local anesthetics. NaV1.5 channels wereexpressed in HEK-293 cells, and mechanosensitivity was tested in cell-attached and excised inside-out configurations. Using a novel protocol with paired voltage ladders and short pressure pulses, negative patch pressure (-30 mmHg) in both configurations produced a hyperpolarizing shift in the half-point of the voltage-dependence of activation (V1/2a) and inactivation (V1/2i) by about -10 mV. Lidocaine (50 µM) inhibited the pressure-induced shift of V1/2a but not V1/2i. Lidocaine inhibited the tonic increase in pressure-induced peak current in a use-dependence protocol, but it did not otherwise affect use-dependent block. The local anesthetic benzocaine, which does not show use-dependent block, also effectively blocked a pressure-induced shift in V1/2a. Lidocaine inhibited mechanosensitivity in NaV1.5 at the local anesthetic binding site mutated (F1760A). However, a membrane impermeable lidocaine analog QX-314 did not affect mechanosensitivity of F1760A NaV1.5 when applied from either side of the membrane. These data suggest that the mechanism of lidocaine inhibition of the pressure-induced shift in the half-point of voltage-dependence of activation is separate from the mechanisms of use-dependent block. Modulation of NaV1.5 mechanosensitivity by the membrane permeable local anesthetics may require hydrophobic access and may involve membrane-protein interactions.
机译:电压门控钠选择性离子通道NaV1.5在心脏和胃肠道中表达,它们是机械活性器官。 NaV1.5在刺激其他机械敏感离子通道的刺激下具有机械敏感性。局部麻醉药和抗心律失常药作用于NaV1.5,以多种机制调节活性。这项研究检查了NaV1.5机械敏感性是否被局部麻醉药调节。 NaV1.5通道在HEK-293细胞中表达,并在细胞附着和从内向外切割的结构中测试了机械敏感性。使用带有成对电压阶梯和短压力脉冲的新颖协议,两种配置中的负贴片压力(-30 mmHg)在激活(V1 / 2a)和失活(V1 / 2i)约-10 mV。利多卡因(50 µM)抑制了压力引起的V1 / 2a漂移,但没有抑制V1 / 2i。利多卡因在使用依赖方案中抑制了压力引起的峰值电流的强直性增加,但并未以其他方式影响使用依赖的阻滞。局麻药苯佐卡因(不显示使用依赖性阻滞剂)也有效阻滞了压力引起的V1 / 2a移位。利多卡因在NaV1.5突变的局部麻醉结合位点(F1760A)上抑制了机械敏感性。然而,当从膜的任一侧施用时,膜不可渗透的利多卡因类似物QX-314不会影响F1760A NaV1.5的机械敏感性。这些数据表明,利多卡因抑制激活电压依赖性半点中的压力引起的移位的机制与使用依赖性阻断的机制是分开的。膜可渗透的局部麻醉药对NaV1.5机械敏感性的调节可能需要疏水通路,并且可能涉及膜-蛋白相互作用。

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