Panigel Jacqueline, Cook Sean Peter
Department of Pain/Migraine Research, Merck Research Laboratories, West Point, PA 19486, USA.
J Neurogenet. 2011 Dec;25(4):134-9. doi: 10.3109/01677063.2011.629702. Epub 2011 Nov 10.
Voltage-gated sodium channels (VGSC) contribute to the initiation and propagation of action potentials within the nervous system. These channels are important targets for inhibition by several classes of drugs, including antiarrhythmics and local anesthetics. Structural and pharmacological studies have localized the binding of these drugs to a common site near the channel's intracellular pore region. Point mutations within this region disrupt local anesthetic inhibition of cardiac, CNS, and skeletal muscle VGSC subtypes. This study was designed to test whether a similar structural requirement for drug binding exists on the peripheral neuronal VGSC subtype; Na(v)1.7. In support of this hypothesis, an alanine substitution for phenylalanine at position 1737 (F1737A) in the pore lining S6 segment of domain IV in human Na(v)1.7 reduced both use- and state- dependent inhibition of the local anesthetics, lidocaine and tetracaine, by 8-21-fold. We also saw a 2-3-fold reduction in tonic inhibition with the F1737A mutant. The voltage dependence of both activation and inactivation were unaffected by the F1737A mutation, however, fast inactivation kinetics were impaired, such that a significant portion of inward current remained at the end of a 20-ms depolarization. These data suggest that F1737 forms a part of the high affinity binding of local anesthetics as well as mediating inactivation processes of neuronal Na(v)1.7 channels.
电压门控钠通道(VGSC)在神经系统动作电位的起始和传播中发挥作用。这些通道是包括抗心律失常药和局部麻醉药在内的几类药物抑制作用的重要靶点。结构和药理学研究已将这些药物的结合定位到通道细胞内孔区域附近的一个共同位点。该区域内的点突变会破坏局部麻醉药对心脏、中枢神经系统和骨骼肌VGSC亚型的抑制作用。本研究旨在测试在外周神经元VGSC亚型Na(v)1.7上是否存在类似的药物结合结构要求。支持这一假设的是,人Na(v)1.7结构域IV孔内衬S6段中第1737位苯丙氨酸被丙氨酸取代(F1737A),使局部麻醉药利多卡因和丁卡因的使用依赖性和状态依赖性抑制作用降低了8至21倍。我们还发现F1737A突变体的强直抑制作用降低了2至3倍。F1737A突变不影响激活和失活的电压依赖性,然而,快速失活动力学受损,以至于在20毫秒去极化结束时仍有很大一部分内向电流存在。这些数据表明,F1737是局部麻醉药高亲和力结合的一部分,同时介导神经元Na(v)1.7通道的失活过程。