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Exploring the obscure profiles of pharmacological binding sites on voltage-gated sodium channels by BmK neurotoxins

机译:通过BmK神经毒素探索电压门控钠通道上药理结合位点的晦涩特征

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摘要

Diverse subtypes of voltage-gated sodium channels (VGSCs) have been found throughout tissues of the brain, muscles and the heart. Neurotoxins extracted from the venom of the Asian scorpion Buthus martensi Karsch (BmK) act as sodium channel-specific modulators and have therefore been widely used to study VGSCs. α-type neurotoxins, named BmK I, BmK αIV and BmK abT, bind to receptor site-3 on VGSCs and can strongly prolong the inactivation phase of VGSCs. In contrast, β-type neurotoxins, named BmK AS, BmK AS-1, BmK IT and BmK IT2, occupy receptor site-4 on VGSCs and can suppress peak currents and hyperpolarize the activation kinetics of sodium channels. Accumulating evidence from binding assays of scorpion neurotoxins on VGSCs, however, indicate that pharmacological sensitivity of VGSC subtypes to different modulators is much more complex than that suggested by the simple α-type and β-type neurotoxin distinction. Exploring the mechanisms of possible dynamic interactions between site 3-/4-specific modulators and region- and/or species-specific subtypes of VGSCs would therefore greatly expand our understanding of the physiological and pharmacological properties of diverse VGSCs. In this review, we discuss the pharmacological and structural diversity of VGSCs as revealed by studies exploring the binding properties and cross-competitive binding of site 3- or site 4-specific modulators in VGSC subtypes in synaptosomes from distinct tissues of diverse species.
机译:在大脑,肌肉和心脏的整个组织中都发现了电压门控钠通道(VGSC)的各种亚型。从亚洲蝎子Buthus martensi Karsch(BmK)的毒液中提取的神经毒素充当钠通道特异性调节剂,因此已被广泛用于研究VGSC。 α型神经毒素,称为BmK I,BmKαIV和BmK abT,与VGSC上的受体第3位结合,可以强烈延长VGSC的失活阶段。相反,名为BmK AS,BmK AS-1,BmK IT和BmK IT2的β型神经毒素在VGSC上占据受体位点4,可以抑制峰值电流并使钠通道的激活动力学超极化。然而,来自蝎子神经毒素在VGSC上的结合测定的越来越多的证据表明,VGSC亚型对不同调节剂的药理敏感性比简单的α型和β型神经毒素区分所暗示的更为复杂。因此,探索VGSC的位点3- / 4-特异性调节剂与区域和/或物种特异性亚型之间可能的动态相互作用的机制将极大地扩展我们对各种VGSC的生理和药理特性的理解。在这篇综述中,我们讨论了VGSC的药理学和结构多样性,这些研究揭示了VGSC亚型在不同物种的突触体中VGSC亚型中的位点3或位点4特异性调节剂的结合特性和交叉竞争性结合。

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