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在HEK-293细胞中稳定表达的Nav1.9电压依赖性钠通道的生物物理和药理学特性

Biophysical and Pharmacological Characterization of Nav1.9 Voltage Dependent Sodium Channels Stably Expressed in HEK-293 Cells.

作者信息

Lin Zhixin, Santos Sonia, Padilla Karen, Printzenhoff David, Castle Neil A

机构信息

Neuroscience and Pain Research Unit, Pfizer Inc., Durham, North Carolina, United States of America.

出版信息

PLoS One. 2016 Aug 24;11(8):e0161450. doi: 10.1371/journal.pone.0161450. eCollection 2016.

Abstract

The voltage dependent sodium channel Nav1.9, is expressed preferentially in peripheral sensory neurons and has been linked to human genetic pain disorders, which makes it target of interest for the development of new pain therapeutics. However, characterization of Nav1.9 pharmacology has been limited due in part to the historical difficulty of functionally expressing recombinant channels. Here we report the successful generation and characterization of human, mouse and rat Nav1.9 stably expressed in human HEK-293 cells. These cells exhibit slowly activating and inactivating inward sodium channel currents that have characteristics of native Nav1.9. Optimal functional expression was achieved by coexpression of Nav1.9 with β1/β2 subunits. While recombinantly expressed Nav1.9 was found to be sensitive to sodium channel inhibitors TC-N 1752 and tetracaine, potency was up to 100-fold less than reported for other Nav channel subtypes despite evidence to support an interaction with the canonical local anesthetic (LA) binding region on Domain 4 S6. Nav1.9 Domain 2 S6 pore domain contains a unique lysine residue (K799) which is predicted to be spatially near the local anesthetic interaction site. Mutation of this residue to the consensus asparagine (K799N) resulted in an increase in potency for tetracaine, but a decrease for TC-N 1752, suggesting that this residue can influence interaction of inhibitors with the Nav1.9 pore. In summary, we have shown that stable functional expression of Nav1.9 in the widely used HEK-293 cells is possible, which opens up opportunities to better understand channel properties and may potentially aid identification of novel Nav1.9 based pharmacotherapies.

摘要

电压依赖性钠通道Nav1.9优先在外周感觉神经元中表达,并与人类遗传性疼痛疾病相关联,这使其成为新型疼痛治疗药物开发的关注靶点。然而,Nav1.9药理学特性的表征受到一定限制,部分原因是重组通道功能表达在历史上存在困难。在此,我们报告了在人HEK-293细胞中稳定表达的人、小鼠和大鼠Nav1.9的成功生成及表征。这些细胞表现出缓慢激活和失活的内向钠通道电流,具有天然Nav1.9的特征。通过将Nav1.9与β1/β2亚基共表达实现了最佳功能表达。虽然发现重组表达的Nav1.9对钠通道抑制剂TC-N 1752和丁卡因敏感,但效力比其他Nav通道亚型报道的低达100倍,尽管有证据支持其与结构域4 S6上的经典局部麻醉药(LA)结合区域相互作用。Nav1.9结构域2 S6孔道结构域包含一个独特的赖氨酸残基(K799),预计其在空间上靠近局部麻醉药相互作用位点。将该残基突变为共有天冬酰胺(K799N)导致丁卡因效力增加,但TC-N 1752效力降低,表明该残基可影响抑制剂与Nav1.9孔道的相互作用。总之,我们已表明在广泛使用的HEK-293细胞中稳定功能性表达Nav1.9是可能的,这为更好地理解通道特性开辟了机会,并可能有助于鉴定基于Nav1.9的新型药物疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b2c/4996523/554b3e9d134f/pone.0161450.g001.jpg

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