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α-型蝎毒素BmK I对在HEK293t细胞中表达的rNav1.5的电生理特性研究

Electrophysiological characterization of BmK I, an alpha-like scorpion toxin, on rNav1.5 expressed in HEK293t cells.

作者信息

Feng Xing-Hua, Chen Jue-Xu, Liu Ying, Ji Yong-Hua

机构信息

Graduate School of the Chinese Academy of Sciences, Shanghai Institute of Physiology, Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai, PR China.

出版信息

Toxicol In Vitro. 2008 Sep;22(6):1582-7. doi: 10.1016/j.tiv.2008.06.009. Epub 2008 Jun 28.

Abstract

A recent study described the pharmacological properties of BmK I, an alpha-like toxin from the Chinese scorpion Buthus martensi Karsch, on the cardiac sodium channel (hH1) expressed in Xenopus oocytes. Considering that alpha-like toxins are unique in their inability to bind to rat synaptosomes despite a high toxicity by intravenous injection, the present study investigated the pharmacological properties of BmK I on rNav1.5 expressed in a mammalian HEK293t cell line. The results include: (1) BmK I slowed and partially inhibited the inactivation of rNav1.5, produced a substantial persistent current and increased peak current (the EC(50) for increasing peak current by BmK I was 99.4+/-20.1 nM); (2) BmK I delayed the recovery of the sodium channel from inactivation; (3) after exposure to 300nM BmK I, the steady-state activation curve of rNav1.5 was negatively shifted by about 19 mV; and (4) the association of BmK I and rNav1.5 was faster than their dissociation. The results show that BmK I displayed the pharmacological characteristics of an alpha-like toxin on rNav1.5 channels expressed in HEK293t cells, and suggested that the host expression system should be taken into consideration when characterizing the pharmacological properties of toxins.

摘要

最近一项研究描述了来自中国蝎子东亚钳蝎的α-样毒素BmK I对非洲爪蟾卵母细胞中表达的心脏钠通道(hH1)的药理特性。鉴于α-样毒素尽管静脉注射毒性很高,但却无法与大鼠突触体结合,这一点很独特,本研究调查了BmK I对在哺乳动物HEK293t细胞系中表达的rNav1.5的药理特性。结果如下:(1)BmK I减缓并部分抑制了rNav1.5的失活,产生了大量的持续电流并增加了峰值电流(BmK I增加峰值电流的EC(50)为99.4±20.1 nM);(2)BmK I延迟了钠通道从失活状态的恢复;(3)暴露于300 nM BmK I后,rNav1.5的稳态激活曲线负向移动了约19 mV;(4)BmK I与rNav1.5的结合比解离更快。结果表明,BmK I在HEK293t细胞中表达的rNav1.5通道上表现出α-样毒素的药理特性,并表明在表征毒素的药理特性时应考虑宿主表达系统。

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