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利用来自以色列金蝎的两种新毒素对蝎α样毒素组进行表征。

Characterization of scorpion alpha-like toxin group using two new toxins from the scorpion Leiurus quinquestriatus hebraeus.

作者信息

Hamon Alain, Gilles Nicolas, Sautière Pierre, Martinage Arlette, Kopeyan Charles, Ulens Chris, Tytgat Jan, Lancelin Jean-Marc, Gordon Dalia

机构信息

Laboratoire de Neurophysiologie, UPRES EA-2647, Université d'Angers, France.

出版信息

Eur J Biochem. 2002 Aug;269(16):3920-33. doi: 10.1046/j.1432-1033.2002.03065.x.

Abstract

Two novel toxins, Lqh6 and Lqh7, isolated from the venom of the scorpion Leiurus quinquestriatus hebraeus, have in their sequence a molecular signature (8Q/KPE10) associated with a recently defined group of alpha-toxins that target Na channels, namely the alpha-like toxins [reviewed in Gordon, D., Savarin, P., Gurevitz, M. & Zinn-Justin, S. (1998) J. Toxicol. Toxin Rev. 17, 131-159]. Lqh6 and Lqh7 are highly toxic to insects and mice, and inhibit the binding of alpha-toxins to cockroach neuronal membranes. Although they kill rodents by intracerebroventricular injection, they do not inhibit the binding of antimammal alpha-toxins (e.g. Lqh2) to rat brain synaptosomes, not even at high concentrations. Furthermore, in voltage-clamp experiments, rat brain Na channels IIA (rNav1.2A) expressed in Xenopus oocytes are not affected by Lqh6 nor by Lqh7 below 3 micro m. In contrast, muscular Na channels (rNav1.4 and hNav1.5) expressed in the same cells respond to nanomolar concentrations of Lqh6 and Lqh7 by slowing of Na current inactivation and a leftward shift of the peak conductance-voltage curve. The structural and pharmacological properties of the new toxins are compared to those of other scorpion alpha-toxins in order to re-examine the hallmarks previously set for the alpha-like toxin group.

摘要

从以色列金蝎毒液中分离出的两种新型毒素Lqh6和Lqh7,其序列中具有一种分子特征(8Q/KPE10),该特征与最近定义的一组靶向钠通道的α-毒素相关,即α-样毒素[见Gordon, D., Savarin, P., Gurevitz, M. & Zinn-Justin, S. (1998) J. Toxicol. Toxin Rev. 17, 131 - 159中的综述]。Lqh6和Lqh7对昆虫和小鼠具有高毒性,并抑制α-毒素与蟑螂神经元膜的结合。尽管通过脑室内注射它们能杀死啮齿动物,但即使在高浓度下,它们也不抑制抗哺乳动物α-毒素(如Lqh2)与大鼠脑突触体的结合。此外,在电压钳实验中,非洲爪蟾卵母细胞中表达的大鼠脑钠通道IIA(rNav1.2A)在3微摩尔以下不受Lqh6和Lqh7的影响。相反,在相同细胞中表达的肌肉钠通道(rNav1.4和hNav1.5)对纳摩尔浓度的Lqh6和Lqh7有反应,表现为钠电流失活减慢以及峰值电导-电压曲线向左移位。将新毒素的结构和药理学特性与其他蝎α-毒素的特性进行比较,以重新审视先前为α-样毒素组设定的特征。

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