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对来自阿曼多氏肥尾蝎毒液的三种毒素的全面表征。

Full characterization of three toxins from the Androctonus amoreuxi scorpion venom.

作者信息

Abbas Najwa, Legros Christian, Ceard Brigitte, Belghazi Maya, Hamon Alain, Bougis Pierre E, Martin-Eauclaire Marie-France

机构信息

CNRS UMR 6231, CRN2M and CAPM, Université de la Méditerranée et Université Paul Cézanne. Faculté de Médecine - Secteur Nord, CS80011, Bd Pierre Dramard, 13344 Marseille Cedex 15, France.

出版信息

Toxicon. 2009 Sep 15;54(4):460-70. doi: 10.1016/j.toxicon.2009.05.020. Epub 2009 May 30.

Abstract

In this study, we have characterized the immunological and pharmacological properties of the three major alpha-type toxins from the scorpion Androctonus amoreuxi, AamH1, AamH2 and AamH3, which were previously described as putative toxins from cDNAs [Chen, T. et al., 2003. Regul. Pept. 115, 115-121]. The immunological tests (ELISA, RIA) have demonstrated that AamH1, AamH2 and AamH3 belong to the immunological groups 3 and 4 of alpha-type toxins. Analysis of the three toxin effects on currents through rat brain (rNav1.2), rat muscle (rNav1.4) and Drosophila (DmNav1) sodium channels expressed in Xenopus oocytes revealed that AamH1 and AamH2, but not AamH3, have anti-insect and anti-mammal activities and can be classified as alpha-like toxins. While AamH1 removes fast inactivation only in neuronal rNav1.2 channel and has no effect on muscular rNav1.4 channel, AamH2 affects both neuronal rNav1.2 and muscular rNav1.4 channels. AamH3 was lethal to mice by intracerebroventricular injection despite its lack of activity on the neuronal rNav1.2 channel. Finally, we have shown that the A. amoreuxi venom was better neutralized by the antiserum raised against the venom of Buthus occitanus tunetanus than by the antisera raised against scorpion venoms from the same genus Androctonus.

摘要

在本研究中,我们已对来自蝎子安氏钳蝎(Androctonus amoreuxi)的三种主要α型毒素AamH1、AamH2和AamH3的免疫学和药理学特性进行了表征,它们先前被描述为来自cDNA的假定毒素[Chen, T.等人,2003年。调节肽。115, 115 - 121]。免疫学检测(ELISA、RIA)表明,AamH1、AamH2和AamH3属于α型毒素的免疫学第3和第4组。对这三种毒素对非洲爪蟾卵母细胞中表达的大鼠脑(rNav1.2)、大鼠肌肉(rNav1.4)和果蝇(DmNav1)钠通道电流的影响分析表明,AamH1和AamH2具有抗昆虫和抗哺乳动物活性,可归类为α样毒素,而AamH3没有。虽然AamH1仅消除神经元rNav1.2通道中的快速失活,对肌肉rNav1.4通道无影响,但AamH2对神经元rNav1.2和肌肉rNav1.4通道均有影响。尽管AamH3对神经元rNav1.2通道缺乏活性,但通过脑室内注射对小鼠具有致死性。最后,我们已经表明,与针对同一属的蝎子毒液(安氏钳蝎)产生的抗血清相比,安氏钳蝎毒液被针对北非黑肥尾蝎(Buthus occitanus tunetanus)毒液产生的抗血清更好地中和。

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