Maertens Chantal, Cuypers Eva, Amininasab Mehriar, Jalali Amir, Vatanpour Hossein, Tytgat Jan
Laboratory of Toxicology, University of Leuven, Onderwijs and Navorsing II, Herestraat 49 - Box 922, B-3000 Leuven, Belgium.
Mol Pharmacol. 2006 Jul;70(1):405-14. doi: 10.1124/mol.106.022970. Epub 2006 Apr 26.
Voltage-gated sodium channels are essential for the propagation of action potentials in nociceptive neurons. Nav1.7 is found in peripheral sensory and sympathetic neurons and involved in short-term and inflammatory pain. Nav1.8 and Nav1.3 are major players in nociception and neuropathic pain, respectively. In our effort to identify isoform-specific and high-affinity ligands for these channels, we investigated the effects of OD1, a scorpion toxin isolated from the venom of the scorpion Odonthobuthus doriae. Nav1.3, Nav1.7, and Nav1.8 channels were coexpressed with beta1-subunits in Xenopus laevis oocytes. Na+ currents were recorded with the two-electrode voltage-clamp technique. OD1 modulates Nav1.7 at low nanomolar concentrations: 1) fast inactivation is dramatically impaired, with an EC50 value of 4.5 nM; 2) OD1 substantially increases the peak current at all voltages; and 3) OD1 induces a substantial persistent current. Nav1.8 was not affected by concentrations up to 2 microM, whereas Nav1.3 was sensitive only to concentrations higher than 100 nM. OD1 impairs the inactivation process of Nav1.3 with an EC50 value of 1127 nM. Finally, the effects of OD1 were compared with a classic alpha-toxin, AahII from Androctonus australis Hector and a classic alpha-like toxin, BmK M1 from Buthus martensii Karsch. At a concentration of 50 nM, both toxins affected Nav1.7. Nav1.3 was sensitive to AahII but not to BmK M1, whereas Nav1.8 was affected by neither toxin. In conclusion, the present study shows that the scorpion toxin OD1 is a potent modulator of Nav1.7, with a unique selectivity pattern.
电压门控钠通道对于伤害性神经元动作电位的传导至关重要。Nav1.7存在于外周感觉神经元和交感神经元中,与短期疼痛和炎症性疼痛有关。Nav1.8和Nav1.3分别是伤害感受和神经性疼痛的主要参与者。为了寻找这些通道的亚型特异性高亲和力配体,我们研究了从毒蝎奥氏钝尾蝎毒液中分离出的蝎毒素OD1的作用。Nav1.3、Nav1.7和Nav1.8通道与β1亚基在非洲爪蟾卵母细胞中共表达。采用双电极电压钳技术记录Na+电流。OD1在低纳摩尔浓度下调节Nav1.7:1)快速失活显著受损,EC50值为4.5 nM;2)OD1在所有电压下均显著增加峰值电流;3)OD1诱导出大量持续电流。Nav1.8在高达2 μM的浓度下不受影响,而Nav1.3仅对高于100 nM的浓度敏感。OD1以1127 nM的EC50值损害Nav1.3的失活过程。最后,将OD1的作用与经典的α毒素——来自澳洲杀人蝎的AahII和经典的α样毒素——来自东亚钳蝎的BmK M1进行了比较。在50 nM的浓度下,两种毒素均影响Nav1.7。Nav1.3对AahII敏感,但对BmK M1不敏感,而Nav1.8对两种毒素均无反应。总之,本研究表明蝎毒素OD1是一种有效的Nav1.7调节剂,具有独特的选择性模式。