首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Negative-shift activation, current reduction and resurgent currents induced by beta -toxins from Centruroides scorpions in sodium channels.
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Negative-shift activation, current reduction and resurgent currents induced by beta -toxins from Centruroides scorpions in sodium channels.

机译:钠通道中 Centruroides 蝎子的β-毒素诱导的负移激活,电流减少和恢复电流。

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The beta -toxins purified from the New World scorpion venoms of the Centruroides species affect several voltage-gated sodium channels (VGSCs) and thus are essential tools not only for the discrimination of different channel sub-types but also for studying the structure-function relationship between channels and toxins. This communication reports the results obtained with four different peptides purified from three species of Centruroides scorpions and assayed on seven distinct isoforms of VGSC (Nav1.1-Nav1.7) by specific functional analysis conducted through single cell electrophysiology. The toxins studied were CssII from Centruroides suffusus suffusus, Cll1 and Cll2 from Centruroides limpidus limpidus and a novel toxin from Centruroides noxius, which was characterized for the first time here. It has 67 amino acid residues and four disulfide bridges with a molecular mass of 7626 Da. Three different functional features were identified: current reduction of macroscopic conductance, left shift of the voltage-dependent activation and induction of resurgent currents at negative voltages following brief, strong depolarizations. The isoforms which revealed to be more affected resulted to be Nav1.6>1.1>1.2 and, for the first time, a beta -toxin is here shown to induce resurgent current also in isoforms different from Nav1.6. Additionally, these results were analyzed with molecular modelling. In conclusion, although the four toxins have a high degree of identity, they display tri-modal function, each of which shows selectivity among the different sub-types of Na+-channels. Thus, they are invaluable as tools for structure-function studies of beta -toxins and offer a basis for the design of novel ion channel-specific drugs.
机译:从 Centruroides 物种的新世界蝎毒中提炼出的β毒素会影响多个电压门控钠通道(VGSC),因此它们不仅是区分不同通道亚型的重要工具,而且还是重要的工具用于研究通道与毒素之间的结构-功能关系。这份通讯报告了使用从三种种类的蝎形全蝎纯化的四种不同肽并在VGSC的七个不同同工型(Na v 1.1-Na v < /sub>1.7)通过单细胞电生理学进行的特定功能分析。研究的毒素是 Centruroides suffus suffusus 的CssII, Centruroides limpidus limpidus 的Cll1和Cll2以及 Centruroides noxius 的新型毒素。第一次来这里。它具有67个氨基酸残基和四个二硫键,分子量为7626 Da。确定了三种不同的功能特征:宏观电导的电流减小,电压依赖性激活的左移以及短暂,强烈的去极化后负电压下的再生电流的感应。发现受影响最大的亚型为Na v 1.6> 1.1> 1.2,并且首次显示β-毒素在不同于Na < sub> v 1.6。此外,这些结果用分子建模进行了分析。总之,尽管这四种毒素具有高度同一性,但它们显示出三峰功能,每一种都显示出Na + 通道不同亚型之间的选择性。因此,它们作为研究β毒素的结构功能的工具非常宝贵,并为设计新型离子通道特异性药物提供了基础。

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