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Subtype Specificity of β-Toxin Tf1a from Tityus fasciolatus in Voltage Gated Sodium Channels

机译:电压门控钠通道中筋膜ity的β-毒素Tf1a亚型特异性

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摘要

Scorpion venoms are a complex mixture of components. Among them the most important are peptides, which presents the capacity to interact and modulate several ion channel subtypes, including voltage-gated sodium channels (NaV). Screening the activity of scorpion toxins on different subtypes of NaV reveals the scope of modulatory activity and, in most cases, low channel selectivity. Until now there are approximately 60 scorpion toxins experimentally assayed on NaV channels. However, the molecular bases of interaction between scorpion toxins and NaV channels are not fully elucidated. The activity description of new scorpion toxins is crucial to enhance the predictive strength of the structural–function correlations of these NaV modulatory molecules. In the present work a new scorpion toxin (Tf1a) was purified from Tityus fasciolatus venom by RP-HPLC, and characterized using electrophysiological experiments on different types of voltage-gated sodium channels. Tf1a was able to modify the normal function of NaV tested, showing to be a typical β-NaScTx. Tf1a also demonstrated an unusual capability to alter the kinetics of NaV1.5.
机译:蝎毒是成分的复杂混合物。其中最重要的是肽,它具有相互作用和调节几种离子通道亚型的能力,包括电压门控钠通道(NaV)。筛选蝎毒对NaV的不同亚型的活性揭示了调节活性的范围,并且在大多数情况下,其通道选择性很低。到现在为止,在NaV通道上实验测定了大约60种蝎子毒素。但是,蝎毒素和NaV通道之间相互作用的分子基础尚未完全阐明。新蝎毒素的活性描述对于增强这些NaV调节分子的结构-功能相关性的预测强度至关重要。在目前的工作中,通过RP-HPLC从筋膜蛇毒中纯化出一种新的蝎毒素(Tf1a),并使用电生理实验对不同类型的电压门控钠通道进行了表征。 Tf1a能够修饰NaV的正常功能,显示是典型的β-NaScTx。 Tf1a还显示出改变NaV1.5动力学的非凡能力。

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