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Characterization of selectivity and pharmacophores of type 1 sea anemone toxins by screening seven Na v sodium channel isoforms

机译:通过筛选7种Na v钠通道同工型表征1型海葵毒素的选择性和药效基团

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During their evolution, animals have developed a set of cysteine-rich peptides capable of binding various extracellular sites of voltage-gated sodium channels (VGSC). Sea anemone toxins that target VGSCs delay their inactivation process, but little is known about their selectivities. Here we report the investigation of three native type 1 toxins (CGTX-II, δ-AITX-Bcg1a and δ-AITX-Bcg1b) purified from the venom of Bunodosoma cangicum. Both δ-AITX-Bcg1a and δ-AITX-Bcg1b toxins were fully sequenced. The three peptides were evaluated by patch-clamp technique among Nav1.1-1.7 isoforms expressed in mammalian cell lines, and their preferential targets are Na v1.5 1.6 1.1. We also evaluated the role of some supposedly critical residues in the toxins which would interact with the channels, and observed that some substitutions are not critical as expected. In addition, CGTX-II and δ-AITX-Bcg1a evoke different shifts in activation/inactivation Boltzmann curves in Nav1.1 and 1.6. Moreover, our results suggest that the interaction region between toxins and VGSCs is not restricted to the supposed site 3 (S3-S4 linker of domain IV), and this may be a consequence of distinct surface of contact of each peptide vs. targeted channel. Our data suggest that the contact surfaces of each peptide may be related to their surface charges, as CGTX-II is more positive than δ-AITX-Bcg1a and δ-AITX-Bcg1b.
机译:在它们的进化过程中,动物已经开发出一套能够结合电压门控钠通道(VGSC)的各种胞外位点的富含半胱氨酸的肽。靶向VGSC的海葵毒素会延迟其失活过程,但对其选择性知之甚少。在这里,我们报告了三种从Canonum cancanum毒液中纯化的天然1型毒素(CGTX-II,δ-AITX-Bcg1a和δ-AITX-Bcg1b)的调查。 δ-AITX-Bcg1a和δ-AITX-Bcg1b毒素均已完全测序。通过膜片钳技术在哺乳动物细胞系中表达的Nav1.1-1.7亚型中评估了这三种肽,它们的优先靶点是Na v1.5> 1.6> 1.1。我们还评估了毒素中一些可能与通道相互作用的关键残基的作用,并观察到某些取代不是预期的关键。此外,CGTX-II和δ-AITX-Bcg1a在Nav1.1和1.6中引起了激活/失活Boltzmann曲线的不同变化。此外,我们的结果表明,毒素与VGSC之间的相互作用区域不限于假定的位点3(域IV的S3-S4接头),这可能是每种肽与目标通道接触表面不同的结果。我们的数据表明,每种肽的接触表面可能与其表面电荷有关,因为CGTX-II比δ-AITX-Bcg1a和δ-AITX-Bcg1b更正。

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