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Investigation of Binding Modes and Functional Surface of Scorpion Toxins ANEP to Sodium Channels 1.7

机译:蝎毒素ANEP与钠通道1.7的结合方式和功能表面的研究

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摘要

The depressant β toxin anti-neuroexcitation peptide (ANEP) from the Chinese scorpion Buthus martensii Karsch has analgesic activity by interacting with receptor site 4 of the voltage-gated sodium channels (VGSCs). Here, with molecular dynamics simulations, we examined the binding modes between ANEP and the site 4 of mice sodium channel 1.7 (mNav1.7), a subtype of VGSCs related to peripheral pain. Homology modeling, molecular mechanics, and molecular dynamics in the biomembrane environment were adopted. The results suggested that ANEP bound to the resting site 4 mainly by amino acid residues in the β2–β3 loop and the ‘NC’ domains, and the activate site 4 mainly by amino acid residues in the hydrophobic domain of N-groove and residues in the ‘pharmacophore’. Effects analysis of 14 mutants in the predicted functional domains of ANEP on mouse twisting models showed that the analgesic activity of mutants L15 and E24 of the ‘pharmacophore’, W36, T37, W38, and T39 forming the loop between the β2- and β3-strands and N8, V12, C60, and K64 in the NC domain increased distinctly after these residues were substituted for Ala, respectively. The binding modes and the active sites predicted were consistent with available mutagenesis data, and which is meaningful to understand the related mechanisms of ANEP for Nav1.7.
机译:来自中国蝎子Buthus martensii Karsch的抗抑郁β毒素抗神经兴奋肽通过与电压门控钠通道(VGSCs)的受体位点4相互作用而具有镇痛活性。在这里,通过分子动力学模拟,我们检查了ANEP与小鼠钠通道1.7(mNav1.7)(与周围疼痛相关的VGSC的一种)的位点4之间的结合模式。采用了生物膜环境中的同源性建模,分子力学和分子动力学。结果表明,ANEP主要通过β2-β3环的氨基酸残基和“ NC”结构域与静息位点4结合,而激活位点4主要通过N槽疏水域的氨基酸残基和残基中的残基结合。 “药效团”。对ANEP预测功能域中的14个突变体进行小鼠扭曲模型的影响分析表明,“药效团”,W36,T37,W38和T39的突变体L15和E24的镇痛活性形成了β2-和β3-之间的环。这些残基分别取代了Ala后,NC域中的N8,V12,C60和K64链和N8明显增加。结合模式和预测的活性位点与可用的诱变数据一致,这对于了解ANEP对Nav1.7的相关机制具有重要意义。

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