首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Tarantula Huwentoxin-IV Inhibits Neuronal Sodium Channels by Binding to Receptor Site 4 and Trapping the Domain II Voltage Sensor in the Closed Configuration
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Tarantula Huwentoxin-IV Inhibits Neuronal Sodium Channels by Binding to Receptor Site 4 and Trapping the Domain II Voltage Sensor in the Closed Configuration

机译:狼蛛Huwentoxin-IV通过结合到神经元钠通道 受体位点4和将II型域电压传感器陷于封闭状态 组态

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摘要

Peptide toxins with high affinity, divergent pharmacological functions, and isoform-specific selectivity are powerful tools for investigating the structure-function relationships of voltage-gated sodium channels (VGSCs). Although a number of interesting inhibitors have been reported from tarantula venoms, little is known about the mechanism for their interaction with VGSCs. We show that huwentoxin-IV (HWTX-IV), a 35-residue peptide from tarantula Ornithoctonus huwena venom, preferentially inhibits neuronal VGSC subtypes rNav1.2, rNav1.3, and hNav1.7 compared with muscle subtypes rNav1.4 and hNav1.5. Of the five VGSCs examined, hNav1.7 was most sensitive to HWTX-IV (IC50 ∼ 26 nm). Following application of 1 μm HWTX-IV, hNav1.7 currents could only be elicited with extreme depolarizations (>+100 mV). Recovery of hNav1.7 channels from HWTX-IV inhibition could be induced by extreme depolarizations or moderate depolarizations lasting several minutes. Site-directed mutagenesis analysis indicated that the toxin docked at neurotoxin receptor site 4 located at the extracellular S3-S4 linker of domain II. Mutations E818Q and D816N in hNav1.7 decreased toxin affinity for hNav1.7 by ∼300-fold, whereas the reverse mutations in rNav1.4 (N655D/Q657E) and the corresponding mutations in hNav1.5 (R812D/S814E) greatly increased the sensitivity of the muscle VGSCs to HWTX-IV. Our data identify a novel mechanism for sodium channel inhibition by tarantula toxins involving binding to neurotoxin receptor site 4. In contrast to scorpion β-toxins that trap the IIS4 voltage sensor in an outward configuration, we propose that HWTX-IV traps the voltage sensor of domain II in the inward, closed configuration.
机译:具有高亲和力,不同药理功能和同工型特异性选择性的肽毒素是研究电压门控钠通道(VGSC)的结构与功能关系的有力工具。尽管已从狼蛛毒液中报道了许多有趣的抑制剂,但对它们与VGSC相互作用的机制知之甚少。我们显示,从蜘蛛狼蛛虎纹蛇毒中有35个残基的肽huwentoxin-IV(HWTX-IV),与肌肉亚型rNav1.4和hNav1相比,它优先抑制神经元VGSC亚型rNav1.2,rNav1.3和hNav1.7。 5,在所检查的五个VGSC中,hNav1.7对HWTX-IV最敏感(IC50〜26 nm)。施加1μmHWTX-IV之后,仅在极度去极化(> +100 mV)的情况下才能引起hNav1.7电流。从HWTX-IV抑制中恢复hNav1.7通道可通过持续数分钟的极端去极化或中度去极化来诱导。定点诱变分析表明该毒素停靠在域II的细胞外S3-S4接头处的神经毒素受体位点4。 hNav1.7中的E818Q和D816N突变使与hNav1.7的毒素亲和力降低了约300倍,而反之 rNav1.4(N655D / Q657E)中的突变以及hNav1.5中的相应突变 (R812D / S814E)大大增加了肌肉VGSC对 HWTX-IV。我们的数据确定了一种抑制钠通道的新机制 狼蛛毒素涉及与神经毒素受体位点4的结合。 捕获将IIS4电压传感器捕获在外部的蝎子β毒素 配置,我们建议HWTX-IV捕获域II的电压传感器 在向内封闭的配置中。

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