首页> 美国卫生研究院文献>Toxins >The Activation Effect of Hainantoxin-I a Peptide Toxin from the Chinese Spider Ornithoctonus hainana on Intermediate-Conductance Ca2+-Activated K+ Channels
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The Activation Effect of Hainantoxin-I a Peptide Toxin from the Chinese Spider Ornithoctonus hainana on Intermediate-Conductance Ca2+-Activated K+ Channels

机译:海蜘蛛毒素肽毒素海南毒素-I对中导Ca2 +激活的K +通道的激活作用

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摘要

Intermediate-conductance Ca2+-activated K+ (IK) channels are calcium/calmodulin-regulated voltage-independent K+ channels. Activation of IK currents is important in vessel and respiratory tissues, rendering the channels potential drug targets. A variety of small organic molecules have been synthesized and found to be potent activators of IK channels. However, the poor selectivity of these molecules limits their therapeutic value. Venom-derived peptides usually block their targets with high specificity. Therefore, we searched for novel peptide activators of IK channels by testing a series of toxins from spiders. Using electrophysiological experiments, we identified hainantoxin-I (HNTX-I) as an IK-channel activator. HNTX-I has little effect on voltage-gated Na+ and Ca2+ channels from rat dorsal root ganglion neurons and on the heterologous expression of voltage-gated rapidly activating delayed rectifier K+ channels (human ether-à-go-go-related gene; human ERG) in HEK293T cells. Only 35.2% ± 0.4% of the currents were activated in SK channels, and there was no effect on BK channels. We demonstrated that HNTX-I was not a phrenic nerve conduction blocker or acutely toxic. This is believed to be the first report of a peptide activator effect on IK channels. Our study suggests that the activity and selectivity of HNTX-I on IK channels make HNTX-I a promising template for designing new drugs for cardiovascular diseases.
机译:Ca 2 + 激活的K + (IK)中间通道是钙/钙调蛋白调节的电压独立K + 通道。 IK电流的激活在血管和呼吸组织中很重要,使通道成为潜在的药物靶标。已经合成了多种小有机分子,并发现它们是IK通道的有效激活剂。但是,这些分子的选择性差限制了它们的治疗价值。毒液衍生的肽通常以高特异性阻断其靶标。因此,我们通过测试蜘蛛产生的一系列毒素来搜索IK通道的新型肽激活剂。使用电生理实验,我们确定了海南毒素I(HNTX-I)作为IK通道激活剂。 HNTX-I对大鼠背根神经节神经元的电压门控Na + 和Ca 2 + 通道以及电压门控快速激活延迟整流子的异源表达影响很小HEK293T细胞中的K + 通道(人类醚去相关基因;人类ERG)。 SK通道中只有35.2%±0.4%的电流被激活,而对BK通道没有影响。我们证明了HNTX-1不是a神经传导阻滞剂或急性毒性。据信这是肽活化剂对IK通道的作用的首次报道。我们的研究表明,HNTX-1在IK通道上的活性和选择性使HNTX-1成为设计心血管疾病新药的有希望的模板。

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