首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Variability of Potassium Channel Blockers in Mesobuthus eupeus Scorpion Venom with Focus on Kv1.1
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Variability of Potassium Channel Blockers in Mesobuthus eupeus Scorpion Venom with Focus on Kv1.1

机译:eusous eupeus蝎毒液中钾通道阻滞剂的变异性以Kv1.1为重点

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摘要

The lesser Asian scorpion Mesobuthus eupeus (Buthidae) is one of the most widely spread and dispersed species of the Mesobuthus genus, and its venom is actively studied. Nevertheless, a considerable amount of active compounds is still under-investigated due to the high complexity of this venom. Here, we report a comprehensive analysis of putative potassium channel toxins (KTxs) from the cDNA library of M. eupeus venom glands, and we compare the deduced KTx structures with peptides purified from the venom. For the transcriptome analysis, we used conventional tools as well as a search for structural motifs characteristic of scorpion venom components in the form of regular expressions. We found 59 candidate KTxs distributed in 30 subfamilies and presenting the cysteine-stabilized α/β and inhibitor cystine knot types of fold. M. eupeus venom was then separated to individual components by multistage chromatography. A facile fluorescent system based on the expression of the KcsA-Kv1.1 hybrid channels in Escherichia coli and utilization of a labeled scorpion toxin was elaborated and applied to follow Kv1.1 pore binding activity during venom separation. As a result, eight high affinity Kv1.1 channel blockers were identified, including five novel peptides, which extend the panel of potential pharmacologically important Kv1 ligands. Activity of the new peptides against rat Kv1.1 channel was confirmed (IC50 in the range of 1–780 nm) by the two-electrode voltage clamp technique using a standard Xenopus oocyte system. Our integrated approach is of general utility and efficiency to mine natural venoms for KTxs.
机译:小蝎子Mesobuthus eupeus(Buthidae)是Mesobuthus属中分布最广,分布最广泛的物种之一,其毒液已得到积极研究。然而,由于这种毒液的高度复杂性,仍未对大量的活性化合物进行研究。在这里,我们报告了从eueusus毒液腺cDNA库中推定的钾通道毒素(KTxs)的综合分析,并且我们将推导的KTx结构与从毒液中纯化的肽进行了比较。对于转录组分析,我们使用常规工具以及以正则表达式的形式搜索蝎毒成分的特征性结构基序。我们发现59个候选KTx分布在30个亚家族中,并呈现半胱氨酸稳定的α/β和抑制剂胱氨酸结类型的折叠。然后,通过多步色谱法将中型葡萄球菌毒液分离为单个成分。建立了一种简便的荧光系统,该系统基于大肠杆菌中KcsA-Kv1.1杂交通道的表达和标记蝎毒的利用,并在毒液分离过程中用于跟踪Kv1.1孔的结合活性。结果,鉴定出八个高亲和力的Kv1.1通道阻滞剂,包括五个新的肽,它们扩展了潜在的重要药理学Kv1配体的范围。通过使用标准非洲爪蟾卵母细胞系统的两电极电压钳技术,证实了新肽对大鼠Kv1.1通道的活性(IC50在1–780 nm范围内)。我们的综合方法具有广泛的效用和效率,可为KTx挖掘天然毒液。

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