首页> 外文期刊>Peptides: An International Journal >Characterization of a new Kv1.3 channel-specific blocker, J123, from the scorpion Buthus martensii Karsch.
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Characterization of a new Kv1.3 channel-specific blocker, J123, from the scorpion Buthus martensii Karsch.

机译:来自蝎子Buthus martensii Karsch的新型Kv1.3通道特定阻滞剂J123的表征。

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The potassium channel Kv1.3 is an attractive pharmacological target for T-cell-mediated autoimmune diseases, and specific and selective peptidic blockers of Kv1.3 channels have served as valuable therapeutic leads for treating these diseases. Here, we found a new peptide toxin, J123, with 43 amino acids including six cysteine residues by screening the venomous cDNA library of scorpion Buthus martensii Karsch, which has been used as traditional medicine in China for more than 2000 years. The sequence analysis suggested that peptide J123 constituted a new member of the alpha-KTx toxins. The electrophysiological experiments further indicated that peptide J123 has a novel pharmacological profiles: it blocked Kv1.3 channel with high potency (IC50=0.79 nM), and exhibited good selectivity on Kv1.3 over Kv1.1 (>1000-fold) and Kv1.2 (about 30-fold), respectively. Furthermore, peptide J123 had no activity on SKCa2 and SKCa3 channels at micromolar concentration level. Based on the pharmacological activities, the possible channel-interacting surface of peptide J123 was also predicted by molecular modeling and docking. All these data not only enrich the knowledge of the structure-function relationship of the new Kv1.3-speicific peptide but also present a potential drug candidate for selectively targeting Kv1.3 channels.
机译:钾通道Kv1.3是T细胞介导的自身免疫性疾病的诱人药理学靶标,Kv1.3通道的特异性和选择性肽阻滞剂已成为治疗这些疾病的重要治疗方法。在这里,我们通过筛选蝎子Buthus martensii Karsch的有毒cDNA文库,发现了一种具有43个氨基酸,包括六个半胱氨酸残基的新型肽毒素J123,该毒素已在中国作为传统药物使用了2000多年。序列分析表明,肽J123构成了α-KTx毒素的新成员。电生理实验进一步表明,肽J123具有新颖的药理作用:它以高效能(IC50 = 0.79 nM)阻断了Kv1.3通道,并且对Kv1.3的选择性高于Kv1.1(> 1000倍)和Kv1 .2(约30倍)。此外,肽J123在微摩尔浓度水平下对SKCa2和SKCa3通道没有活性。基于药理活性,还通过分子建模和对接预测了肽J123可能的通道相互作用表面。所有这些数据不仅丰富了新的Kv1.3特异肽的结构-功能关系的知识,而且为选择性靶向Kv1.3通道提供了潜在的候选药物。

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