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作用于蜂毒明肽敏感型SK通道的新型蝎毒素Ts kappa的化学合成及其构效关系

Chemical synthesis and structure-activity relationships of Ts kappa, a novel scorpion toxin acting on apamin-sensitive SK channel.

作者信息

Lecomte C, Ferrat G, Fajloun Z, Van Rietschoten J, Rochat H, Martin-Eauclaire M F, Darbon H, Sabatier J M

机构信息

Biochemistry Laboratory, CNRS UMR 6560, Faculty of Medicine North, Marseille, France.

出版信息

J Pept Res. 1999 Nov;54(5):369-76. doi: 10.1034/j.1399-3011.1999.00107.x.

Abstract

Tityus kappa (Ts kappa), a novel toxin from the venom of the scorpion Tityus serrulatus, is a 35-residue polypeptide cross-linked by three disulphide bridges and acts on small-conductance calcium-activated potassium channels (SK channels). Ts K was chemically synthesized using the solid-phase method and characterized. The synthetic product, sTs kappa, was indistinguishable from the natural toxin when tested in vitro in competition assay with radiolabelled apamin for binding to rat brain synaptosomes (IC50 = 3 nM). The sTs kappa was further tested in vivo for lethal activity to mice following intracerebroventricular inoculation (LD50 = 70 ng per mouse). The half-cystine pairings were formerly established by enzyme-based cleavage of sTs kappa; they were between Cys7-Cys28, Cys13-CyS33 and Cys17-Cys35, which is a disulphide bridge pattern similar to that of other short scorpion toxins. According to previous studies on SK channel-acting toxins, the putative influence of certain basic residues of Ts kappa (i.e. Arg6, Arg9, Lys18, Lys19) in its pharmacological activity was investigated using synthetic point-mutated analogues of the toxin with an Ala substitution at these positions. Data from binding assay, together with conformational analysis of the synthetic analogues by 1H-NMR, suggest that Arg6, and to a lesser extent Arg9, are important residues for an high-affinity interaction of this toxin with SK channels; interestingly these residues are located outside the alpha-helical structure, whereas the pharmacologically important basic residues from other SK channel-specific toxins had been located inside the alpha-helix.

摘要

卡帕肥尾蝎毒素(Ts kappa)是从锯齿肥尾蝎毒液中提取的一种新型毒素,它是一种由三条二硫键交联的含35个氨基酸残基的多肽,作用于小电导钙激活钾通道(SK通道)。采用固相法化学合成并表征了Ts K。在与放射性标记的蜂毒明肽竞争结合大鼠脑突触体的体外试验中(IC50 = 3 nM),合成产物sTs kappa与天然毒素无差异。通过脑室内接种进一步测试了sTs kappa对小鼠的致死活性(LD50 = 70 ng/只小鼠)。半胱氨酸配对先前已通过基于酶的sTs kappa裂解确定;它们位于Cys7-Cys28、Cys13-CyS33和Cys17-Cys35之间,这是一种与其他短蝎毒素类似的二硫键模式。根据先前对作用于SK通道的毒素的研究,使用在这些位置被丙氨酸取代的毒素合成点突变类似物,研究了Ts kappa某些碱性残基(即Arg6、Arg9、Lys18、Lys19)对其药理活性的推定影响。结合试验数据以及通过1H-NMR对合成类似物的构象分析表明,Arg6以及程度稍低的Arg9是该毒素与SK通道高亲和力相互作用的重要残基;有趣的是,这些残基位于α-螺旋结构之外,而其他SK通道特异性毒素的药理学重要碱性残基位于α-螺旋内部。

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