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富含二硫键和线性两亲性结构域的蜘蛛毒素:在 Lynx 蜘蛛 Oxyopes takobius 中发现的一类新分子。

Spider toxins comprising disulfide-rich and linear amphipathic domains: a new class of molecules identified in the lynx spider Oxyopes takobius.

机构信息

M.M. Shemyakin and Yu.A. Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, Russia.

出版信息

FEBS J. 2013 Dec;280(23):6247-61. doi: 10.1111/febs.12547.

DOI:10.1111/febs.12547
PMID:24118933
Abstract

In addition to the conventional neurotoxins and cytotoxins, venom of the lynx spider Oxyopes takobius was found to contain two-domain modular toxins named spiderines: OtTx1a, 1b, 2a and 2b. These toxins show both insecticidal activity (a median lethal dose against flesh fly larvae of 75 μg·g(-1)) and potent antimicrobial effects (minimal inhibitory concentrations in the range 0.1-10 μm). Full sequences of the purified spiderines were established by a combination of Edman degradation, mass spectrometry and cDNA cloning. They are relatively large molecules (~ 110 residues, 12.0-12.5 kDa) and consist of two distinct modules separated by a short linker. The N-terminal part (~ 40 residues) contains no cysteine residues, is highly cationic, forms amphipathic α-helical structures in a membrane-mimicking environment, and shows potent cytolytic effects on cells of various origins. The C-terminal part (~ 60 residues) is disulfide-rich (five S-S bonds), and contains the inhibitor cystine knot (ICK/knottin) signature. The N-terminal part of spiderines is very similar to linear cytotoxic peptides found in various organisms, whereas the C-terminal part corresponds to the usual spider neurotoxins. We synthesized the modules of OtTx1a and compared their activity to that of full-length mature toxin produced recombinantly, highlighting the importance of the N-terminal part, which retained full-length toxin activity in both insecticidal and antimicrobial assays. The unique structure of spiderines completes the range of two-domain spider toxins.

摘要

除了常规的神经毒素和细胞毒素外,虎纹捕鸟蛛 Oxyopes takobius 的毒液中还发现了两种含有两个结构域的模块化毒素,命名为 spiderines:OtTx1a、1b、2a 和 2b。这些毒素表现出杀虫活性(对肉蝇幼虫的半致死剂量为 75μg·g(-1))和很强的抗菌作用(最小抑制浓度范围在 0.1-10μm 之间)。通过 Edman 降解、质谱和 cDNA 克隆相结合,确定了纯化 spiderines 的完整序列。它们是相对较大的分子(110 个残基,12.0-12.5kDa),由两个不同的模块组成,中间有一个短的连接体。N 端部分(40 个残基)不含半胱氨酸残基,带正电荷,在模拟膜环境中形成两亲性α-螺旋结构,并对各种来源的细胞表现出强烈的细胞毒性作用。C 端部分(~60 个残基)富含二硫键(五个 S-S 键),并含有抑制剂半胱氨酸结(ICK/knottin)特征。spiderines 的 N 端部分与各种生物体中发现的线性细胞毒性肽非常相似,而 C 端部分则对应于通常的蜘蛛神经毒素。我们合成了 OtTx1a 的模块,并比较了它们的活性与重组表达的全长成熟毒素的活性,突出了 N 端部分的重要性,该部分在杀虫和抗菌测定中保留了全长毒素的活性。spiderines 的独特结构完善了含有两个结构域的蜘蛛毒素的范围。

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