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来自蝎蛉科蝎子棕榈蝎毒液中的昆虫毒性成分。

Insect toxic component from the venom of a chactoid scorpion, Scorpio maurus palmatus (Scorpionidae).

作者信息

Lazarovici P, Yanai P, Pelhate M, Zlotkin E

出版信息

J Biol Chem. 1982 Jul 25;257(14):8397-404.

PMID:7085673
Abstract

Several insect toxic components were isolated from the venom of the chactoid scorpion, Scorpio maurus palmatus (Scorpionidae), by column chromatography, with the following findings. 1) The toxicity of the crude venom to insects is due to three separate groups of substances, the so-called cytotoxins, phospholipases, and neurotoxins, which play a dominant role. 2) The neurotoxic fraction contains two factors: the fast reversibly paralytic and the slow lethal. 3) The slow lethal factor is composed of two toxins (IT1 and IT2), the purity of which was assessed by column chromatography, disc electrophoresis, isoelectrofocusing, analytical ultracentrifugation, and amino acid analyses. 4) IT1 and IT2 are two polypeptides possessing unique amino acid compositions with molecular weights of 3232 and 3963, pHi 8.8 and 9.2, and supposed to contain two and three disulfide bridges, respectively. 5) A clear cooperative interaction was demonstrated between the fast paralytic and lethal fractions as well as between the two insect toxins, resulting in an evident recovery of the original toxicity to insects of the crude venom. 6) When assayed on an isolated insect axonal preparation under current and voltage clamp conditions, the combination of IT1 and IT2 caused a reversible blockage of both the sodium and potassium currents. This may explain the specific symptomatology and the mechanism of the paralysis induced by these toxins to an insect. The above data were compared with information concerning buthoid scorpion venom insect toxins.

摘要

通过柱色谱法从蝎科的沙氏钳蝎(Scorpio maurus palmatus)毒液中分离出了几种昆虫毒性成分,结果如下:1)粗毒液对昆虫的毒性归因于三类不同的物质,即所谓的细胞毒素、磷脂酶和神经毒素,它们起主要作用。2)神经毒性部分含有两种因子:快速可逆麻痹因子和缓慢致死因子。3)缓慢致死因子由两种毒素(IT1和IT2)组成,其纯度通过柱色谱法、圆盘电泳、等电聚焦、分析超速离心和氨基酸分析进行评估。4)IT1和IT2是两种具有独特氨基酸组成的多肽,分子量分别为3232和3963,pHi分别为8.8和9.2,且分别含有两个和三个二硫键。5)快速麻痹部分和致死部分之间以及两种昆虫毒素之间表现出明显的协同相互作用,导致粗毒液对昆虫的原始毒性明显恢复。6)在电流钳和电压钳条件下对分离的昆虫轴突制剂进行检测时,IT1和IT2的组合导致钠电流和钾电流的可逆阻断。这可能解释了这些毒素对昆虫诱导的特定症状和麻痹机制。将上述数据与有关钳蝎毒液昆虫毒素的信息进行了比较。

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