Caccia Silvia, Chakroun Maissa, Vinokurov Konstantin, Ferré Juan
Departamento de Genética, Facultad de CC. Biológicas, Universidad de Valencia, Burjassot, Spain.
Departamento de Genética, Facultad de CC. Biológicas, Universidad de Valencia, Burjassot, Spain.
J Insect Physiol. 2014 Aug;67:76-84. doi: 10.1016/j.jinsphys.2014.06.008. Epub 2014 Jun 28.
Vip3 proteins have been described to be secreted by Bacillus thuringiensis during the vegetative growth phase and to display a broad insecticidal spectrum against lepidopteran larvae. Vip3Aa protoxin has been reported to be significantly more toxic to Spodoptera frugiperda than to Spodoptera exigua and differences in the midgut processing have been proposed to be responsible. In contrast, we have found that Vip3Ae is essentially equally toxic against these two species. Proteolysis experiments were performed to study the stability of Vip3A proteins to peptidase digestion and to see whether the differences found could explain differences in toxicity against these two Spodoptera species. It was found that activation of the protoxin form and degradation of the 62kDa band took place at lower concentrations of trypsin when using Vip3Aa than when using Vip3Ae. The opposite effect was observed for chymotrypsin. Vip3Aa and Vip3Ae protoxins were effectively processed by midgut content extracts from the two Spodoptera species and the proteolytic activation did not produce a peptidase resistant core under these in vitro conditions. Digestion experiments performed with S. frugiperda chromatography-purified digestive serine peptidases showed that the degradation of the Vip3A toxins active core is mainly due to the action of cationic chymotrypsin-like peptidase. Although the digestion patterns of Vip3A proteins do not always correlate with toxicity, the peptidase stability of the 62kDa core is in agreement with intraspecific differences of toxicity of the Vip3Aa protein.
据描述,Vip3蛋白由苏云金芽孢杆菌在营养生长阶段分泌,对鳞翅目幼虫具有广泛的杀虫谱。据报道,Vip3Aa原毒素对草地贪夜蛾的毒性比对甜菜夜蛾的毒性显著更高,有人提出中肠加工过程中的差异是造成这种现象的原因。相比之下,我们发现Vip3Ae对这两个物种的毒性基本相同。进行了蛋白水解实验,以研究Vip3A蛋白对肽酶消化的稳定性,并查看所发现的差异是否可以解释对这两种夜蛾科物种毒性的差异。结果发现,使用Vip3Aa时,原毒素形式的激活和62kDa条带的降解在胰蛋白酶浓度较低时就会发生,而使用Vip3Ae时则不然。对于胰凝乳蛋白酶,观察到的情况则相反。Vip3Aa和Vip3Ae原毒素被这两种夜蛾科物种的中肠内容物提取物有效加工,并且在这些体外条件下,蛋白水解激活并未产生抗肽酶的核心。用草地贪夜蛾色谱纯化的消化丝氨酸肽酶进行的消化实验表明,Vip3A毒素活性核心的降解主要是由于阳离子类胰凝乳蛋白酶的作用。尽管Vip3A蛋白的消化模式并不总是与毒性相关,但62kDa核心的肽酶稳定性与Vip3Aa蛋白的种内毒性差异一致。