Graduate Program in Molecular Medicine, Faculty of Science, Mahidol University, Rama VI Road, Bangkok 10400, Thailand.
National Center for Genetic Engineering and Biotechnology, National Science and Technology Development Agency, Pathumthani 12120, Thailand.
Protein Pept Lett. 2021;28(2):131-139. doi: 10.2174/0929866527666200625205846.
Vip3Aa is a vegetative insecticidal protein produced by Bacillus thuringiensis. The protein is produced as an 88-kDa protoxin that could be processed by insect gut proteases into a 22-kDa N-terminal and a 66-kDa C-terminal fragments. The C-terminal part could bind to a specific receptor while the N-terminal part is required for toxicity and structural stability.
To demonstrate the antagonistic effect of truncated fragments on the insecticidal activity of the full-length Vip3Aa.
The full-length protein (Vip3Aa), a 66-kDa C-terminal fragment (Vip3Aa-D199) and a predicted carbohydrate binding module (CBM) were produced in Escherichia coli. Purified proteins were mixed at different ratios and fed to Spodoptera litura and Spodoptera exigua larvae. Mortality was recorded and compared between larvae fed with individual toxin and mixtures of the full-length and truncated toxins.
Production level of the Vip3Aa-D199 was significantly decreased comparing to that of the full-length protein. Vip3Aa-D199 and CBM fragment were not toxic to insect larvae whereas Vip3Aa showed high toxicity with LC about 200 ng/cm. Feeding the larvae with mixtures of the Vip3Aa and Vip3Aa-D199 at different ratios revealed antagonistic effect of the Vip3Aa-D199 on the toxicity of Vip3Aa. Results showed that the lethal time (LT and LT ) of larvae fed the mixture toxins was longer than those fed the Vip3Aa alone. In addition, a CBM fragment could inhibit toxicity of the full-length Vip3Aa.
Our results demonstrated that the Vip3Aa-D199 and a CBM fragment could complete for the membrane binding thus rendering activity of the full-length Vip3Aa.
Vip3Aa 是苏云金芽孢杆菌产生的一种营养期杀虫蛋白。该蛋白作为原毒素合成,可被昆虫肠道蛋白酶加工成 22kDa N 端和 66kDa C 端片段。C 端部分可与特定受体结合,而 N 端部分则是毒性和结构稳定性所必需的。
证明截短片段对全长 Vip3Aa 杀虫活性的拮抗作用。
在大肠杆菌中生产全长蛋白(Vip3Aa)、66kDa C 端片段(Vip3Aa-D199)和预测的碳水化合物结合模块(CBM)。将纯化的蛋白以不同比例混合,喂食斜纹夜蛾和甜菜夜蛾幼虫。记录死亡率并比较单独毒素和全长和截短毒素混合物喂养的幼虫之间的差异。
与全长蛋白相比,Vip3Aa-D199 的产量明显降低。Vip3Aa-D199 和 CBM 片段对昆虫幼虫没有毒性,而 Vip3Aa 对 LC 约 200ng/cm 表现出高毒性。用不同比例的 Vip3Aa 和 Vip3Aa-D199 混合物喂养幼虫,发现 Vip3Aa-D199 对 Vip3Aa 的毒性具有拮抗作用。结果表明,喂食混合物毒素的幼虫的致死时间(LT50 和 LT90)比单独喂食 Vip3Aa 的幼虫长。此外,CBM 片段可以抑制全长 Vip3Aa 的毒性。
我们的结果表明,Vip3Aa-D199 和 CBM 片段可以竞争膜结合,从而使全长 Vip3Aa 的活性丧失。