Northeast Agricultural University, Harbin, China.
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
Pest Manag Sci. 2022 Jun;78(6):2324-2331. doi: 10.1002/ps.6858. Epub 2022 Mar 22.
The fall armyworm Spodoptera frugiperda and cotton bollworm Helicoverpa armigera are major insect pests of corn and cotton worldwide. Genetically engineered crops producing Vip3Aa, a potent endotoxin, from the bacterium Bacillus thuringiensis (Bt) are effective in controlling these two harmful pests. However, Vip3Aa efficacy is relatively weak compared to that of other Bt proteins such as Cry1A and Cry1F. This study sought to modify Vip3Aa for increased insecticidal activity and determine the cause of elevated activity.
The two triple Vip3Aa mutants in domains IV and V (Vip3Aa-S543N/I544L/E627A and Vip3Aa-S543N/I544L/S686R) exhibited 7.3-fold and 2.8-fold increased toxicity against S. frugiperda, respectively, compared with the wild type while the toxicity of Vip3Aa-S543N/I544L/S686R was 3.2 times that of wild-type protein in H. armigera. The mutants had enhanced stability in midgut juice and 2.6-5.1 times higher binding affinity against S. frugiperda and H. armigera compared with wild type protein.
The enhanced toxicity of Vip3Aa mutants was due to increased stability and binding affinity during infection. The amino acids S543 and I544 combined with E627 or S686 in domains IV and V of Vip3Aa are important for maintaining structural stability and receptor binding. The results match insecticidal activity (LC ) with binding activity (K ), which provides novel clues for the rational design of Bt insecticidal proteins. © 2022 Society of Chemical Industry.
秋粘虫(Spodoptera frugiperda)和棉铃虫(Helicoverpa armigera)是全球玉米和棉花的主要害虫。来自苏云金芽孢杆菌(Bacillus thuringiensis,Bt)的表达 Vip3Aa 的基因工程作物对这两种有害害虫具有控制作用,Vip3Aa 是一种有效的内毒素。然而,与 Cry1A 和 Cry1F 等其他 Bt 蛋白相比,Vip3Aa 的功效相对较弱。本研究旨在修饰 Vip3Aa 以提高杀虫活性,并确定活性提高的原因。
在结构域 IV 和 V 中具有三个突变的两个三重 Vip3Aa 突变体(Vip3Aa-S543N/I544L/E627A 和 Vip3Aa-S543N/I544L/S686R)对 S. frugiperda 的毒性分别比野生型提高了 7.3 倍和 2.8 倍,而 Vip3Aa-S543N/I544L/S686R 对 H. armigera 的毒性比野生型蛋白提高了 3.2 倍。与野生型蛋白相比,突变体在中肠汁液中的稳定性增强,对 S. frugiperda 和 H. armigera 的结合亲和力分别提高了 2.6-5.1 倍。
Vip3Aa 突变体的毒性增强是由于感染过程中稳定性和结合亲和力的提高。结构域 IV 和 V 中的氨基酸 S543 和 I544 与 E627 或 S686 结合对于维持结构稳定性和受体结合至关重要。结果将杀虫活性(LC )与结合活性(K )相匹配,为 Bt 杀虫蛋白的合理设计提供了新的线索。© 2022 化学工业协会。