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首页> 外文期刊>Protein Engineering Design and Selection >Prediction-based protein engineering of domain I of Cry2A entomocidal toxin of Bacillus thuringiensis for the enhancement of toxicity against lepidopteran insects
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Prediction-based protein engineering of domain I of Cry2A entomocidal toxin of Bacillus thuringiensis for the enhancement of toxicity against lepidopteran insects

机译:苏云金芽孢杆菌Cry2A杀虫毒素结构域I的基于预测的蛋白质工程,可增强对鳞翅目昆虫的毒性

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摘要

Issues relating to sustenance of the usefulness of genetically modified first generation Bt crop plants in the farmer’s field are of great concern for crop scientists. Additional biotechnological strategies need to be in place to safeguard the possibility for yield loss of Bt crop by other lepidopteran insects that are insensitive to the Cry1A toxin, and also against the possibility for emergence of resistant insects. In this respect, Cry2A toxin has figured as a prospective candidate to be the second toxin to offer the required protection along with Cry1A. In the present study, the entomocidal potency of Cry2A toxin was enhanced through knowledge-based protein engineering of the toxin molecule. Deletion of 42 amino acid residues from the N-terminal end of the peptide followed by the replacement of Lys residues by nonpolar amino acids in the putative transmembrane region including the introduction of Pro resulted in a 4.1–6.6-fold increase in the toxicity of the peptide against three major lepidopteran insect pests of crop plants.
机译:与维持转基因的第一代Bt作物在农民田间的有用性有关的问题是作物科学家非常关注的问题。需要采取其他生物技术策略,以保护其他对Cry1A毒素不敏感的鳞翅目昆虫导致Bt作物减产的可能性,并防止出现抗性昆虫。在这方面,Cry2A毒素已成为与Cry1A一起提供所需保护的第二种毒素。在本研究中,Cry2A毒素的杀虫力通过毒素分子的基于知识的蛋白质工程得到增强。从肽的N末端删除42个氨基酸残基,然后用推定的跨膜区域中的非极性氨基酸替换Lys残基,包括引入Pro导致其毒性增加4.1-6.6倍。肽对农作物的三种主要鳞翅目害虫。

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