Screening and Identification of Anti-Idiotypic Nanobody Capable of Broad-Spectrum Recognition of the Toxin Binding Region of Lepidopteran Cadherins and Mimicking Domain II of Cry2Aa Toxin

苏云金杆菌 毒素 生物 噬菌体展示 棉铃虫 微生物学 重组DNA 分子生物学 生殖器鳞翅目 基因 生物化学 抗体 细菌 遗传学 植物
作者
Cheng Shen,Jiafeng Jin,Ziyan Huang,Meng Meng,Manman Lin,Xiaodan Hu,Qing Zhu,Chongxin Xu,Wei Chen,Johnson Lin,Xiao Zhang,Yuan Liu,Xianjin Liu
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:72 (3): 1582-1591 被引量:6
标识
DOI:10.1021/acs.jafc.3c07295
摘要

The widespread use of Bacillus thuringiensis toxins as insecticides has brought about resistance problems. Anti-idiotypic nanobody approaches provide new strategies for resistance management and toxin evolution. In this study, the monoclonal antibody generated against the receptor binding region Domain II of Cry2Aa toxin was used as a target to screen materials with insecticidal activity. After four rounds of screening, anti-idiotypic nanobody 1C12 was obtained from the natural alpaca nanobody phage display library. To better analyze the activity of 1C12, soluble 1C12 was expressed by the Escherichia coli BL21 (DE3). The results showed that 1C12 not only binds the midgut brush border membrane vesicles (BBMV) of two lepidopteran species and cadherin CR9-CR11 of three lepidopteran species but also inhibits Cry2Aa toxins from binding to CR9-CR11. The insect bioassay showed that soluble 1C12 caused 25.65% and 23.61% larvae mortality of Helicoverpa armigera and Plutella xylostella, respectively. Although 1C12 has low insecticidal activity, soluble 1C12 possesses the ability to screen a broad-spectrum recognition of the toxin binding region of lepidopteran cadherins and can be used for the identification of the toxin binding region of other lepidopteran cadherins and the subsequent evolution of Cry2Aa toxin. The present study demonstrates a new strategy to screen for the production of novel insecticides.
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