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Fibroblast Growth Factor Receptor, a Novel Receptor for Vegetative Insecticidal Protein Vip3Aa

机译:成纤维细胞生长因子受体,营养杀虫蛋白Vip3Aa的新型受体。

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Vegetative insecticidal proteins (Vips), which are secreted by some Bacillus thuringiensis strains during vegetative growth, exhibit high virulence to many pests. Vip3A proteins have been used commercially both in some bio-insecticides and in transgenic crops; however, compared with insecticidal crystal proteins, the mechanism of action of Vip3A is still unclear. In this work, we indicated that the fibroblast growth factor receptor-like protein (Sf-FGFR) from the membrane of Sf9 cells could bind to Vip3Aa. The interaction between Vip3Aa and Sf-FGFR was confirmed by pull-down assays and dot blotting experiment in vitro. The binding affinity between Vip3Aa and extracellular regions of Sf-FGFR (GST-FGFR-N) was determined by microscale thermophoresis assay (MST). Moreover, Vip3Aa-Flag could be co-immunoprecipitated with Sf-FGFR-V5 ex vivo. Furthermore, knockdown of Sf-FGFR gene in Sf9 cells resulted in reducing the mortality of those cells to Vip3Aa. In summary, our data indicated that Sf-FGFR is a novel receptor for Vip3Aa.
机译:一些苏云金芽孢杆菌在营养生长过程中分泌的植物性杀虫蛋白(Vips)对许多害虫均表现出高毒力。 Vip3A蛋白已在一些生物杀虫剂和转基因作物中商业使用;但是,与杀虫晶体蛋白相比,Vip3A的作用机理仍不清楚。在这项工作中,我们表明来自Sf9细胞膜的成纤维细胞生长因子受体样蛋白(Sf-FGFR)可以与Vip3Aa结合。 Vip3Aa和Sf-FGFR之间的相互作用通过下拉测定和体外斑点印迹实验得以证实。 Vip3Aa和Sf-FGFR(GST-FGFR-N)的细胞外区域之间的结合亲和力是通过微型热泳分析(MST)确定的。而且,Vip3Aa-Flag可以与Sf-FGFR-V5离体共免疫沉淀。此外,Sf9细胞中的Sf-FGFR基因的敲低导致降低了这些细胞对Vip3Aa的死亡率。总之,我们的数据表明Sf-FGFR是Vip3Aa的新型受体。

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