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HevCaLP蛋白介导了苏云金芽孢杆菌Cry1A类毒素在烟芽夜蛾中的结合特异性。

The HevCaLP protein mediates binding specificity of the Cry1A class of Bacillus thuringiensis toxins in Heliothis virescens.

作者信息

Jurat-Fuentes Juan L, Gahan Linda J, Gould Fred L, Heckel David G, Adang Michael J

机构信息

Department of Entomology and Biochemistry, University of Georgia, Athens, Georgia 30602-2279, USA.

出版信息

Biochemistry. 2004 Nov 9;43(44):14299-305. doi: 10.1021/bi048500i.

Abstract

Retrotransposon-mediated disruption of the BtR-4 gene encoding the Heliothis virescens cadherin-like protein (HevCaLP) is linked to high levels of resistance in the YHD2 strain to Cry1Ac toxin from Bacillus thuringiensis. This suggests that HevCaLP functions as a Cry1Ac toxin receptor on the surface of midgut cells in susceptible larvae and that the BtR-4 gene disruption eliminates this protein in resistant larvae. However, Cry1Ac toxin binding to HevCaLP is yet to be reported. We used the polymerase chain reaction and immunoblotting as tools to discriminate between individual H. virescens larval midguts from susceptible (YDK) and resistant (CXC, KCBhyb, and YHD2-B) strains according to their BtR-4 gene disruption genotype and phenotype. This approach allowed us to test the correlation between BtR-4 gene disruption, lack of HevCaLP, and altered Cry1A toxin binding. Toxin-binding assays using brush border membrane vesicles revealed that a wild-type BtR-4 allele is necessary for HevCaLP production and Cry1Aa toxin binding, while most of Cry1Ab and Cry1Ac binding was independent of the BtR-4 genotype. Moreover, toxin competition experiments show that KCBhyb midguts lacking HevCaLP are more similar to midguts of the original YHD2 strain than to the current YHD2-B strain. This resolves discrepancies in published studies of Cry1A binding in YHD2 and supports our earlier suggestion that a separate genetic change occurred in YHD2 after appearance of the cadherin disruption, conferring even higher resistance in the resulting YHD2-B strain as well as a large reduction in Cry1Ab and Cry1Ac binding.

摘要

逆转座子介导的对编码烟芽夜蛾钙粘蛋白样蛋白(HevCaLP)的BtR - 4基因的破坏,与YHD2品系对苏云金芽孢杆菌Cry1Ac毒素的高水平抗性相关。这表明HevCaLP在敏感幼虫中肠细胞表面作为Cry1Ac毒素受体发挥作用,并且BtR - 4基因破坏在抗性幼虫中消除了这种蛋白质。然而,Cry1Ac毒素与HevCaLP的结合尚未见报道。我们使用聚合酶链反应和免疫印迹作为工具,根据其BtR - 4基因破坏基因型和表型,区分敏感(YDK)和抗性(CXC、KCBhyb和YHD2 - B)品系的单个烟芽夜蛾幼虫中肠。这种方法使我们能够测试BtR - 4基因破坏、HevCaLP缺失与Cry1A毒素结合改变之间的相关性。使用刷状缘膜囊泡进行的毒素结合试验表明,野生型BtR - 4等位基因对于HevCaLP的产生和Cry1Aa毒素结合是必需的,而大多数Cry1Ab和Cry1Ac结合与BtR - 4基因型无关。此外,毒素竞争实验表明,缺乏HevCaLP的KCBhyb中肠与原始YHD2品系的中肠比与当前的YHD2 - B品系的中肠更相似。这解决了已发表的关于YHD2中Cry1A结合研究中的差异,并支持了我们早期的观点,即在钙粘蛋白破坏出现后,YHD2中发生了单独的遗传变化,导致所得的YHD2 - B品系具有更高的抗性以及Cry1Ab和Cry1Ac结合大幅减少。

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