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苏云金芽孢杆菌营养期杀虫蛋白Vip3A的作用模式不同于Cry1Ab δ-内毒素的作用模式。

The mode of action of the Bacillus thuringiensis vegetative insecticidal protein Vip3A differs from that of Cry1Ab delta-endotoxin.

作者信息

Lee Mi Kyong, Walters Frederick S, Hart Hope, Palekar Narendra, Chen Jeng-Shong

机构信息

Insect Resistance, Syngenta Biotechnology, Inc., Research Triangle Park, North Carolina 27709-2257, USA.

出版信息

Appl Environ Microbiol. 2003 Aug;69(8):4648-57. doi: 10.1128/AEM.69.8.4648-4657.2003.

Abstract

The Vip3A protein, secreted by Bacillus spp. during the vegetative stage of growth, represents a new family of insecticidal proteins. In our investigation of the mode of action of Vip3A, the 88-kDa Vip3A full-length toxin (Vip3A-F) was proteolytically activated to an approximately 62-kDa core toxin either by trypsin (Vip3A-T) or lepidopteran gut juice extracts (Vip3A-G). Biotinylated Vip3A-G demonstrated competitive binding to lepidopteran midgut brush border membrane vesicles (BBMV). Furthermore, in ligand blotting experiments with BBMV from the tobacco hornworm, Manduca sexta (Linnaeus), activated Cry1Ab bound to 120-kDa aminopeptidase N (APN)-like and 250-kDa cadherin-like molecules, whereas Vip3A-G bound to 80-kDa and 100-kDa molecules which are distinct from the known Cry1Ab receptors. In addition, separate blotting experiments with Vip3A-G did not show binding to isolated Cry1A receptors, such as M. sexta APN protein, or a cadherin Cry1Ab ecto-binding domain. In voltage clamping assays with dissected midgut from the susceptible insect, M. sexta, Vip3A-G clearly formed pores, whereas Vip3A-F was incapable of pore formation. In the same assay, Vip3A-G was incapable of forming pores with larvae of the nonsusceptible insect, monarch butterfly, Danaus plexippus (Linnaeus). In planar lipid bilayers, both Vip3A-G and Vip3A-T formed stable ion channels in the absence of any receptors, supporting pore formation as an inherent property of Vip3A. Both Cry1Ab and Vip3A channels were voltage independent and highly cation selective; however, they differed considerably in their principal conductance state and cation specificity. The mode of action of Vip3A supports its use as a novel insecticidal agent.

摘要

Vip3A蛋白由芽孢杆菌属在生长的营养阶段分泌,代表了一类新的杀虫蛋白。在我们对Vip3A作用模式的研究中,88 kDa的Vip3A全长毒素(Vip3A-F)通过胰蛋白酶(Vip3A-T)或鳞翅目昆虫肠液提取物(Vip3A-G)被蛋白水解激活为约62 kDa的核心毒素。生物素化的Vip3A-G显示出与鳞翅目昆虫中肠刷状缘膜囊泡(BBMV)的竞争性结合。此外,在用烟草天蛾Manduca sexta(Linnaeus)的BBMV进行的配体印迹实验中,活化的Cry1Ab与120 kDa的氨肽酶N(APN)样分子和250 kDa的钙黏蛋白样分子结合,而Vip3A-G与80 kDa和100 kDa的分子结合,这些分子与已知的Cry1Ab受体不同。此外,用Vip3A-G进行的单独印迹实验未显示与分离的Cry1A受体(如烟草天蛾APN蛋白)或钙黏蛋白Cry1Ab胞外结合域结合。在对敏感昆虫烟草天蛾的中肠进行电压钳制测定时,Vip3A-G明显形成孔道,而Vip3A-F则无法形成孔道。在相同的测定中,Vip3A-G无法与非敏感昆虫君主斑蝶Danaus plexippus(Linnaeus)的幼虫形成孔道。在平面脂质双分子层中,Vip3A-G和Vip3A-T在没有任何受体的情况下都形成了稳定的离子通道,支持孔道形成是Vip3A的固有特性。Cry1Ab和Vip3A通道均不依赖电压且具有高度阳离子选择性;然而,它们在主要电导状态和阳离子特异性方面有很大差异。Vip3A的作用模式支持其作为一种新型杀虫剂使用。

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