Institute for Molecular Bioscience, University of Queensland, St. Lucia, Queensland 4072, Australia.
Proc Natl Acad Sci U S A. 2011 Dec 20;108(51):20544-9. doi: 10.1073/pnas.1111155108. Epub 2011 Dec 7.
Toxin complex (Tc) proteins are a class of bacterial protein toxins that form large, multisubunit complexes. Comprising TcA, B, and C components, they are of great interest because many exhibit potent insecticidal activity. Here we report the structure of a novel Tc, Yen-Tc, isolated from the bacterium Yersinia entomophaga MH96, which differs from the majority of bacterially derived Tcs in that it exhibits oral activity toward a broad range of insect pests, including the diamondback moth (Plutella xylostella). We have determined the structure of the Yen-Tc using single particle electron microscopy and studied its mechanism of toxicity by comparative analyses of two variants of the complex exhibiting different toxicity profiles. We show that the A subunits form the basis of a fivefold symmetric assembly that differs substantially in structure and subunit arrangement from its most well characterized homologue, the Xenorhabdus nematophila toxin XptA1. Histopathological and quantitative dose response analyses identify the B and C subunits, which map to a single, surface-accessible region of the structure, as the sole determinants of toxicity. Finally, we show that the assembled Yen-Tc has endochitinase activity and attribute this to putative chitinase subunits that decorate the surface of the TcA scaffold, an observation that may explain the oral toxicity associated with the complex.
毒素复合物(Tc)蛋白是一类细菌蛋白毒素,形成大型多亚基复合物。由 TcA、B 和 C 组成部分组成,它们具有很大的研究兴趣,因为许多毒素表现出很强的杀虫活性。在这里,我们报告了一种从细菌 Yersinia entomophaga MH96 中分离出的新型 Tc,即 Yen-Tc 的结构,它与大多数细菌衍生的 Tc 不同,因为它对包括小菜蛾(Plutella xylostella)在内的广泛害虫具有口服活性。我们使用单颗粒电子显微镜确定了 Yen-Tc 的结构,并通过比较两种具有不同毒性谱的复合物变体的分析研究了其毒性机制。我们表明,A 亚基形成了一个五重对称的组装体,其结构和亚基排列与最具特征的同源物 Xenorhabdus nematophila 毒素 XptA1 有很大的不同。组织病理学和定量剂量反应分析确定了 B 和 C 亚基,它们映射到结构的单个表面可及区域,是毒性的唯一决定因素。最后,我们表明组装的 Yen-Tc 具有内切几丁质酶活性,并将其归因于可能修饰 TcA 支架表面的几丁质酶亚基,这一观察结果可能解释了与该复合物相关的口服毒性。