Institute of Biotechnology, Department of Biochemistry and Molecular Biology I, Faculty of Science, University of Granada, 18071 Granada, Spain.
Toxins (Basel). 2020 Sep 16;12(9):600. doi: 10.3390/toxins12090600.
3D-Cry toxins, produced by the entomopathogenic bacterium , have been extensively mutated in order to elucidate their elegant and complex mechanism of action necessary to kill susceptible insects. Together with the study of the resistant insects, 3D-Cry toxin mutants represent one of the pillars to understanding how these toxins exert their activity on their host. The principle is simple, if an amino acid is involved and essential in the mechanism of action, when substituted, the activity of the toxin will be diminished. However, some of the constructed 3D-Cry toxin mutants have shown an enhanced activity against their target insects compared to the parental toxins, suggesting that it is possible to produce novel versions of the natural toxins with an improved performance in the laboratory. In this report, all mutants with an enhanced activity obtained by accident in mutagenesis studies, together with all the variants obtained by rational design or by directed mutagenesis, were compiled. A description of the improved mutants was made considering their historical context and the parallel development of the protein engineering techniques that have been used to obtain them. This report demonstrates that artificial 3D-Cry toxins made in laboratories are a real alternative to natural toxins.
3D-Cry 毒素是由昆虫病原细菌产生的,为了阐明其杀死敏感昆虫所需的优雅而复杂的作用机制,已经对其进行了广泛的突变。与抗性昆虫的研究一起,3D-Cry 毒素突变体代表了理解这些毒素如何在宿主上发挥作用的基础之一。原理很简单,如果一个氨基酸参与并对作用机制至关重要,那么当被取代时,毒素的活性将会降低。然而,一些构建的 3D-Cry 毒素突变体相对于亲本毒素对其靶昆虫表现出增强的活性,这表明有可能产生具有改进的实验室性能的天然毒素的新版本。在本报告中,将所有在诱变研究中偶然获得的具有增强活性的突变体,以及所有通过合理设计或定向诱变获得的变体进行了编译。考虑到其历史背景和用于获得它们的蛋白质工程技术的平行发展,对改进的突变体进行了描述。本报告证明,实验室中制造的人工 3D-Cry 毒素是天然毒素的真正替代品。