Boonserm Panadda, Mo Min, Angsuthanasombat Chanan, Lescar Julien
Institute of Molecular Biology and Genetics, Mahidol University, Salaya Campus, Nakornpathom 73170, Thailand.
J Bacteriol. 2006 May;188(9):3391-401. doi: 10.1128/JB.188.9.3391-3401.2006.
The Cry4Aa delta-endotoxin from Bacillus thuringiensis is toxic to larvae of Culex, Anopheles, and Aedes mosquitoes, which are vectors of important human tropical diseases. With the objective of designing modified toxins with improved potency that could be used as biopesticides, we determined the structure of this toxin in its functional form at a resolution of 2.8 angstroms. Like other Cry delta-endotoxins, the activated Cry4Aa toxin consists of three globular domains, a seven-alpha-helix bundle responsible for pore formation (domain I) and the following two other domains having structural similarities with carbohydrate binding proteins: a beta-prism (domain II) and a plant lectin-like beta-sandwich (domain III). We also studied the effect on toxicity of amino acid substitutions and deletions in three loops located at the surface of the putative receptor binding domain II of Cry4Aa. Our results indicate that one loop is an important determinant of toxicity, presumably through attachment of Cry4Aa to the surface of mosquito cells. The availability of the Cry4Aa structure should guide further investigations aimed at the molecular basis of the target specificity and membrane insertion of Cry endotoxins.
苏云金芽孢杆菌的Cry4Aaδ-内毒素对库蚊、按蚊和伊蚊幼虫有毒,这些蚊子是人类重要热带疾病的传播媒介。为了设计出效力更强的改良毒素用作生物杀虫剂,我们以2.8埃的分辨率确定了这种毒素功能形式的结构。与其他Cryδ-内毒素一样,活化的Cry4Aa毒素由三个球形结构域组成,一个负责形成孔道的七螺旋束(结构域I)以及另外两个与碳水化合物结合蛋白具有结构相似性的结构域:一个β棱柱(结构域II)和一个植物凝集素样β三明治(结构域III)。我们还研究了Cry4Aa假定受体结合结构域II表面三个环中氨基酸取代和缺失对毒性的影响。我们的结果表明,一个环是毒性的重要决定因素,大概是通过Cry4Aa附着在蚊子细胞表面实现的。Cry4Aa结构的可得性应指导进一步研究,以探究Cry内毒素的靶标特异性和膜插入的分子基础。