Xin-Min Zhao, Li-Qiu Xia, Xue-Zhi Ding, Fa-Xiang Wang
Key Laboratory of Microbial Molecular Biology of Hunan Province, College of Life Science, Hunan Normal University, Changsha, 410081, China.
Protein J. 2009 Feb;28(2):104-10. doi: 10.1007/s10930-009-9169-0.
Cry5Aa is a crystal protein produced by Bacillus thuringiensis serovar. damstadiensis during its stationary phase, this delta-endotoxin is active against nematodes and has great potential for nematodes control. The theoretical model of the three-dimensional structure of Cry5Aa was predicted by homology modeling on the structures of the Cry1Aa which is specific to Lepidopteran insects. The structure of the Cry5Aa resembles previously reported Cry toxin structures but shows the following distinctions. Cry5Aa has a long insertion in alpha2 of domain I. Some loops in the domain II and III of Cry5Aa are exposed to the solvent. In this work we give a brief description of our model and hypothesize the residues of the Cry5Aa that could be important in receptor recognition and pore formation. This model will be helpful for the design of mutagenesis experiments aimed to the improvement of toxicity, and lead to a deep understanding of the mechanism of action of nematicidal toxins.
Cry5Aa是苏云金芽孢杆菌血清型达姆施塔迪ensis在其稳定期产生的一种晶体蛋白,这种δ-内毒素对线虫具有活性,在控制线虫方面具有巨大潜力。通过对鳞翅目昆虫特异性的Cry1Aa结构进行同源建模,预测了Cry5Aa三维结构的理论模型。Cry5Aa的结构与先前报道的Cry毒素结构相似,但有以下不同之处。Cry5Aa在结构域I的α2中有一个长插入。Cry5Aa结构域II和III中的一些环暴露于溶剂中。在这项工作中,我们简要描述了我们的模型,并推测了Cry5Aa中可能在受体识别和孔形成中起重要作用的残基。该模型将有助于设计旨在提高毒性的诱变实验,并有助于深入了解杀线虫毒素的作用机制。