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Crystal structure of Cry51Aa1: A potential novel insecticidal aerolysin-type β-pore-forming toxin from Bacillus thuringiensis
期刊文章

Crystal structure of Cry51Aa1: A potential novel insecticidal aerolysin-type β-pore-forming toxin from Bacillus thuringiensis

Chengchen Xu, Unmesh Chinte, Lirong Chen, Qingqing Yao, Ying Meng, Dayong Zhou, Li-Jun Bi, John Rose, Michael J. Adang, Ziniu Yu, …
Biochemical and Biophysical Research Communications, 卷.462(3), 頁碼.184-189
06/2015
PMID: 25957471

摘要

Bacillus thuringiensis Crystal structure Insecticidal Pore-forming toxin Biophysics Biochemistry Molecular Biology Cell Biology
The structures of several Bacillus thuringiensis (Bt) insecticidal crystal proteins have been determined by crystallographic methods and a close relationship has been explicated between specific toxicities and conserved three-dimensional architectures. In this study, as a representative of the coleopteran- and hemipteran-specific Cry51A group, the complete structure of Cry51Aa1 protoxin has been determined by X-ray crystallography at 1.65 Å resolution. This is the first report of a coleopteran-active Bt insecticidal toxin with high structural similarity to the aerolysin-type β-pore forming toxins (β-PFTs). Moreover, study of featured residues and structural elements reveal their possible roles in receptor binding and pore formation events. This study provides new insights into the action of aerolysin-type β-PFTs from a structural perspective, and could be useful for the control of coleopteran and hemipteran insect pests in agricultures.

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