A system for the directed evolution of the insecticidal protein from Bacillus thuringiensis

被引:0
作者
Hiroshi Ishikawa
Yasushi Hoshino
Yutaka Motoki
Takuma Kawahara
Mika Kitajima
Madoka Kitami
Ayako Watanabe
Alejandra Bravo
Mario Soberon
Atsuko Honda
Katsuro Yaoi
Ryoichi Sato
机构
[1] Tokyo University of Agriculture and Technology,Graduate School of Bio
[2] Universidad Nacional Autonoma de Mexico,Applications and Systems Engineering
[3] National Institute of Advanced Industrial Science and Technology,Instituto de Biotecnologia
来源
Molecular Biotechnology | 2007年 / 36卷
关键词
Cry toxin; Phage display; Directed evolution; Cadherin-like protein;
D O I
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中图分类号
学科分类号
摘要
Theoretically, the activity of AB-type toxin molecules such as the insecticidal toxin (Cry toxin) from B. thuringiensis, which have one active site and two binding site, is improved in parallel with the binding affinity to its receptor. In this experiment, we tried to devise a method for the directed evolution of Cry toxins to increase the binding affinity to the insect receptor. Using a commercial T7 phage-display system, we expressed Cry1Aa toxin on the phage surface as fusions with the capsid protein 10B. These recombinant phages bound to a cadherin-like protein that is one of the Cry1Aa toxin receptors in the model target insect Bombyx mori. The apparent affinity of Cry1Aa-expressing phage for the receptor was higher than that of Cry1Ab-expressing phage. Phages expressing Cry1Aa were isolated from a mixed suspension of phages expressing Cry1Ab and concentrated by up to 130,000-fold. Finally, random mutations were made in amino acid residues 369–375 in domain 2 of Cry1Aa toxin, the mutant toxins were expressed on phages, and the resulting phage library was screened with cadherin-like protein-coated beads. As a result, phages expressing abnormal or low-affinity mutant toxins were excluded, and phages with high-affinity mutant toxins were selected. These results indicate that a method combining T7 phage display with selection using cadherin-like protein-coated magnetic beads can be used to increase the activity of easily obtained, low-activity Cry toxins from bacteria.
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页码:90 / 101
页数:11
相关论文
共 280 条
[1]  
Atsumi S.(2005)Location of the Applied Environmental Microbiology 71 3966-3977
[2]  
Mizuno E.(2005) aminopeptidase N type 1 binding site on Journal of Molecular Biology 348 363-382
[3]  
Hara H.(2004) Cry1Aa toxin Biochimica et Biophysica Acta 1667 38-46
[4]  
Nakanishi K.(1999)Crystal structure of the mosquito-larvicidal toxin Cry4Ba and its biological implications Journal of Biological Chemistry 287 1011-1022
[5]  
Kitami M.(2001)Oligomerization triggers binding of a Protein Engineering 14 189-193
[6]  
Miura N.(1995) Cry1Ab pore-forming toxin to aminopeptidase N receptor leading to insertion into membrane microdomains Journal of Biological Chemistry 270 6412-6419
[7]  
Tabunoki H.(1998)-acetylgalactosamine on the putative insect receptor aminopeptidase N is recognised by a site on the domain III lectin-like fold of a Microbiology and Molecular Biology Reviews 62 807-813
[8]  
Watanabe A.(2001) insecticidal toxin Science 293 857-860
[9]  
Sato R.(2001)Selection of novel ligands from a whole-molecule randomly mutated C5a library Acta Crystallography D: Biological Crystallography 57 1101-1109
[10]  
Boonserm P.(2002)Mutations in domain I of Insect Molecular Biology 11 619-625