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首页> 外文期刊>Current Microbiology >The Role of β20–β21 Loop Structure in Insecticidal Activity of Cry1Ac Toxin from Bacillus thuringiensis
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The Role of β20–β21 Loop Structure in Insecticidal Activity of Cry1Ac Toxin from Bacillus thuringiensis

机译:β20–β21环结构在苏云金芽孢杆菌Cry1Ac毒素杀虫活性中的作用

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The β20–β21 loop is a unique structure in the domain III of Bacillus thuringiensis Cry proteins. In this study, the role of β20–β21 loop on insecticidal activity of Cry1Ac toxin was investigated. 10 residues in β20–β21 loop were substituted with alanine using PCR-based site-directed mutagenesis. All mutants were capable of producing diamond-shaped crystal and expressing a protein sized 130 kDa. The mutants S581A and I585A enhanced toxicity against Helicoverpa armigera larvae dramatically, while most of the rest mutants possess a reduced toxicity at different degrees. Indoor bioassay result revealed that mutants S581A and I585A had a 1.72- and 1.89-fold increasing in toxicity against Helicoverpa armigera larvae compared with the wild-type strain, respectively; On the contrary, G583A experienced a significant reduced insecticidal activity. Three-dimensional analysis of Cry1Ac5 protein demonstrated that the side chain of residues T579, S580, L582, and I585 extended to the surface of the protein, and might participate in the interaction between the protein and its receptor, whereas side chain of residues N576, F578, S581, N584, and V586 preferred the inside of the protein, and which might be critical to the stability of the protein structure. Our study for the first time clarified the special properties and the functions of the β20–β21 loop in domain III of Cry1Ac5. These findings also provided the latest biological evidence for the recognition and binding mechanism of the domain III in Cry1Ac, and its role in maintaining the structure stability of Cry1Ac.
机译:β20–β21环是苏云金芽孢杆菌Cry蛋白III结构域中的独特结构。在这项研究中,研究了β20-β21环对Cry1Ac毒素的杀虫活性的作用。使用基于PCR的定点诱变将β20–β21环中的10个残基替换为丙氨酸。所有突变体均能够产生菱形晶体并表达大小为130 kDa的蛋白质。突变体S581A和I585A显着增强了对棉铃虫幼虫的毒性,而其余大多数突变体在不同程度上均具有降低的毒性。室内生物测定结果表明,与野生型菌株相比,突变体S581A和I585A对棉铃虫幼虫的毒性分别提高了1.72倍和1.89倍。相反,G583A的杀虫活性大大降低。对Cry1Ac5蛋白的三维分析表明,残基T579,S580,L582和I585的侧链延伸至该蛋白的表面,并可能参与该蛋白与其受体之间的相互作用,而残基N576的侧链F578,S581,N584和V586优选蛋白质的内部,这可能对蛋白质结构的稳定性至关重要。我们的研究首次阐明了Cry1Ac5结构域III中β20–β21环的特殊性质和功能。这些发现也为Cry1Ac中结构域III的识别和结合机理及其在维持Cry1Ac结构稳定性中的作用提供了最新的生物学证据。

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