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首页> 外文期刊>BioTechnologia >Homology modeling deduced tridimensional structure of Bacillus thuringiensis Cry1Ab18 toxin
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Homology modeling deduced tridimensional structure of Bacillus thuringiensis Cry1Ab18 toxin

机译:同源建模推论苏云金芽孢杆菌Cry1Ab18毒素的三维结构。

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摘要

δ toxin action is unclear. Therefore, solution of the three-dimensional structure of all Cry1 family members would be desirable for a comprehensive understanding of the initial mechanisms that underlie the toxicity of this type of toxin. Here, we predict a theoretical structural model of the newly reported Cry1Ab18 δ-endotoxin, using a homology modeling technique with the structure of Cry1Aa toxin molecule (resolution 2.25 ). Cry1Ab18 re- sembles Cry1Aa toxin by sharing a common three-domain structure. Domain I is composed of nine α helixes and one small β strand, domain II is composed of nine β strands and two α helixes and domain III consists of two α helixes and eleven β strands. This model supports the existing hypotheses of receptor insertion and will further provide the initiation point for the domain swapping experiments aimed towards improving protein toxicity, and will help in the deeper understanding of the mechanism of action of common toxins.
机译:δ毒素的作用尚不清楚。因此,解决所有Cry1家族成员的三维结构对于全面理解构成这种毒素毒性的初始机制将是理想的。在这里,我们使用具有Cry1Aa毒素分子结构的同源建模技术预测了新报道的Cry1Ab18δ-内毒素的理论结构模型(分辨率2.25)。 Cry1Ab18通过共享共同的三结构域结构类似于Cry1Aa毒素。域I由9条α螺旋和一条小β链组成,域II由9条β链和2条α螺旋组成,域III由2条α螺旋和11条β链组成。该模型支持受体插入的现有假设,并将进一步为旨在改善蛋白质毒性的结构域交换实验提供起点,并将有助于更深入地了解常见毒素的作用机理。

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