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The structure and organization within the membrane of the helices composing the pore-forming domain of Bacillus thuringiensis δ-endotoxin are consistent with an umbrella-like structure of the pore

机译:苏云金芽孢杆菌δ-内毒素孔结构域螺旋膜内的结构和组织与孔的伞状结构一致

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摘要

The aim of this study was to elucidate the mechanism of membrane insertion and the structural organization of pores formed by Bacillus thuringiensis δ-endotoxin. We determined the relative affinities for membranes of peptides corresponding to the seven helices that compose the toxin pore-forming domain, their modes of membrane interaction, their structures within membranes, and their orientations relative to the membrane normal. In addition, we used resonance energy transfer measurements of all possible combinatorial pairs of membrane-bound helices to map the network of interactions between helices in their membrane-bound state. The interaction of the helices with the bilayer membrane was also probed by a Monte Carlo simulation protocol to determine lowest-energy orientations. Our results are consistent with a situation in which helices α4 and α5 insert into the membrane as a helical hairpin in an antiparallel manner, while the other helices lie on the membrane surface like the ribs of an umbrella (the “umbrella model”). Our results also support the suggestion that α7 may serve as a binding sensor to initiate the structural rearrangement of the pore-forming domain.
机译:本研究的目的是阐明苏云金芽孢杆菌δ-内毒素形成的膜插入机制和孔的结构组织。我们确定了与构成毒素孔形成域的七个螺旋相对应的肽膜的相对亲和力,它们的膜相互作用方式,它们在膜内的结构以及它们相对于膜正常的方向。此外,我们使用了所有可能的膜结合螺旋组合对的共振能量转移测量,以绘制处于膜结合状态的螺旋之间相互作用的网络。螺旋与双层膜的相互作用也通过蒙特卡罗模拟方案进行探测,以确定最低能量取向。我们的结果与以下情况一致:螺旋线α4和α5以反平行的方式作为螺旋发夹插入膜中,而其他螺旋线则像雨伞的肋骨一样位于膜表面(“伞形模型”)。我们的结果也支持以下建议:α7可以用作结合传感器以启动孔形成域的结构重排。

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