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首页> 外文期刊>Nanoscale >Commensurability between protein nanotubes in contractile ejection nanomachines
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Commensurability between protein nanotubes in contractile ejection nanomachines

机译:蛋白质纳米管之间的可通约性收缩射血纳米

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Contractile ejection nanomachines being sheath-tube assemblies create an opening in the cell membrane to translocate molecules or ions across it. Here, on the most structurally investigated examples of the bacteriophage T4 tail and pyocin R2, we show that the rearrangement of the sheath structure resulting in its contraction and twist occurs in such a way that the contracted sheath becomes commensurate with the inner tube. This fact dictates the previously unknown simple geometrical relationship between the nanotube symmetries. Using the Frank and van der Merwe classical theory of commensurability, we study an interaction between two protein nanotubes forming such nanomachines and obtain an expression for the corresponding energy, which depends on the tube structures and their mutual arrangement. The appearance of commensurability between the contracted sheath and the inner tube decreases both the interaction energy and the total energy of the system. It improves the nanomachine efficiency, since the energy gain obtained increases the torque of the inner tube piercing the cell membrane.
机译:收缩射血纳米机器被sheath-tube组件创建一个开放的细胞膜可能促使分子或离子在它。调查T4噬菌体的例子尾巴和pyocin R2,我们表明,鞘结构的重排产生的收缩和转折发生在这样一种方式简约鞘变得相称内胎。未知的简单的几何纳米管对称性之间的关系。使用凡德尔莫维弗兰克和古典可公度性理论,我们研究一个两个蛋白质之间的相互作用纳米管形成这种纳米和获得的表达式相应的能量,这取决于管结构和他们共同的安排。外表之间的可通约性简约的鞘和内胎减少相互作用能和总能量的系统。效率,因为获得的能量增益增加了扭矩的内胎穿孔细胞膜。

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