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A crystallographic approach to structural transitions in icosahedral viruses

机译:二十面体病毒结构转变的晶体学方法

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摘要

Viruses with icosahedral capsids, which form the largest class of all viruses and contain a number of important human pathogens, can be modelled via suitable icosahedrally invariant finite subsets of icosahedral 3D quasicrystals. We combine concepts from the theory of 3D quasicrystals, and from the theory of structural phase transformations in crystalline solids, to give a framework for the study of the structural transitions occurring in icosahedral viral capsids during maturation or infection. As 3D quasicrystals are in a one-to-one correspondence with suitable subsets of 6D icosahedral Bravais lattices, we study systematically the 6D-analogs of the classical Bain deformations in 3D, characterized by minimal symmetry loss at intermediate configurations, and use this information to infer putative viral-capsid transition paths in 3D via the cut-and-project method used for the construction of quasicrystals. We apply our approach to the Cowpea Chlorotic Mottle virus (CCMV) and show that the putative transition path between the experimentally observed initial and final CCMV structures is most likely to preserve one threefold axis. Our procedure suggests a general method for the investigation and prediction of symmetry constraints on the capsids of icosahedral viruses during structural transitions, and thus provides insights into the mechanisms underlying structural transitions of these pathogens.
机译:具有二十面体衣壳的病毒是所有病毒中最大的类别,并且包含许多重要的人类病原体,可以通过适当的二十面体3D准晶体的二十面体不变有限子集进行建模。我们结合了3D准晶体理论和晶体固体中结构相变理论的概念,为研究二十面体病毒衣壳在成熟或感染过程中发生的结构转变提供了框架。由于3D准晶体与6D二十面体Bravais晶格的合适子集一一对应,因此我们系统地研究了3D中经典贝恩变形的6D模拟,其特征在于中间构型的对称损失最小,并使用此信息来通过用于准晶体构建的切割和投影方法推断3D的假定病毒衣壳过渡路径。我们将我们的方法应用于the豆绿斑驳病毒(CCMV),并表明实验观察到的初始和最终CCMV结构之间的推定过渡路径最有可能保留一个三重轴。我们的程序提出了一种在结构转变过程中调查和预测二十面体病毒衣壳对称性限制的通用方法,从而提供了对这些病原体结构转变的潜在机制的深刻见解。

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