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Structural Plasticity of Helical Nanotubes Based on Coiled-Coil Assemblies

机译:基于螺旋线圈组件的螺旋纳米管的结构可塑性

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摘要

Numerous instances can be seen in evolution where protein quaternary structures have diverged while the sequences of the building blocks have remained fairly conserved. However, the path through which such divergence has taken place is usually not known. We have designed two synthetic 29-residue α-helical peptides, based on the coiled-coil structural motif, that spontaneously self-assemble into helical nanotubes in vitro. Using electron cryo-microscopy (cryo-EM) with a newly available direct electron detection capability, we can achieve near-atomic resolution of these thin structures. We show how conservative changes of only one or two amino acids results in dramatic changes in quaternary structure, in which the assemblies can be switched between two very different forms. This system provides a framework for understanding how small sequence changes in evolution can translate into very large changes in supramolecular structure, a phenomenon that may have significant implications for the de novo design of synthetic peptide assemblies.
机译:在进化过程中可以看到许多实例,其中蛋白质的四级结构发生了分歧,而构件的序列仍然相当保守。但是,这种分歧发生的途径通常是未知的。我们基于卷曲螺旋结构基序设计了两种合成的29个残基的α-螺旋肽,它们在体外自发组装成螺旋纳米管。使用具有最新可用的直接电子检测功能的电子冷冻显微镜(cryo-EM),我们可以实现这些薄结构的近原子分辨率。我们展示了仅一个或两个氨基酸的保守变化如何导致四级结构发生显着变化,其中装配可以在两种非常不同的形式之间切换。该系统提供了一个框架,用于理解进化中的小序列变化如何转化为超分子结构中的非常大的变化,这种现象可能对合成肽装配体的从头设计产生重大影响。

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