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Structural Effects of Single Mutations in a Filamentous Viral Capsid Across Multiple Length Scales

机译:单长度丝状病毒衣壳中单次突变的结构效应

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Filamentous bacteriophage (phage) are single-stranded DNA viruses that infect bacteria. Single-site mutants of fd phage have been studied by magic-angle spinning nuclear magnetic resonance and by small-angle X-ray scattering. Detailed analysis has been performed that provides insight into structural variations on three length scales. The results, analyzed in conjunction with existing literature data, suggest that a single charge mutation on the capsid surface affects direct interviral interactions but not the structure of individual particles or the macros cale organization. On the other hand, a single hydrophobic mutation located at the hydrophobic interface that stabilizes capsid assembly alters the atomic structure of the phage, mainly affecting intersubunit interactions, affects its macroscale organization, that is, the pitch of the cholesteric liquid crystal formed by the particles, but skips the nanoscale hence does not affect direct interparticle interactions. An X-ray scattering under osmotic pressure assay provides the effective linear charge density of the phage and we obtain values of 0.6 angstrom(-1) and 0.4 angstrom(-1) for fd and M13 phage, respectively. These values agree with a simple consideration of a single cylinder with protein and DNA charges spread according to the most recent atomic-resolution models of the phage.
机译:丝状噬菌体(噬菌体)是一种感染细菌的单链DNA病毒。通过魔法角旋转核磁共振和小角度X射线散射研究了FD噬菌体的单站点突变体。已经进行了详细分析,提供了对三个长度尺度的结构变化的洞察。结果与现有文献数据结合分析,表明衣壳表面上的单一电荷突变会影响直接的间隔相互作用,但不是单个颗粒或宏观组织的结构。另一方面,位于疏水界面的单个疏水性突变,稳定衣壳组件改变了噬菌体的原子结构,主要影响intersubUnit相互作用,影响其宏观组织,即由颗粒形成的胆甾型液晶的间距,但跳过纳米级,因此不会影响直接的颗粒间相互作用。在渗透压测定下的X射线散射提供了噬菌体的有效线性电荷密度,并分别获得FD和M13噬菌体的0.6埃(-1)和0.4埃(-1)的值。这些值与根据噬菌体的最新原子分辨率模型的最新原子分辨率模型来说简单地考虑单个气缸和DNA电荷。

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