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All-atom molecular dynamics of the HBV capsid reveals insights into biological function and cryo-EM resolution limits

机译:HBV衣壳的全原子分子动力学揭示了对生物学功能和冷冻EM分辨率极限的见解

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The hepatitis B virus capsid represents a promising therapeutic target. Experiments suggest the capsid must be flexible to function; however, capsid structure and dynamics have not been thoroughly characterized in the absence of icosahedral symmetry constraints. Here, all-atom molecular dynamics simulations are leveraged to investigate the capsid without symmetry bias, enabling study of capsid flexibility and its implications for biological function and cryo-EM resolution limits. Simulation results confirm flexibility and reveal a propensity for asymmetric distortion. The capsid’s influence on ionic species suggests a mechanism for modulating the display of cellular signals and implicates the capsid’s triangular pores as the location of signal exposure. A theoretical image reconstruction performed using simulated conformations indicates how capsid flexibility may limit the resolution of cryo-EM. Overall, the present work provides functional insight beyond what is accessible to experimental methods and raises important considerations regarding asymmetry in structural studies of icosahedral virus capsids.
机译:乙型肝炎病毒衣壳代表了有希望的治疗目标。实验表明,衣壳必须具有灵活的功能。但是,在没有二十面体对称约束的情况下,衣壳结构和动力学尚未得到充分表征。在这里,利用全原子分子动力学模拟来研究衣壳而没有对称性偏差,从而能够研究衣壳的柔性及其对生物学功能和冷冻EM分辨率极限的影响。仿真结果证实了灵活性,并揭示了不对称失真的可能性。衣壳对离子物质的影响提示了一种调节细胞信号显示的机制,并将衣壳的三角形孔与信号暴露位置相关。使用模拟构象执行的理论图像重建表明衣壳柔性如何可能限制cryo-EM的分辨率。总体而言,目前的工作提供了功能性的见识,超出了实验方法可及的范围,并提出了关于二十面体病毒衣壳结构研究中不对称性的重要考虑。

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