Department of Chemistry, Sogang University, Seoul 04107, Republic of Korea.
J Chem Phys. 2023 Apr 28;158(16). doi: 10.1063/5.0145382.
The shape of a viral capsid affects the equilibrium conformation of DNA inside the capsid: the equilibrium DNA conformation inside a spherical capsid is a concentric spool while the equilibrium conformation inside an elongated capsid is a twisted toroid. The conformation of DNA, jammed inside the capsid due to high internal pressure, influences the ejection kinetics of the DNA from the capsid. Therefore, one would expect that the DNA ejection kinetics would be subject to the shape of the viral capsid. The effects of the capsid shape on the ejection, however, remain elusive partly due to a plethora of viral capsid shapes. In this work, we perform Langevin dynamics simulations for the ejection of a polymer chain from three different types of viral capsids: (1) spherical, (2) cubic, and (3) cuboid capsids. We find that the ejection rate of the polymer chain from the spherical capsid is much faster than that from either cubic or cuboid capsids. The polymer chain in the spherical capsid may undergo collective rotational relaxation more readily such that the polymer chain becomes more mobile inside the spherical capsid, which enhances the ejection kinetics. On the other hand, a threading motion is dominant inside cubic and cuboid capsids. We also find that the effects of the collective rotational motion become more significant for a more rigid chain inside a capsid.
病毒衣壳的形状会影响衣壳内 DNA 的平衡构象:球形衣壳内的平衡 DNA 构象为同心线轴,而长形衣壳内的平衡构象为扭曲的环面。由于内部压力高,DNA 被挤在衣壳内,其构象会影响 DNA 从衣壳中弹出的动力学。因此,人们预计 DNA 弹出的动力学将受到病毒衣壳形状的影响。然而,由于病毒衣壳形状繁多,衣壳形状对弹出的影响仍然难以捉摸。在这项工作中,我们对从三种不同类型的病毒衣壳(1)球形、(2)立方和(3)长方体衣壳中弹出的聚合物链进行了朗之万动力学模拟。我们发现,聚合物链从球形衣壳中弹出的速度比从立方或长方体衣壳中弹出的速度快得多。球形衣壳中的聚合物链可能更容易发生集体旋转松弛,从而使聚合物链在球形衣壳内变得更加移动,这增强了弹出的动力学。另一方面,在立方和长方体衣壳中,穿线运动占主导地位。我们还发现,对于衣壳内更刚性的链,集体旋转运动的影响变得更加显著。