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手性及填充病毒衣壳的弹性特性与机械稳定性

Elastic properties and mechanical stability of chiral and filled viral capsids.

作者信息

Buenemann Mathias, Lenz Peter

机构信息

Fachbereich Physik, Philipps-Universität Marburg, D-35032 Marburg, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Nov;78(5 Pt 1):051924. doi: 10.1103/PhysRevE.78.051924. Epub 2008 Nov 25.

Abstract

The elasticity and mechanical stability of empty and filled viral capsids under external force loading are studied in a combined analytical and numerical approach. We analyze the influence of capsid structure and chirality on the mechanical properties. We find that generally skew shells have lower stretching energy. For large Föppl-von Kármán numbers gamma (gamma approximately 10(5)), skew structures are stiffer in their elastic response than nonchiral ones. The discrete structure of the capsules not only leads to buckling for large gamma but also influences the breakage behavior of capsules below the buckling threshold: the rupture force shows a gamma1/4 scaling rather than a gamma1/2 scaling as expected from our analytical results for continuous shells. Filled viral capsids are exposed to internal anisotropic pressure distributions arising from regularly packaged DNA coils. We analyze their influence on the elastic properties and rupture behavior and we discuss possible experimental consequences. Finally, we numerically investigate specific sets of parameters corresponding to specific phages such as phi29 and cowpea chlorotic mottle virus (CCMV). From the experimentally measured spring constants we make predictions about specific material parameters (such as bending rigidity and Young's modulus) for both empty and filled capsids.

摘要

采用解析与数值相结合的方法,研究了外力作用下空病毒衣壳和填充病毒衣壳的弹性及力学稳定性。我们分析了衣壳结构和手性对力学性能的影响。我们发现,一般来说,斜壳具有较低的拉伸能。对于较大的弗普尔 - 冯·卡门数γ(γ约为10⁵),斜结构在弹性响应方面比非手性结构更硬。胶囊的离散结构不仅在γ较大时会导致屈曲,还会影响低于屈曲阈值时胶囊的破裂行为:破裂力呈现γ¹/⁴标度,而不是如我们对连续壳的解析结果所预期的γ¹/²标度。填充的病毒衣壳会受到由规则包装的DNA螺旋产生的内部各向异性压力分布的影响。我们分析了它们对弹性性能和破裂行为的影响,并讨论了可能的实验结果。最后,我们对对应于特定噬菌体(如φ29和豇豆花叶病毒(CCMV))的特定参数集进行了数值研究。根据实验测量的弹簧常数,我们对空衣壳和填充衣壳的特定材料参数(如弯曲刚度和杨氏模量)进行了预测。

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