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首页> 外文期刊>Journal of Physics. Condensed Matter >TensorCalculator: exploring the evolution of mechanical stress in the CCMV capsid
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TensorCalculator: exploring the evolution of mechanical stress in the CCMV capsid

机译:Tensorcalculator:探索CCMV衣壳中机械应力的演变

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摘要

A new computational methodology for the accurate numerical calculation of the Cauchy stress tensor, stress invariants, principal stress components, von Mises and Tresca tensors is developed. The methodology is based on the atomic stress approach which permits the calculation of stress tensors, widely used in continuum mechanics modeling of materials properties, using the output from the MD simulations of discrete atomic and C-alpha-based coarsegrained structural models of biological particles. The methodology mapped into the software package TensorCalculator was successfully applied to the empty cowpea chlorotic mottle virus (CCMV) shell to explore the evolution of mechanical stress in this mechanically-tested specific example of a soft virus capsid. We found an inhomogeneous stress distribution in various portions of the CCMV structure and stress transfer from one portion of the virus structure to another, which also points to the importance of entropic effects, often ignored in finite element analysis and elastic network modeling. We formulate a criterion for elastic deformation using the first principal stress components. Furthermore, we show that von Mises and Tresca stress tensors can be used to predict the onset of a viral capsid's mechanical failure, which leads to total structural collapse. TensorCalculator can be used to study stress evolution and dynamics of defects in viral capsids and other large-size protein assemblies.
机译:开发了一种新的计算方法,用于CAUCHY压力张量,应力不变,主应力分量,VONMES和TRESCA张量的准确数值计算。该方法基于原子应力方法,允许计算压力张量,广泛用于材料特性的连续力学建模,使用来自生物颗粒的离散原子和C-α的粗大结构模型的MD模拟的输出。映射到软件包Tensorcalculator的方法成功地应用于空豇豆氯化斑块病毒(CCMV)壳,以探讨该机械测试的软病毒衣壳的具体实例中机械应力的演变。我们发现CCMV结构的各个部分的不均匀应力分布和从病毒结构的一部分到另一部分的应力转移,这也指向熵效应的重要性,通常在有限元分析和弹性网络建模中忽略。我们使用第一主应力分量制定弹性变形的标准。此外,我们表明Von Mises和Tresca应力张量可用于预测病毒衣壳的机械故障的发作,这导致完全结构崩溃。 Tensorcalculator可用于研究病毒衣壳和其他大尺寸蛋白质组件的缺陷的应力演化和动力学。

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