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Curating viscoelastic properties of icosahedral viruses virus-based nanomaterials and protein cages

机译:二十面体病毒基于病毒的纳米材料和蛋白笼的固化粘弹性质

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摘要

The beauty, symmetry, and functionality of icosahedral virus capsids has attracted the attention of biologists, physicists, and mathematicians ever since they were first observed. Viruses and protein cages assemble into functional architectures in a range of sizes, shapes, and symmetries. To fulfill their biological roles, these structures must self-assemble, resist stress, and are often dynamic. The increasing use of icosahedral capsids and cages in materials science has driven the need to quantify them in terms of structural properties such as rigidity, stiffness, and viscoelasticity. In this study, we employed Quartz Crystal Microbalance with Dissipation technology (QCM-D) to characterize and compare the mechanical rigidity of different protein cages and viruses. We attempted to unveil the relationships between rigidity, radius, shell thickness, and triangulation number. We show that the rigidity and triangulation numbers are inversely related to each other and the comparison of rigidity and radius also follows the same trend. Our results suggest that subunit orientation, protein–protein interactions, and protein–nucleic acid interactions are important for the resistance to deformation of these complexes, however, the relationships are complex and need to be explored further. The QCM-D based viscoelastic measurements presented here help us elucidate these relationships and show the future prospect of this technique in the field of physical virology and nano-biotechnology.
机译:自从二十面体病毒衣壳被首次发现以来,它的美丽,对称和功能吸引了生物学家,物理学家和数学家的注意力。病毒和蛋白质笼子组装成具有各种大小,形状和对称性的功能结构。为了发挥其生物学作用,这些结构必须能够自我组装,抵抗压力并且通常是动态的。二十面体衣壳和笼子在材料科学中的使用越来越多,这促使人们有必要根据刚度,刚度和粘弹性等结构特性对其进行量化。在这项研究中,我们采用带耗散技术的石英晶体微量天平(QCM-D)来表征和比较不同蛋白笼和病毒的机械刚度。我们试图揭示刚性,半径,壳体厚度和三角剖分数之间的关系。我们表明,刚度和三角剖分数彼此成反比,并且刚度和半径的比较也遵循相同的趋势。我们的结果表明,亚基的取向,蛋白质与蛋白质的相互作用以及蛋白质与核酸的相互作用对这些复合物的抗变形性很重要,但是,这种关系是复杂的,需要进一步探讨。此处介绍的基于QCM-D的粘弹性测量有助于我们阐明这些关系,并显示该技术在物理病毒学和纳米生物技术领域的未来前景。

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