School of Biology, Georgia Institute of Technology, Atlanta, GA 30332, USA.
Phys Chem Chem Phys. 2009 Dec 7;11(45):10553-64. doi: 10.1039/b912884k. Epub 2009 Oct 19.
Icosahedral viruses are among the smallest and simplest of biological systems. The investigation of their structures represented the first step toward the establishment of molecular biophysics, over half a century ago. Many research groups are now pursuing investigations of viral assembly, a process that could offer new opportunities for the design of antiviral drugs and novel nanoparticles. A variety of experimental, theoretical and computational methods have been brought to bear on the study of virus structure and assembly. In this Perspective we review the contributions of theoretical and computational approaches to our understanding of the structure, energetics, thermodynamics and assembly of DNA bacteriophage and single-stranded icosahedral RNA viruses.
二十面体病毒是最小、最简单的生物系统之一。对其结构的研究代表了半个多世纪前分子生物物理学建立的第一步。现在,许多研究小组正在研究病毒组装,这一过程可能为设计抗病毒药物和新型纳米颗粒提供新的机会。各种实验、理论和计算方法都被应用于病毒结构和组装的研究。在这篇观点文章中,我们回顾了理论和计算方法对我们理解 DNA 噬菌体和单链二十面体 RNA 病毒的结构、能量学、热力学和组装的贡献。