I present a review of the theoretical and computational methodologies that have been used to model the assembly of viral capsids. I discuss the capabilities and limitations of approaches ranging from equilibrium continuum theories to molecular dynamics simulations, and I give an overview of some of the important conclusions about virus assembly that have resulted from these modeling efforts. Topics include the assembly of empty viral shells, assembly around single-stranded nucleic acids to form viral particles, and assembly around synthetic polymers or charged nanoparticles for nanotechnology or biomedical applications. I present some examples in which modeling efforts have promoted experimental breakthroughs, as well as directions in which the connection between modeling and experiment can be strengthened.
Modeling Viral Capsid Assembly.
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作者:Hagan, Michael, F
| 期刊: | Advances in Chemical Physics | 影响因子: | 0.000 |
| 时间: | 2014 | 起止号: | 2014;155:1-68 |
| doi: | 10.1002/9781118755815.ch01 | ||
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