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PMID: 14682823 Published · ppublish English Journal Article

Virus shapes and buckling transitions in spherical shells.

Physical review. E, Statistical, nonlinear, and soft matter physics ·Vol. 68 ·No. 5 Pt 1 ·2003-11-00 ·Pages 051910

Lidmar J, Mirny L, Nelson DR

Abstract

We show that the icosahedral packings of protein capsomeres proposed by Caspar and Klug for spherical viruses become unstable to faceting for sufficiently large virus size, in analogy with the buckling instability of disclinations in two-dimensional crystals. Our model, based on the nonlinear physics of thin elastic shells, produces excellent one-parameter fits in real space to the full three-dimensional shape of large spherical viruses. The faceted shape depends only on the dimensionless Foppl-von Kármán number gamma=YR(2)/kappa, where Y is the two-dimensional Young's modulus of the protein shell, kappa is its bending rigidity, and R is the mean virus radius. The shape can be parametrized more quantitatively in terms of a spherical harmonic expansion. We also investigate elastic shell theory for extremely large gamma, 10(3)<gamma<10(8), and find results applicable to icosahedral shapes of large vesicles studied with freeze fracture and electron microscopy.

MeSH Terms
Crystallography, X-Ray DNA, Viral/chemistry Freeze Fracturing Microscopy, Electron Models, Statistical Polyomavirus/chemistry Viruses/chemistry
Chemicals
DNA, Viral
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Lidmar Jack
Department of Physics, Royal Institute of Technology, AlbaNova, SE-106 91 Stockholm, Sweden.
Mirny Leonid
Nelson David R
Article Info
Journal
Physical review. E, Statistical, nonlinear, and soft matter physics
Abbr.
Phys Rev E Stat Nonlin Soft Matter Phys
ISSN
1539-3755
Published
2003-11-00
Epub
2003-00-25
Pages
051910
Language
English
Region
United States
NLM ID
101136452
Subset
IM
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