4.8 Article

Cryo-EM structure of a herpesvirus capsid at 3.1 angstrom

Journal

SCIENCE
Volume 360, Issue 6384, Pages 48-+

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aao7283

Keywords

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Funding

  1. National Key Research and Development Program [2017YFC0840300, 2014CB542800, 2014CBA02003, 2016YFA0501100, 2017YFA0504700]
  2. Strategic Priority Research Program [XDB08000000]
  3. National Science Foundation of China [813300237, 31570717, 91530321, 31570742, 81520108019]
  4. Natural Science Foundation of Hunan Province [2017RS3033]
  5. CAST
  6. program C of One Hundred Talented People of the Chinese Academy of Sciences
  7. Office of Global Experts Recruitment in China

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Structurally and genetically, human herpesviruses are among the largest and most complex of viruses. Using cryo-electron microscopy (cryo-EM) with an optimized image reconstruction strategy, we report the herpes simplex virus type 2 (HSV-2) capsid structure at 3.1 angstroms, which is built up of about 3000 proteins organized into three types of hexons (central, peripentonal, and edge), pentons, and triplexes. Both hexons and pentons contain the major capsid protein, VP5; hexons also contain a small capsid protein, VP26; and triplexes comprise VP23 and VP19C. Acting as core organizers, VP5 proteins form extensive intermolecular networks, involving multiple disulfide bonds (about 1500 in total) and noncovalent interactions, with VP26 proteins and triplexes that underpin capsid stability and assembly. Conformational adaptations of these proteins induced by their microenvironments lead to 46 different conformers that assemble into a massive quasisymmetric shell, exemplifying the structural and functional complexity of HSV.

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