Conserved and Variable Features of Gag Structure and Arrangement in Immature Retrovirus Particles

Author:

de Marco Alex1,Davey Norman E.1,Ulbrich Pavel2,Phillips Judith M.3,Lux Vanda4,Riches James D.1,Fuzik Tibor2,Ruml Tomas2,Kräusslich Hans-Georg4,Vogt Volker M.3,Briggs John A. G.1

Affiliation:

1. Structural and Computational Biology Unit, European Molecular Biology Laboratory, Meyerhofstrasse 1, 69117 Heidelberg, Germany

2. Department of Biochemistry and Microbiology and Center of Applied Genomics, Institute of Chemical Technology, Prague, Technicka 3, 166 28, Prague, Czech Republic

3. Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York 14853

4. Department of Infectious Diseases, Virology, University Heidelberg, Im Neuenheimer Feld 324, 69120 Heidelberg, Germany

Abstract

ABSTRACT The assembly of retroviruses is driven by oligomerization of the Gag polyprotein. We have used cryo-electron tomography together with subtomogram averaging to describe the three-dimensional structure of in vitro -assembled Gag particles from human immunodeficiency virus, Mason-Pfizer monkey virus, and Rous sarcoma virus. These represent three different retroviral genera: the lentiviruses, betaretroviruses and alpharetroviruses. Comparison of the three structures reveals the features of the supramolecular organization of Gag that are conserved between genera and therefore reflect general principles of Gag-Gag interactions and the features that are specific to certain genera. All three Gag proteins assemble to form approximately spherical hexameric lattices with irregular defects. In all three genera, the N-terminal domain of CA is arranged in hexameric rings around large holes. Where the rings meet, 2-fold densities, assigned to the C-terminal domain of CA, extend between adjacent rings, and link together at the 6-fold symmetry axis with a density, which extends toward the center of the particle into the nucleic acid layer. Although this general arrangement is conserved, differences can be seen throughout the CA and spacer peptide regions. These differences can be related to sequence differences among the genera. We conclude that the arrangement of the structural domains of CA is well conserved across genera, whereas the relationship between CA, the spacer peptide region, and the nucleic acid is more specific to each genus.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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