Capsid Structure of Kaposi's Sarcoma-Associated Herpesvirus, a Gammaherpesvirus, Compared to Those of an Alphaherpesvirus, Herpes Simplex Virus Type 1, and a Betaherpesvirus, Cytomegalovirus
Open Access
- 15 March 2001
- journal article
- research article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 75 (6) , 2879-2890
- https://doi.org/10.1128/jvi.75.6.2879-2890.2001
Abstract
The capsid of Kaposi's sarcoma-associated herpesvirus (KSHV) was visualized at 24-Å resolution by cryoelectron microscopy. Despite limited sequence similarity between corresponding capsid proteins, KSHV has the same T=16 triangulation number and much the same capsid architecture as herpes simplex virus (HSV) and cytomegalovirus (CMV). Its capsomers are hexamers and pentamers of the major capsid protein, forming a shell with a flat, close-packed, inner surface (the “floor”) and chimney-like external protrusions. Overlying the floor at trigonal positions are (αβ 2 ) heterotrimers called triplexes. The floor structure is well conserved over all three viruses, and the most variable capsid features reside on the outer surface, i.e., in the shapes of the protrusions and triplexes, in which KSHV resembles CMV and differs from HSV. Major capsid protein sequences from the three subfamilies have some similarity, which is closer between KSHV and CMV than between either virus and HSV. The triplex proteins are less highly conserved, but sequence analysis identifies relatively conserved tracts. In alphaherpesviruses, the α-subunit (VP19c in HSV) has a 100-residue N-terminal extension and an insertion near the C terminus. The small basic capsid protein sequences are highly divergent: whereas the HSV and CMV proteins bind only to hexons, difference mapping suggests that the KSHV protein, ORF65, binds around the tips of both hexons and pentons.Keywords
This publication has 76 references indexed in Scilit:
- The herpes simplex virus procapsid: structure, conformational changes upon maturation, and roles of the triplex proteins VP19c and VP23 in assemblyPublished by Elsevier ,2004
- Lytic Replication of Kaposi's Sarcoma-Associated Herpesvirus Results in the Formation of Multiple Capsid Species: Isolation and Molecular Characterization of A, B, and C Capsids from a GammaherpesvirusJournal of Virology, 2001
- The role of HHV-8 in Kaposi's sarcomaSeminars in Cancer Biology, 1999
- Human Serum Antibodies to a Major Defined Epitope of Human Herpesvirus 8 Small Viral Capsid AntigenThe Journal of Infectious Diseases, 1999
- Structure of the Human Cytomegalovirus B Capsid by Electron Cryomicroscopy and Image ReconstructionJournal of Structural Biology, 1998
- Assembly of the Herpes Simplex Virus Capsid: Characterization of Intermediates Observed During Cell-free Capsid FormationJournal of Molecular Biology, 1996
- Digital Image Processing of Electron Micrographs: The PIC System-IIIJournal of Structural Biology, 1996
- CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choiceNucleic Acids Research, 1994
- The Effects of Radiation Damage on the Structure of Frozen Hydrated HSV-1 CapsidsJournal of Structural Biology, 1993
- Structure of the Herpes Simplex Virus Capsid Molecular Composition of the Pentons and the TriplexesJournal of Molecular Biology, 1993