The Crystal Structure of PF-8, the DNA Polymerase Accessory Subunit from Kaposi's Sarcoma-Associated Herpesvirus
Author
Baltz, Jennifer L.
Filman, David J.
Ciustea, Mihai
Silverman, Janice Y.
Lautenschlager, Catherine L.
Coen, Donald M.
Ricciardi, Robert P.
Hogle, James M.
Published Version
https://doi.org/10.1128/JVI.01158-09Metadata
Show full item recordCitation
Baltz, J. L., D. J. Filman, M. Ciustea, J. E. Y. Silverman, C. L. Lautenschlager, D. M. Coen, R. P. Ricciardi, and J. M. Hogle. 2009. “The Crystal Structure of PF-8, the DNA Polymerase Accessory Subunit from Kaposi’s Sarcoma-Associated Herpesvirus.” Journal of Virology 83 (23): 12215–28. https://doi.org/10.1128/jvi.01158-09.Abstract
Kaposi's sarcoma-associated herpesvirus is an emerging pathogen whose mechanism of replication is poorly understood. PF-8, the presumed processivity factor of Kaposi's sarcoma-associated herpesvirus DNA polymerase, acts in combination with the catalytic subunit, Pol-8, to synthesize viral DNA. We have solved the crystal structure of residues 1 to 304 of PF-8 at a resolution of 2.8 angstrom. This structure reveals that each monomer of PF-8 shares a fold common to processivity factors. Like human cytomegalovirus UL44, PF-8 forms a head-to-head dimer in the form of a C clamp, with its concave face containing a number of basic residues that are predicted to be important for DNA binding. However, there are several differences with related proteins, especially in loops that extend from each monomer into the center of the C clamp and in the loops that connect the two subdomains of each protein, which may be important for determining PF-8's mode of binding to DNA and to Pol-8. Using the crystal structures of PF-8, the herpes simplex virus catalytic subunit, and RB69 bacteriophage DNA polymerase in complex with DNA and initial experiments testing the effects of inhibition of PF-8-stimulated DNA synthesis by peptides derived from Pol-8, we suggest a model for how PF-8 might form a ternary complex with Pol-8 and DNA. The structure and the model suggest interesting similarities and differences in how PF-8 functions relative to structurally similar proteins.Terms of Use
This article is made available under the terms and conditions applicable to Other Posted Material, as set forth at http://nrs.harvard.edu/urn-3:HUL.InstRepos:dash.current.terms-of-use#LAACitable link to this page
http://nrs.harvard.edu/urn-3:HUL.InstRepos:41483026
Collections
- HMS Scholarly Articles [17875]
Contact administrator regarding this item (to report mistakes or request changes)