The Essential Human Cytomegalovirus Gene UL52 Is Required for Cleavage-Packaging of the Viral Genome
- 1 March 2008
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 82 (5) , 2065-2078
- https://doi.org/10.1128/jvi.01967-07
Abstract
Replication of human cytomegalovirus (HCMV) produces large DNA concatemers of head-to-tail-linked viral genomes that upon packaging into capsids are cut into unit-length genomes. The mechanisms underlying cleavage-packaging and the subsequent steps prior to nuclear egress of DNA-filled capsids are incompletely understood. The hitherto uncharacterized product of the essential HCMV UL52 gene was proposed to participate in these processes. To investigate the function of pUL52, we constructed a DeltaUL52 mutant as well as a complementing cell line. We found that replication of viral DNA was not impaired in noncomplementing cells infected with the DeltaUL52 virus, but viral concatemers remained uncleaved. Since the subnuclear localization of the known cleavage-packaging proteins pUL56, pUL89, and pUL104 was unchanged in DeltaUL52-infected fibroblasts, pUL52 does not seem to act via these proteins. Electron microscopy studies revealed only B capsids in the nuclei of DeltaUL52-infected cells, indicating that the mutant virus has a defect in encapsidation of viral DNA. Generation of recombinant HCMV genomes encoding epitope-tagged pUL52 versions showed that only the N-terminally tagged pUL52 supported viral growth, suggesting that the C terminus is crucial for its function. pUL52 was expressed as a 75-kDa protein with true late kinetics. It localized preferentially to the nuclei of infected cells and was found to enclose the replication compartments. Taken together, our results demonstrate an essential role for pUL52 in cleavage-packaging of HCMV DNA. Given its unique subnuclear localization, the function of pUL52 might be distinct from that of other cleavage-packaging proteins.Keywords
This publication has 57 references indexed in Scilit:
- Putative Terminase Subunits of Herpes Simplex Virus 1 Form a Complex in the Cytoplasm and Interact with Portal Protein in the NucleusJournal of Virology, 2007
- Use of Bacterial Artificial Chromosomes in Generating Targeted Mutations in Human and Mouse CytomegalovirusesCurrent Protocols in Immunology, 2007
- Allosteric Signaling and a Nuclear Exit Strategy: Binding of UL25/UL17 Heterodimers to DNA-Filled HSV-1 CapsidsMolecular Cell, 2007
- The Capsid-Associated UL25 Protein of the Alphaherpesvirus Pseudorabies Virus Is Nonessential for Cleavage and Encapsidation of Genomic DNA but Is Required for Nuclear Egress of CapsidsJournal of Virology, 2006
- Herpes Simplex Virus Capsid Structure: DNA Packaging Protein UL25 Is Located on the External Surface of the Capsid near the VerticesJournal of Virology, 2006
- Identification of the Interaction Domain of the Small Terminase Subunit pUL89 with the Large Subunit pUL56 of Human CytomegalovirusBiochemistry, 2006
- Construction of a Cytomegalovirus-Based Amplicon: A Vector with a Unique Transfer CapacityHuman Gene Therapy, 2003
- Packaging of Genomic and Amplicon DNA by the Herpes Simplex Virus Type 1 UL25-Null Mutant KUL25NSJournal of Virology, 2001
- Genetic Evidence of an Essential Role for Cytomegalovirus Small Capsid Protein in Viral GrowthJournal of Virology, 2001
- Extension of Life-Span by Introduction of Telomerase into Normal Human CellsScience, 1998