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Nuclear Localization Signals in Prototype Foamy Viral Integrase for Successive Infection and Replication in Dividing Cells
- Source :
- Molecules and Cells
- Publication Year :
- 2014
- Publisher :
- Korean Society for Molecular and Cellular Biology, 2014.
-
Abstract
- We identified four basic amino acid residues as nuclear localization signals (NLS) in the C-terminal domain of the prototype foamy viral (PFV) integrase (IN) protein that were essential for viral replication. We constructed seven point mutants in the C-terminal domain by changing the lysine and arginine at residues 305, 308, 313, 315, 318, 324, and 329 to threonine or proline, respectively, to identify residues conferring NLS activity. Our results showed that mutation of these residues had no effect on expression assembly, release of viral particles, or in vitro recombinant IN enzymatic activity. However, mutations at residues 305 (R → T), 313(R → T), 315(R → P), and 329(R → T) lead to the production of defective viral particles with loss of infectivity, whereas non-defective mutations at residues 308(R → T), 318(K → T), and 324(K → T) did not show any adverse effects on subsequent production or release of viral particles. Sub-cellular fractionation and immunostaining for viral protein PFV-IN and PFV-Gag localization revealed predominant cytoplasmic localization of PFV-IN in defective mutants, whereas cytoplasmic and nuclear localization of PFV-IN was observed in wild type and non-defective mutants. However sub-cellular localization of PFV-Gag resulted in predominant nuclear localization and less presence in the cytoplasm of the wild type and non-defective mutants. But defective mutants showed only nuclear localization of Gag. Therefore, we postulate that four basic arginine residues at 305, 313, 315 and 329 confer the karyoplilic properties of PFV-IN and are essential for successful viral integration and replication.
- Subjects :
- Cytoplasm
Viral protein
Virus Integration
Nuclear Localization Signals
Mutant
Gene Products, gag
Arginine
Virus Replication
medicine.disease_cause
Cell Line
Viral Proteins
Cricetinae
medicine
Animals
Point Mutation
Spumavirus
Molecular Biology
Research Articles
Cell Nucleus
Integrases
biology
Point mutation
Wild type
Cell Biology
General Medicine
nuclear localization signal
biology.organism_classification
Molecular biology
Integrase
retrovirus
Viral replication
biology.protein
prototype foamy virus
integrase
mutation
Nuclear localization sequence
Retroviridae Infections
Subjects
Details
- ISSN :
- 02191032 and 10168478
- Volume :
- 37
- Database :
- OpenAIRE
- Journal :
- Molecules and Cells
- Accession number :
- edsair.doi.dedup.....9de043fd363898108bf0b14a3a1e4efb