Genome Packaging Sense Is Controlled by the Efficiency of the Nick Site in the Right-End Replication Origin of Parvoviruses Minute Virus of Mice and LuIII
- 15 February 2005
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 79 (4) , 2287-300
- https://doi.org/10.1128/jvi.79.4.2287-2300.2005
Abstract
The parvovirus minute virus of mice (MVM) packages predominantly negative-sense single strands, while its close relative LuIII encapsidates strands of both polarities with equal efficiency. Using genomic chimeras and mutagenesis, we show that the ability to package positive strands maps not, as originally postulated, to divergent untranslated regions downstream of the capsid gene but to the viral hairpins and predominantly to the nick site of OriR, the right-end replication origin. In MVM, the sequence of this site is 5'-CTAT(black triangle down)TCA-3', while in LuIII a two-base insertion (underlined) changes it to 5'-CTATAT(black triangle down)TCA-3'. Matched LuIII genomes differing only at this position (designated LuIII and LuDelta2) packaged 47 and <8% positive-sense strands, respectively. OriR sequences from these viruses were both able to support NS1-mediated nicking in vitro, but initiation efficiency was consistently two- to threefold higher for LuDelta2 derivatives, suggesting that LuIII's ability to package positive strands is determined by a suboptimal right-end origin rather than by strand-specific packaging sequences. These observations support a mathematical "kinetic hairpin transfer" model, previously described by Chen and colleagues (K. C. Chen, J. J. Tyson, M. Lederman, E. R. Stout, and R. C. Bates, J. Mol. Biol. 208:283-296, 1989), that postulates that preferential excision of particular strands is solely responsible for packaging specificity. By analyzing replicative-form (RF) DNA generated in vivo during LuIII and LuDelta2 infections, we extend this model, showing that positive-sense strands do accumulate in LuDelta2 infections as part of duplex RF DNA, but these do not support packaging. However, replication is biphasic, so that accumulation of positive-sense strands is ultimately suppressed, probably because the onset of packaging removes newly displaced single strands from the replicating pool.Keywords
This publication has 56 references indexed in Scilit:
- A conserved leucine that constricts the pore through the capsid fivefold cylinder plays a central role in parvoviral infectionVirology, 2004
- Resolution of Parvovirus Dimer Junctions Proceeds through a Novel Heterocruciform IntermediateJournal of Virology, 2003
- Parvovirus Initiator Protein NS1 and RPA Coordinate Replication Fork Progression in a Reconstituted DNA Replication SystemJournal of Virology, 2002
- The Left-End and Right-End Origins of Minute Virus of Mice DNA Differ in Their Capacity to Direct Episomal Amplification and Integration In VivoVirology, 2001
- cis Requirements for the Efficient Production of Recombinant DNA Vectors Based on Autonomous ParvovirusesHuman Gene Therapy, 1999
- DNA replication in the autonomous parvovirusesSeminars in Virology, 1995
- Analysis of the kinetic hairpin transfer model for parvoviral DNA replicationJournal of Theoretical Biology, 1990
- A kinetic hairpin transfer model for parvoviral DNA replicationJournal of Molecular Biology, 1989
- Interrelation between Viral and Cellular DNA Synthesis in Mouse Cells Infected with the Parvovirus Minute Virus of MiceJournal of General Virology, 1983
- Rolling hairpin model for replication of parvovirus and linear chromosomal DNANature, 1976