Parvovirus Initiator Protein NS1 and RPA Coordinate Replication Fork Progression in a Reconstituted DNA Replication System
Open Access
- 1 July 2002
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 76 (13), 6518-6531
- https://doi.org/10.1128/jvi.76.13.6518-6531.2002
Abstract
We show here that the DNA helicase activity of the parvoviral initiator protein NS1 is highly directional, binding to the single strand at a recessed 5′ end and displacing the other strand while progressing in a 3′-to-5′ direction on the bound strand. NS1 and a cellular site-specific DNA binding factor, PIF, also known as glucocorticoid modulating element binding protein, bind to the left-end minimal replication origin of minute virus of mice, forming a ternary complex. In this complex, NS1 is activated to nick one DNA strand, becoming covalently attached to the 5′ end of the nick in the process and providing a 3′ OH for priming DNA synthesis. In this situation, the helicase activity of NS1 did not displace the nicked strand, but the origin duplex was distorted by the NS1-PIF complex, as assayed by its sensitivity to KMnO4 oxidation, and a stretch of about 14 nucleotides on both strands of the nicked origin underwent limited unwinding. Addition of Escherichia coli single-stranded DNA binding protein (SSB) did not lead to further unwinding. However, addition of recombinant human single-stranded DNA binding protein (RPA) to the initiation reaction catalyzed extensive unwinding of the nicked origin, suggesting that RPA may be required to form a functional replication fork. Accordingly, the unwinding mediated by NS1 and RPA promoted processive leading-strand synthesis catalyzed by recombinant human DNA polymerase δ, PCNA, and RFC, using the minimal left-end origin cloned in a plasmid as a template. The requirement for RPA, rather than SSB, in the unwinding reaction indicated that specific NS1-RPA protein interactions were formed. NS1 was tested by enzyme-linked immunosorbent assay for binding to two- or three-subunit RPA complexes expressed from recombinant baculoviruses. NS1 efficiently bound each of the baculovirus-expressed complexes, indicating that the small subunit of RPA is not involved in specific NS1 binding. No NS1 interactions were observed with E. coli SSB or other proteins included as controls.Keywords
This publication has 76 references indexed in Scilit:
- Mediation of Proliferating Cell Nuclear Antigen (PCNA)-dependent DNA Replication through a Conserved p21Cip1-like PCNA-binding Motif Present in the Third Subunit of Human DNA Polymerase δJournal of Biological Chemistry, 2001
- Initiation of Minute Virus of Mice DNA Replication Is Regulated at the Level of Origin Unwinding by Atypical Protein Kinase C Phosphorylation of NS1Journal of Virology, 2001
- Identification of a Fourth Subunit of Mammalian DNA Polymerase δJournal of Biological Chemistry, 2000
- Multiple competition reactions for RPA order the assembly of the DNA polymerase delta holoenzymeThe EMBO Journal, 1999
- Epitope Mapping of Aleutian Mink Disease Parvovirus Virion Protein VP1 and 2Scandinavian Journal of Immunology, 1999
- Role of Protein−Protein Interactions in the Function of Replication Protein A (RPA): RPA Modulates the Activity of DNA Polymerase α by Multiple MechanismsBiochemistry, 1997
- Expression and Characterization of the Small Subunit of Human DNA Polymerase δPublished by Elsevier ,1997
- Reconstitution of human replication factor C from its five subunits in baculovirus-infected insect cellsProceedings of the National Academy of Sciences, 1996
- Interactions of human replication protein A with oligonucleotidesBiochemistry, 1994
- DNA Helical Instability Facilitates Initiation at the SV40 Replication OriginJournal of Molecular Biology, 1994