Unwinding of a Herpes Simplex Virus Type 1 Origin of Replication (OriS) by a Complex of the Viral Origin Binding Protein and the Single-Stranded DNA Binding Protein
Explore this paper's citation graph
Summary
A herpes simplex virus type 1 (HSV-1) OriS analogue in which the A+T sequence linking the box I and II elements was replaced by two single-stranded oligo(dT)s is unwound by the UL9 protein-ICP8 complex, which supports a model for the unwinding of OriS.
- Type
- article
- Published
- 2000-06-15
- Cited by
- 30
- References
- 11
- Access
- Open access
- OpenAlex
- https://openalex.org/W1971038208
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25562876
Keywords
Single-stranded binding protein, Biology, Ter protein, DNA replication, DNA
References
- The herpes simplex virus type-1 origin binding protein. DNA helicase activity.
- The herpes simplex virus 1 origin binding protein: a DNA helicase.
- Mutations in a herpes simplex virus type 1 origin that inhibit interaction with origin-binding protein also inhibit DNA replication
- Herpes simplex virus type 1 origin-specific binding protein: oriS-binding properties and effects of cellular proteins
- Purification and characterization of UL9, the herpes simplex virus type 1 origin-binding protein
- Herpes simplex virus proteins: DNA-binding proteins in infected cells and in the virus structure.
- Unwinding of the box I element of a herpes simplex virus type 1 origin by a complex of the viral origin binding protein, single-strand DNA binding protein, and single-stranded DNA.
- Interaction of origin binding protein with an origin of replication of herpes simplex virus 1.
- DNA sequence of the region in the genome of herpes simplex virus type 1 containing the genes for DNA polymerase and the major DNA binding protein.
- Herpes simplex virus DNA replication: the UL9 gene encodes an origin-binding protein.
- Replication of Herpes Simplex Virus DNA*
Cited by
- Etudes fonctionnelles et structurales des complexes Hélicase-Primase du virus Epstein-Barr
- Herpes simplex virus type-1: a model for genome transactions.
- Glycoprotein Targeted Therapeutics: A New Era of Anti-Herpes Simplex Virus-1 Therapeutics
- Complete DNA Sequence Analyses of the First Two Varicella-Zoster Virus Glycoprotein E (D150N) Mutant Viruses Found in North America: Evolution of Genotypes with an Accelerated Cell Spread Phenotype
- Two-dimensional crystallization of herpes simplex virus type 1 single-stranded DNA-binding protein, ICP8, on a lipid monolayer.
- Intermediates revealed in the kinetic mechanism for DNA unwinding by a monomeric helicase
- An initial ATP-independent step in the unwinding of a herpes simplex virus type I origin of replication by a complex of the viral origin-binding protein and single-strand DNA-binding protein
- The bipolar filaments formed by Herpes simplex virus type 1 SSB/recombination protein (ICP8) suggest a mechanism for DNA annealing
- ATP-dependent Unwinding of a Minimal Origin of DNA Replication by the Origin-binding Protein and the Single-strand DNA-binding Protein ICP8 from Herpes Simplex Virus Type I*
- DNA tracts composed of only two bases concentrate in gene promoters.
- Association between the Herpes Simplex Virus-1 DNA Polymerase and Uracil DNA Glycosylase*♦
- Modulation of the Herpes Simplex Virus Type-1 UL9 DNA Helicase by Its Cognate Single-strand DNA-binding Protein, ICP8*
- Origin-specific unwinding of herpes simplex virus 1 DNA by the viral UL9 and ICP8 proteins: Visualization of a specific preunwinding complex
- Herpes Virus Replication
- Conformational change in the herpes simplex single-strand binding protein induced by DNA.
- Residues within the Conserved Helicase Motifs of UL9, the Origin-binding Protein of Herpes Simplex Virus-1, Are Essential for Helicase Activity but Not for Dimerization or Origin Binding Activity*
- Dual Functions of Single-stranded DNA-binding Protein in Helicase Loading at the Bacteriophage T4 DNA Replication Fork*
- Understanding helicases as a means of virus control.
- Activation of the Herpes Simplex Virus Type-1 Origin-binding Protein (UL9) by Heat Shock Proteins*
- Characterization of Varicella-Zoster Virus Gene 21 and 29 Proteins in Infected Cells
Related papers
- Unwinding of the box I element of a herpes simplex virus type 1 origin by a complex of the viral origin binding protein, single-strand DNA binding protein, and single-stranded DNA.
- The dnaAcos allele of Escherichia coli: hyperactive initiation is caused by substitution of A184V and Y271H, resulting in defective ATP binding and aberrant DNA replication control
- An initial ATP-independent step in the unwinding of a herpes simplex virus type I origin of replication by a complex of the viral origin-binding protein and single-strand DNA-binding protein
- Domains of the BPV-1 E1 replication protein required for origin-specific DNA binding and interaction with the E2 transactivator.
- Purification and characterization of replication protein A, a cellular protein required for in vitro replication of simian virus 40 DNA.
- Binding of simian virus 40 a protein to DNA with deletions at the origin of replication
- The Interaction of Herpes Simplex Type 1 Virus Origin-binding Protein (UL9 Protein) with Box I, the High Affinity Element of the Viral Origin of DNA Replication*
- The acidic C-terminus of vaccinia virus I3 single-strand binding protein promotes proper assembly of DNA-protein complexes.
- The Expression of N-Terminal Deletion DNA Pilot Proteins Inhibits the Early Stages of φX174 Replication
- The transactivation and DNA binding domains of the BPV-1 E2 protein have different roles in cooperative origin binding with the E1 protein.