Replication origin of bacteriophage f1. Two signals required for its function.
Explore this paper's citation graph
Summary
It is concluded that the nucleotide sequence at the f1 plus origin contains at least two specific signals that are required for efficient plus strand synthesis.
- Type
- article
- Published
- 1982-12-05
- Cited by
- 29
- References
- 16
- OpenAlex
- https://openalex.org/W1513293846
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20203030
Keywords
Biology, Bacteriophage, Gene, Genetics, Nucleotide
References
- Replication of phase fd RF with fd gene 2 protein and phage T4 enzymes.
- Nucleotide sequence of bacteriophage φX174 DNA
- Purification and characterization of phiX174 gene A protein. A multifunctional enzyme of duplex DNA replication.
- Bacteriophage fd gene II-protein. II. Specific cleavage and relaxation of supercoiled RF from filamentous phages.
- The genetic map of the filamentous bacteriophage f1.
- Functional analysis of bacteriophage f1 intergenic region.
- Replication of a plasmid containing two origins of bacteriophage.
- Cleavage site of bacteriophage fd gene II-protein in the origin of viral strand replication
- Recognition sequence of bacteriophage ΦX174 gene A protein — an initiator of DNA replication
- Construction and characterization of new cloning vehicles. II. A multipurpose cloning system.
- Deletion analysis of the cloned replication origin region from bacteriophage M13
- Construction and characterization of amplifiable multicopy DNA cloning vehicles derived from the P15A cryptic miniplasmid
- Bacteriophage fd gene II-protein. I. Purification, involvement in RF replication, and the expression of gene II.
- Extracellular nucleases of Pseudomonas BAL 31. I. Characterization of single strand-specific deoxyriboendonuclease and double-strand deoxyriboexonuclease activities.
- Methods in Enzymology , Vol
Cited by
- The functional origin of bacteriophage f1 DNA replication. Its signals and domains.
- Aspects of the growth and regulation of the filamentous phages.
- Single-stranded DNA phage origins.
- The Molecular Biology of Bacterial Virus Systems
- Interaction between the replication origin and the initiator protein of the filamentous phage f1. Binding occurs in two steps.
- Ff coliphages: structural and functional relationships.
- Mutational mechanisms by which an inactive replication origin of bacteriophage M13 is turned on are similar to mechanisms of activation of ras proto-oncogenes
- In vitro deletion mapping of the viral strand replication origin of Pseudomonas bacteriophage Pf3
- The Exo-gap method employing the phage f1 endonuclease generates a nested set of unidirectional deletions.
- Reduction of the minimal sequence for initiation of DNA synthesis by qualitative or quantitative changes of an initiator protein
- Interaction between gene II protein and the DNA replication origin of bacteriophage f1.
- Initiation mechanisms in replication of filamentous phage DNA
- [Origin of DNA replication of filamentous coliphages].
- Comparison of the DNA Sequences Involved in Replication and Packaging of the Filamentous Phages IKe and Ff (M13, fd, and fl)
- Rho-dependence of the terminator active at the end of the I region of transcription of bacteriophage f1
- DNA cloning vectors utilizing replication functions of the filamentous phages of Escherichia coli.
- pKUN, vectors for the separate production of both DNA strands of recombinant plasmids.
- Why is the initiation nick site of an AT‐rich rolling circle plasmid at the tip of a GC‐rich cruciform?
- Induction of a DNA Nickase in the Presence of Its Target Site Stimulates Adaptive Mutation in Escherichia coli
- The morphogenetic signal of bacteriophage f1.
Related papers
- Studies on the Nucleotides and Their Related Substances in Dried Laver
- Free nucleotides in bromodeoxyuridine-treated neuroblastoma cells
- A classification of central nucleotides induced by the influence of neighboring nucleotides in triplets
- Inactivation of bacteriophage T4, of poly-D-alanyl bacteriophage and of penicilloyl bacteriophage by immunospecifically isolated IgM and IgG antibodies.
- THE IN VIVO INTERACTION BETWEEN STAPHYLOCOCCUS BACTERIOPHAGE AND STAPHYLOCOCCUS AUREUS
- Electrophoretic Transport of Single DNA Nucleotides through Nanoslits: A Molecular Dynamics Simulation Study.
- Isolation and characterization of a bacteriophage and its potential to disrupt multi-drug resistant Pseudomonas aeruginosa biofilms.
- Electrophoretic Transport of Single DNA Nucleotides through Nanoslits: A Molecular Dynamics Simulation Study B