Bacteriophage f1 Infection and Colicin Tolerance
Explore this paper's citation graph
Summary
One interpretation of these results is that an f1 gene product blocks the penetration of colicins which is necessary for their action, whereas the colicin-tolerant mutation blocks the Penetration of Colicins as well as phage f1 DNA.
- Type
- article
- Published
- 1974-01-01
- Cited by
- 23
- References
- 16
- Access
- Open access
- OpenAlex
- https://openalex.org/W1509939271
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38003413
Keywords
Colicin, Biology, Mutant, Bacteriophage, DNA
References
- Synthesis of the Major Bacteriophage f1 Coat Protein
- Genetics and Physiology of Colicin-tolerant Mutants of Escherichia coli
- Replication of bacteriophage M13. I. Sedimentation analysis of crude lysates of M13-infected bacteria.
- Studies on the bacteriophage fl. I. Alkali-induced disassembly of the phage into DNA and protein.
- Bacteriophage f1 Infection: Fate of the Parental Major Coat Protein
- Effects of Growth Inhibitors and Ultraviolet Irradiation on F Pili
- Conditional lethal mutants of the small filamentous coliphage M13. I. Isolation, complementation, cell killing, time of cistron action.
- Effects of Colicins E1 and K on Transport Systems
- Inactivation of ribosomes in vitro by colicin E 3 .
- Association of newly synthesized major f1 coat protein with infected host cell inner membrane.
- SOME PHYSICAL-CHEMICAL AND BIOLOGICAL PROPERTIES OF THE ROD-SHAPED COLIPHAGE M13.
Cited by
- fii, a bacterial locus required for filamentous phage infection and its relation to colicin-tolerant tolA and tolB
- Bacteriophage f1 Infection: Fate of the Parental Major Coat Protein
- Dissection of functional domains in phage fd adsorption protein. Discrimination between attachment and penetration sites.
- Investigating the molecular mechanisms of colicin import into Escherichia coli cells
- A traC mutant that retains sensitivity to f1 bacteriophage but lacks F pili
- Ff coliphages: structural and functional relationships.
- Low-frequency infection of F- bacteria by transducing particles of filamentous bacteriophages
- A hybrid toxin from bacteriophage f1 attachment protein and colicin E3 has altered cell receptor specificity
- USING CHIMERAS TO EVALUATE CROSS-TALK, ENERGY TRANSFER, AND PROTEIN-PROTEIN INTERACTIONS IN THE TONB AND TOLA SYSTEMS
- Effects of bacteriophage f1 gene III protein on the host cell membrane
- A long lytic cycle in filamentous phage Cf1tv infectingXanthomonas campestris pv.citri
- Release of periplasmic proteins induced in E. coli by expression of an N‐terminal proximal segment of the phage fd gene 3 protein
- Analysis of the Escherichia coli Tol-Pal and TonB systems by periplasmic production of Tol, TonB, colicin, or phage capsid soluble domains.
- Relation of cell growth and colicin tolerance to vitamin B12 uptake in Escherichia coli
- Functional analysis of the adsorption protein of two filamentous phages with different host specificities.
- Colicinogeny and related phenomena.
- The single-stranded DNA phages.
- DNA-Protein Interactions in f1 DNA Replication
- Bovine respiratory disease in beef calves supported long transport stress: An epidemiological study and strategies for control and prevention.
- CHAPTER 5 - The mechanism of action of colicin E2, colicin E3 and cloacin DF13
Related papers
- Assessment of resistance to colicinogenic Escherichia coli by E. coli O157:H7 strains
- THE REGULATION OF COLICIN SYNTHESIS AND COLICIN FACTOR TRANSFER IN ESCHERICHIA COLI K12.
- Characterization of Escherichia coli Mutants Tolerant to Bacteriocin JF246: Two New Classes of Tolerant Mutants
- Interaction of Colicins with Bacterial Cells III. Colicin-tolerant Mutations in Escherichia coli
- O-Antigen-Dependent Colicin Insensitivity of Uropathogenic Escherichia coli
- Isolation and Characterization of an Escherichia coli Mutant Tolerant to Colicins Ia and Ib
- Mutations to tolerance and resistance to pesticin and colicins in Escherichia coli phi
- Colicin concentrations inhibit growth of Escherichia coli O157:H7 in vitro.
- Colicins B and Ia as novel counterselective agents in interspecies conjugal DNA transfers from colicin-sensitive Escherichia coli donors to other gram-negative recipient species.