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Growth of bacteriophage Mu in Escherichia coli dnaA mutants
Abstract:
In one-step growth experiments we found that bacteriophage Mu grew less efficiently in nonreplicating dnaA mutants than in dnaA+ strains of Escherichia coli. Phage development in dnaA hosts was characterized by latent periods that were 15 to 30 min longer and an average burst size that was reduced by 1.5- to 4-fold. The differences in phage Mu development in dnaA and dnaA+ strains were most pronounced in cells infected at a low multiplicity and became less pronounced in cells infected at a high multiplicity. Many of these differences could be eliminated by allowing the arrested dnaA cells to restart chromosome replication just before infection. In continuous labeling experiments we found that infected dnaA strains incorporated 5 to 40 times more [methyl-3H]thymidine than did uninfected cells, depending on the multiplicity of infection. DNA-DNA hybridization assays showed that greater than 90% of this label was contained in phage Mu DNA sequences and that only small amounts of the label appeared in E. coli sequences. In contrast, substantial amounts of label were incorporated into both host and viral DNA sequences in infected dnaA+ cells. Although our results indicated that phage Mu development is not absolutely dependent on concurrent host chromosomal DNA replication, they did strongly suggest that host replication is necessary for optimal growth of this phage.
Insights
Bacteriophage Mu grows less efficiently in Escherichia coli with non-replicating dnaA proteins. Optimal phage Mu growth requires host chromosome replication, though it is not absolutely essential.
Area of Science:
- Microbiology
- Molecular Biology
- Virology
Background:
- Bacteriophage Mu is a versatile genetic element.
- The dnaA protein is essential for initiating bacterial DNA replication.
- The relationship between host DNA replication and phage replication is not fully understood.
Purpose of the Study:
- To investigate the impact of non-replicating dnaA mutants on bacteriophage Mu growth.
- To determine the necessity of host chromosome replication for optimal phage Mu development.
Main Methods:
- One-step growth experiments with dnaA mutants and wild-type Escherichia coli.
- Continuous labeling experiments using [methyl-3H]thymidine.
- DNA-DNA hybridization assays.
Main Results:
- Phage Mu exhibited longer latent periods and reduced burst sizes in dnaA mutants compared to wild-type E. coli.
- Differences were more pronounced at low multiplicities of infection and could be mitigated by restarting chromosome replication.
- Infected dnaA strains showed significantly higher incorporation of thymidine into phage Mu DNA compared to E. coli DNA.
Conclusions:
- Host chromosome replication is not absolutely required for bacteriophage Mu development.
- Host replication is crucial for optimal bacteriophage Mu growth.
- Phage Mu efficiently utilizes host replication machinery for its own DNA synthesis, even when host replication is impaired.