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Induction of protein X in Escherichia coli
Abstract:
Certain treatments that damage DNA and/or inhibit replication in E. coli have been reported to induce synthesis of a new protein, termed protein X, in recA+ lexA+ strains. We have examined some of the treatments that might induce protein X and we have, in particular, tested the hypothesis of Gudas and Pardee (1975) that DNA degradation products play an essential role in the induction process. We confirmed that UV irradiation, nalidixic acid treatment, or thymine starvation result in protein X synthesis in wild type strains. However, we found that UV irradiation, unlike nalidixic acid, also induced protein X in recB strains, in which little DNA degradation occurs. Furthermore, we found that the presence of DNA fragments resulting from host-controlled restriction of phage lambda DNA did not affect protein X synthesis. We conclude that no causal relationship exists between the production of DNA fragments and induction of protein X. The presence of the plasmid R46, which confers enhanced mutagenesis and UV resistance on its host, did not affect protein X synthesis. Growth in the presence of 5-bromouracil, which does not result in production of degradation fragments, resulted eventually in a low rate of protein X synthesis. In dnaA mutants, deficient in the initiation of new rounds of replication, UV irradiation induced protein X, again unlike nalidixic acid. Thus, the inhibition of active replication forks is not an essential requirement for protein X induction.
Insights
DNA damage and replication inhibition in E. coli can induce protein X synthesis. This study found no link between DNA fragments and protein X induction, suggesting replication fork inhibition is not essential.
Area of Science:
- Microbiology
- Molecular Biology
- Genetics
Background:
- DNA-damaging agents and replication inhibitors can induce specific protein synthesis in E. coli.
- The role of DNA degradation products in this induction process has been hypothesized but not fully elucidated.
Purpose of the Study:
- To investigate treatments that induce protein X synthesis in E. coli.
- To test the hypothesis that DNA degradation products are essential for protein X induction.
Main Methods:
- Examined protein X synthesis in wild-type E. coli strains under various conditions (UV irradiation, nalidixic acid, thymine starvation, 5-bromouracil).
- Investigated protein X induction in mutant strains (recB, dnaA) with altered DNA metabolism.
- Assessed the effect of DNA fragments from phage lambda restriction on protein X synthesis.
Main Results:
- UV irradiation, nalidixic acid, and thymine starvation induced protein X synthesis in wild-type E. coli.
- UV irradiation induced protein X in recB mutants (minimal DNA degradation), unlike nalidixic acid.
- DNA fragments from phage lambda restriction did not influence protein X synthesis.
- Protein X was induced in dnaA mutants upon UV irradiation, independent of active replication fork inhibition.
Conclusions:
- No causal relationship exists between DNA degradation products and protein X induction.
- Inhibition of active replication forks is not a prerequisite for protein X induction.