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Plasmid mode of propagation of the genetic element P4
Abstract:
The satellite bacteriophage P4, in the presence of a helper phage, can enter either the lytic or the lysogenic cycle. In the absence of the helper, P4 can integrate in the bacterial chromosome. In addition, the partially immunity-insensitive mutant P4 vir1 can be maintained as a plasmid. We have found that in the absence of the helper, P4 wt also can be maintained as a plasmid, and that both P4 wt and P4 vir1 have two options for their intracellular propagation: a repressed-integrated or a derepressed-high copy number plasmid mode of maintenance. In the repressed mode, the P4 wt genome is only found integrated into the bacterial chromosome, while the P4 vir1 is found also as a low copy number plasmid coexisting with the integrated P4 vir1 genome. The clones carrying P4 in the derepressed-high copy number plasmid state are obtained at low frequency (0.3%) upon infection with P4 wt, while the vir1 mutation increases this frequency about 300-fold. Such clones can be distinguished easily because of their typical colony morphology (rosettes), due to the presence of filamentous cells. Filamentation of the bacterial host suggests that the presence of derepressed P4 genomes in high copy number interferes with the normal cell division mechanism. The derepressed clones are rather stable, but may revert spontaneously to the repressed state. Spontaneous transition from the repressed to the derepressed state was not observed; however, it can be induced by P2 or P4 vir1 superinfection of P4 wt and P4 vir1 lysogens or by growing the P4 vir1 lysogens up to the late exponential phase. The ability of P4 to choose either of two stable states and the potential to shift between these two modes of propagation indicate that the synthesis of the immunity repressor is regulated.
Insights
Satellite bacteriophage P4 exhibits two propagation modes: repressed integration or derepressed high-copy plasmid. The P4 vir1 mutant significantly enhances plasmid maintenance, revealing regulated immunity repressor synthesis.
Area of Science:
- * Molecular Biology
- * Virology
- * Genetics
Background:
- * Satellite bacteriophage P4 can utilize helper phages for lytic or lysogenic cycles.
- * P4 integrates into the bacterial chromosome in the absence of a helper phage.
- * A mutant, P4 vir1, can be maintained as a plasmid due to partial immunity insensitivity.
Purpose of the Study:
- * To investigate the intracellular propagation modes of wild-type (wt) P4 and P4 vir1 in the absence of a helper phage.
- * To determine if P4 can be maintained as a plasmid under these conditions.
- * To characterize the stability and regulation of P4's maintenance states.
Main Methods:
- * Infection of bacterial hosts with P4 wt and P4 vir1.
- * Analysis of P4 genome maintenance (integration vs. plasmid).
- * Observation of colony morphology and cell division for phenotypic characterization.
Main Results:
- * Both P4 wt and P4 vir1 can be maintained as plasmids in the absence of a helper phage.
- * Two distinct states were identified: repressed-integrated and derepressed-high copy number plasmid.
- * The P4 vir1 mutation significantly increased the frequency of derepressed plasmid maintenance (approx. 300-fold).
- * Derepressed P4 genomes in high copy number lead to bacterial filamentation, suggesting interference with cell division.
- * Clones in the derepressed state are relatively stable but can revert to the repressed state.
Conclusions:
- * P4 exhibits plasticity in its intracellular propagation, utilizing both integrated and plasmid forms.
- * The P4 vir1 mutation enhances the transition to and maintenance of the derepressed plasmid state.
- * Bacterial filamentation is a reliable indicator of the derepressed, high-copy plasmid state.
- * The observed switching between states suggests a regulated synthesis of the P4 immunity repressor.