The anti-sigma factor MucA is required for viability in Pseudomonas aeruginosa
Melissa C Schofield1, Daniela Q Rodriguez1, Amanda A Kidman1
1School of Life Sciences, University of Nevada Las Vegas, Las Vegas, NV, USA.
Abstract:
During decades-long infections in the cystic fibrosis (CF) airway, Pseudomonas aeruginosa undergoes selection. One bacterial genetic adaptation often observed in CF isolates is mucA mutations. MucA inhibits the sigma factor AlgU. Mutations in mucA lead to AlgU misregulation, resulting in a mucoid phenotype that is associated with poor CF disease outcomes. Due to its ability to be mutated, mucA is assumed to be dispensable for bacterial viability. Here we show that, paradoxically, a portion of mucA is essential in P. aeruginosa. We demonstrate that mucA is no longer required in a strain lacking algU, that mucA alleles encoding for proteins that do not bind to AlgU are insufficient for viability, and that mucA is no longer essential in mutant strains containing AlgU variants with reduced sigma factor activity. Furthermore, we found that overexpression of algU prevents cell growth in the absence of MucA, and that this phenotype can be rescued by the overproduction of RpoD, the housekeeping sigma factor. Together, these results suggest that in the absence of MucA, the inability to regulate AlgU activity results in the loss of bacterial viability. Finally, we speculate that the essentiality of anti-sigma factors that regulate envelope function may be a widespread phenomenon in bacteria.
Insights
MucA is essential for Pseudomonas aeruginosa viability, contrary to previous assumptions. Its role in regulating the AlgU sigma factor is critical for preventing cell death, especially during cystic fibrosis infections.
Area of Science:
- Microbiology
- Bacterial genetics
- Infectious diseases
Background:
- Pseudomonas aeruginosa adapts during chronic cystic fibrosis infections, often via mucA mutations.
- MucA mutations lead to AlgU misregulation, causing a mucoid phenotype linked to poor CF outcomes.
- MucA was previously considered dispensable due to its mutability.
Purpose of the Study:
- To investigate the essentiality of mucA in Pseudomonas aeruginosa.
- To elucidate the relationship between MucA, AlgU, and bacterial viability.
- To understand the role of MucA in regulating AlgU activity.
Main Methods:
- Genetic analysis of P. aeruginosa strains with varying mucA and algU alleles.
- Assessment of bacterial viability under different genetic conditions.
- Investigating the impact of AlgU overexpression and RpoD co-expression.
Main Results:
- A portion of mucA is essential for P. aeruginosa viability.
- mucA is dispensable in algU-deficient strains or with AlgU variants of reduced activity.
- Overexpression of algU is lethal without MucA, but this is rescued by RpoD overproduction.
Conclusions:
- MucA's essentiality stems from its role in regulating AlgU activity.
- Dysregulation of AlgU in the absence of MucA leads to cell death.
- Anti-sigma factors regulating envelope function may be broadly essential in bacteria.
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