The Pseudomonas aeruginosa Two-Component Regulator AlgR Directly Activates rsmA Expression in a
Sean D Stacey1, Danielle A Williams1, Christopher L Pritchett2
1Department of Health Sciences, East Tennessee State University, Johnson City, Tennessee, USA.
Abstract:
Pseudomonas aeruginosa is an important pathogen of the immunocompromised, causing both acute and chronic infections. In cystic fibrosis (CF) patients, P. aeruginosa causes chronic disease. The impressive sensory network of P. aeruginosa allows the bacterium to sense and respond to a variety of stimuli found in diverse environments. Transcriptional regulators, including alternative sigma factors and response regulators, integrate signals changing gene expression, allowing P. aeruginosa to cause infection. The two-component transcriptional regulator AlgR is important in P. aeruginosa pathogenesis in both acute and chronic infections. In chronic infections, AlgR and the alternative sigma factor AlgU activate the genes responsible for alginate production. Previous work demonstrated that AlgU controls rsmA expression. RsmA is a posttranscriptional regulator that is antagonized by two small RNAs, RsmY and RsmZ. In this work, we demonstrate that AlgR directly activates rsmA expression from the same promoter as AlgU. In addition, phosphorylation was not necessary for AlgR activation of rsmA using algR and algZ mutant strains. AlgU and AlgR appear to affect the antagonizing small RNAs rsmY and rsmZ indirectly. RsmA was active in a mucA22 mutant strain using leader fusions of two RsmA targets, tssA1 and hcnA AlgU and AlgR were necessary for posttranscriptional regulation of tssA1 and hcnA Altogether, our work demonstrates that the alginate regulators AlgU and AlgR are important in the control of the RsmA posttranscriptional regulatory system. These findings suggest that RsmA plays an unknown role in mucoid strains due to AlgU and AlgR activities.IMPORTANCE P. aeruginosa infections are difficult to treat and frequently cause significant mortality in CF patients. Understanding the mechanisms of persistence is important. Our work has demonstrated that the alginate regulatory system also significantly impacts the posttranscriptional regulator system RsmA/Y/Z. We demonstrate that AlgR directly activates rsmA expression, and this impacts the RsmA regulon. This leads to the possibility that the RsmA/Y/Z system plays a role in helping P. aeruginosa persist during chronic infection. In addition, this furthers our understanding of the reach of the alginate regulators AlgU and AlgR.
Insights
Pseudomonas aeruginosa uses AlgR to directly activate rsmA, impacting its regulatory system. This reveals a new role for AlgR and AlgU in controlling RsmA, crucial for bacterial persistence in cystic fibrosis patients.
Area of Science:
- Microbiology
- Molecular Biology
- Bacterial Pathogenesis
Background:
- Pseudomonas aeruginosa is a significant pathogen, especially in immunocompromised individuals and cystic fibrosis (CF) patients.
- The bacterium possesses a complex sensory network regulated by transcriptional regulators, including AlgR, AlgU, and RsmA.
- AlgR and AlgU are known to control alginate production, a key factor in chronic P. aeruginosa infections.
Purpose of the Study:
- To investigate the direct role of AlgR in regulating the expression of rsmA.
- To understand the interplay between AlgR, AlgU, and the RsmA/RsmY/RsmZ posttranscriptional regulatory system.
- To elucidate the contribution of these regulators to P. aeruginosa persistence in chronic infections.
Main Methods:
- Analysis of rsmA gene expression using promoter fusions in wild-type and mutant Pseudomonas aeruginosa strains (algR, algZ).
- Investigation of AlgR's role in rsmA activation, with and without phosphorylation.
- Assessment of AlgU and AlgR's indirect effects on small RNAs RsmY and RsmZ.
- Evaluation of RsmA activity in a mucA22 mutant strain using targets like tssA1 and hcnA.
Main Results:
- AlgR directly activates rsmA expression from the same promoter as AlgU.
- AlgR activation of rsmA does not require phosphorylation.
- AlgU and AlgR indirectly influence the expression of RsmY and RsmZ.
- AlgU and AlgR are essential for the posttranscriptional regulation of RsmA targets (tssA1, hcnA) in mucoid strains.
Conclusions:
- The alginate regulators AlgU and AlgR play a significant role in controlling the RsmA posttranscriptional regulatory system.
- AlgR's direct activation of rsmA impacts the RsmA regulon, suggesting a role in P. aeruginosa persistence.
- These findings expand the known functions of AlgU and AlgR beyond alginate production, highlighting their broader impact on bacterial pathogenesis and persistence mechanisms.
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