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Culture of Small Colony Variant of Pseudomonas aeruginosa and Quantitation of its Alginate
Published on: February 22, 2020
Pseudomonas aeruginosa Regulated Intramembrane Proteolysis: Protease MucP Can Overcome Mutations in the AlgO
Camila Delgado1, Laura Florez1, Ivonne Lollett2
1Department of Human and Molecular Genetics, Herbert Wertheim College of Medicine, Biomolecular Sciences Institute, Florida International University, Miami, Florida, USA.
Abstract:
The progression of cystic fibrosis (CF) from an acute to a chronic disease is often associated with the conversion of the opportunistic pathogen Pseudomonas aeruginosa from a nonmucoid form to a mucoid form in the lung. This conversion involves the constitutive synthesis of the exopolysaccharide alginate, whose production is under the control of the AlgT/U sigma factor. This factor is regulated posttranslationally by an extremely unstable process and has been commonly attributed to mutations in the algT (algU) gene. By exploiting this unstable phenotype, we isolated 34 spontaneous nonmucoid variants arising from the mucoid strain PDO300, a PAO1 derivative containing the mucA22 allele commonly found in mucoid CF isolates. Complementation analysis using a minimal tiling path cosmid library revealed that most of these mutants mapped to two protease-encoding genes, algO, also known as prc or PA3257, and mucP Interestingly, our algO mutations were complemented by both mucP and algO, leading us to delete, clone, and overexpress mucP, algO, mucE, and mucD in both wild-type PAO1 and PDO300 backgrounds to better understand the regulation of this complex regulatory mechanism. Our findings suggest that the regulatory proteases follow two pathways for regulated intramembrane proteolysis (RIP), where both the AlgO/MucP pathway and MucE/AlgW pathway are required in the wild-type strain but where the AlgO/MucP pathway can bypass the MucE/AlgW pathway in mucoid strains with membrane-associated forms of MucA with shortened C termini, such as the MucA22 variant. This work gives us a better understanding of how alginate production is regulated in the clinically important mucoid variants of Pseudomonas aeruginosaIMPORTANCE Infection by the opportunistic pathogen Pseudomonas aeruginosa is the leading cause of morbidity and mortality seen in CF patients. Poor patient prognosis correlates with the genotypic and phenotypic change of the bacteria from a typical nonmucoid to a mucoid form in the CF lung, characterized by the overproduction of alginate. The expression of this exopolysaccharide is under the control an alternate sigma factor, AlgT/U, that is regulated posttranslationally by a series of proteases. A better understanding of this regulatory phenomenon will help in the development of therapies targeting alginate production, ultimately leading to an increase in the length and quality of life for those suffering from CF.
Insights
Pseudomonas aeruginosa mucoid conversion in cystic fibrosis lungs involves alginate overproduction regulated by proteases. This study identifies AlgO/MucP and MucE/AlgW pathways controlling alginate synthesis, offering new therapeutic targets.
Area of Science:
- Microbiology
- Molecular Biology
- Genetics
Background:
- Cystic Fibrosis (CF) progression is linked to Pseudomonas aeruginosa converting from nonmucoid to mucoid forms.
- Mucoid conversion involves alginate exopolysaccharide overproduction, controlled by the AlgT/U sigma factor.
- Alginate production regulation is complex, involving post-translational control of AlgT/U by proteases.
Purpose of the Study:
- To investigate the proteases regulating alginate production in mucoid Pseudomonas aeruginosa.
- To elucidate the pathways involved in the post-translational regulation of the AlgT/U sigma factor.
- To understand the mechanism behind the switch to the mucoid phenotype in CF patients.
Main Methods:
- Isolation and characterization of spontaneous nonmucoid variants from a mucoid P. aeruginosa strain (PDO300).
- Complementation analysis using a cosmid library to identify mutated genes.
- Gene deletion, cloning, and overexpression of protease-encoding genes (mucP, algO, mucE, mucD) in wild-type and mucoid backgrounds.
Main Results:
- Mutations in algO (prc/PA3257) and mucP genes were identified as key regulators.
- The AlgO/MucP pathway can bypass the MucE/AlgW pathway in mucoid strains with specific MucA variants (e.g., MucA22).
- Two distinct protease pathways, AlgO/MucP and MucE/AlgW, are involved in regulated intramembrane proteolysis (RIP) controlling alginate synthesis.
Conclusions:
- The study clarifies the dual protease pathway system regulating alginate production in P. aeruginosa.
- Understanding these pathways provides insights into the development of mucoid strains in CF lungs.
- Targeting these regulatory proteases could lead to novel therapies for CF patients infected with mucoid P. aeruginosa.
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