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The Pseudomonas aeruginosa homeostasis enzyme AlgL clears the periplasmic space of accumulated alginate during polymer biosynthesis

Pseudomonas aeruginosa is an opportunistic human pathogen and a leading cause of chronic infection in the lungs of individuals with cystic fibrosis. After colonization, P. aeruginosa often undergoes a phenotypic conversion to mucoidy, characterized by overproduction of the alginate exopolysaccharide...

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Autores principales: Gheorghita, Andreea A., Wolfram, Francis, Whitfield, Gregory B., Jacobs, Holly M., Pfoh, Roland, Wong, Steven S.Y., Guitor, Allison K., Goodyear, Mara C., Berezuk, Alison M., Khursigara, Cezar M., Parsek, Matthew R., Howell, P. Lynne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8829089/
https://www.ncbi.nlm.nih.gov/pubmed/34990713
http://dx.doi.org/10.1016/j.jbc.2021.101560
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author Gheorghita, Andreea A.
Wolfram, Francis
Whitfield, Gregory B.
Jacobs, Holly M.
Pfoh, Roland
Wong, Steven S.Y.
Guitor, Allison K.
Goodyear, Mara C.
Berezuk, Alison M.
Khursigara, Cezar M.
Parsek, Matthew R.
Howell, P. Lynne
author_facet Gheorghita, Andreea A.
Wolfram, Francis
Whitfield, Gregory B.
Jacobs, Holly M.
Pfoh, Roland
Wong, Steven S.Y.
Guitor, Allison K.
Goodyear, Mara C.
Berezuk, Alison M.
Khursigara, Cezar M.
Parsek, Matthew R.
Howell, P. Lynne
author_sort Gheorghita, Andreea A.
collection PubMed
description Pseudomonas aeruginosa is an opportunistic human pathogen and a leading cause of chronic infection in the lungs of individuals with cystic fibrosis. After colonization, P. aeruginosa often undergoes a phenotypic conversion to mucoidy, characterized by overproduction of the alginate exopolysaccharide. This conversion is correlated with poorer patient prognoses. The majority of genes required for alginate synthesis, including the alginate lyase, algL, are located in a single operon. Previous investigations of AlgL have resulted in several divergent hypotheses regarding the protein’s role in alginate production. To address these discrepancies, we determined the structure of AlgL and, using multiple sequence alignments, identified key active site residues involved in alginate binding and catalysis. In vitro enzymatic analysis of active site mutants highlights R249 and Y256 as key residues required for alginate lyase activity. In a genetically engineered P. aeruginosa strain where alginate biosynthesis is under arabinose control, we found that AlgL is required for cell viability and maintaining membrane integrity during alginate production. We demonstrate that AlgL functions as a homeostasis enzyme to clear the periplasmic space of accumulated polymer. Constitutive expression of the AlgU/T sigma factor mitigates the effects of an algL deletion during alginate production, suggesting that an AlgU/T-regulated protein or proteins can compensate for an algL deletion. Together, our study demonstrates the role of AlgL in alginate biosynthesis, explains the discrepancies observed previously across other P. aeruginosa ΔalgL genetic backgrounds, and clarifies the existing divergent data regarding the function of AlgL as an alginate degrading enzyme.
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spelling pubmed-88290892022-02-14 The Pseudomonas aeruginosa homeostasis enzyme AlgL clears the periplasmic space of accumulated alginate during polymer biosynthesis Gheorghita, Andreea A. Wolfram, Francis Whitfield, Gregory B. Jacobs, Holly M. Pfoh, Roland Wong, Steven S.Y. Guitor, Allison K. Goodyear, Mara C. Berezuk, Alison M. Khursigara, Cezar M. Parsek, Matthew R. Howell, P. Lynne J Biol Chem Research Article Pseudomonas aeruginosa is an opportunistic human pathogen and a leading cause of chronic infection in the lungs of individuals with cystic fibrosis. After colonization, P. aeruginosa often undergoes a phenotypic conversion to mucoidy, characterized by overproduction of the alginate exopolysaccharide. This conversion is correlated with poorer patient prognoses. The majority of genes required for alginate synthesis, including the alginate lyase, algL, are located in a single operon. Previous investigations of AlgL have resulted in several divergent hypotheses regarding the protein’s role in alginate production. To address these discrepancies, we determined the structure of AlgL and, using multiple sequence alignments, identified key active site residues involved in alginate binding and catalysis. In vitro enzymatic analysis of active site mutants highlights R249 and Y256 as key residues required for alginate lyase activity. In a genetically engineered P. aeruginosa strain where alginate biosynthesis is under arabinose control, we found that AlgL is required for cell viability and maintaining membrane integrity during alginate production. We demonstrate that AlgL functions as a homeostasis enzyme to clear the periplasmic space of accumulated polymer. Constitutive expression of the AlgU/T sigma factor mitigates the effects of an algL deletion during alginate production, suggesting that an AlgU/T-regulated protein or proteins can compensate for an algL deletion. Together, our study demonstrates the role of AlgL in alginate biosynthesis, explains the discrepancies observed previously across other P. aeruginosa ΔalgL genetic backgrounds, and clarifies the existing divergent data regarding the function of AlgL as an alginate degrading enzyme. American Society for Biochemistry and Molecular Biology 2022-01-03 /pmc/articles/PMC8829089/ /pubmed/34990713 http://dx.doi.org/10.1016/j.jbc.2021.101560 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Gheorghita, Andreea A.
Wolfram, Francis
Whitfield, Gregory B.
Jacobs, Holly M.
Pfoh, Roland
Wong, Steven S.Y.
Guitor, Allison K.
Goodyear, Mara C.
Berezuk, Alison M.
Khursigara, Cezar M.
Parsek, Matthew R.
Howell, P. Lynne
The Pseudomonas aeruginosa homeostasis enzyme AlgL clears the periplasmic space of accumulated alginate during polymer biosynthesis
title The Pseudomonas aeruginosa homeostasis enzyme AlgL clears the periplasmic space of accumulated alginate during polymer biosynthesis
title_full The Pseudomonas aeruginosa homeostasis enzyme AlgL clears the periplasmic space of accumulated alginate during polymer biosynthesis
title_fullStr The Pseudomonas aeruginosa homeostasis enzyme AlgL clears the periplasmic space of accumulated alginate during polymer biosynthesis
title_full_unstemmed The Pseudomonas aeruginosa homeostasis enzyme AlgL clears the periplasmic space of accumulated alginate during polymer biosynthesis
title_short The Pseudomonas aeruginosa homeostasis enzyme AlgL clears the periplasmic space of accumulated alginate during polymer biosynthesis
title_sort pseudomonas aeruginosa homeostasis enzyme algl clears the periplasmic space of accumulated alginate during polymer biosynthesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8829089/
https://www.ncbi.nlm.nih.gov/pubmed/34990713
http://dx.doi.org/10.1016/j.jbc.2021.101560
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