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Molybdate transporter ModABC is important for Pseudomonas aeruginosa chronic lung infection. | LitMetric

AI Article Synopsis

  • The modA gene in Pseudomonas aeruginosa, linked to its competitiveness in chronic lung infections in cystic fibrosis patients, encodes a transporter crucial for taking up molybdate, essential for certain enzymes like nitrate reductases.
  • The developed modA mutant strain displayed deficits in anaerobic growth and nitrate utilization, emphasizing the importance of molybdate for these processes, as growth was restored with molybdate supplementation.
  • The mutant showed reduced virulence compared to the wild-type strain in both rat lung infection models and amoebae predation assays, highlighting the potential of targeting the modABC transporter system for new therapeutic strategies against chronic infections.

Article Abstract

Background: Mechanisms underlying the success of Pseudomonas aeruginosa in chronic lung infection among cystic fibrosis (CF) patients are poorly defined. The modA gene was previously linked to in vivo competitiveness of P. aeruginosa by a genetic screening in the rat lung. This gene encodes a subunit of transporter ModABC, which is responsible for extracellular uptake of molybdate. This compound is essential for molybdoenzymes, including nitrate reductases. Since anaerobic growth conditions are known to occur during CF chronic lung infection, inactivation of a molybdate transporter could inhibit proliferation through the inactivation of denitrification enzymes. Hence, we performed phenotypic characterization of a modA mutant strain obtained by signature-tagged mutagenesis (STM_modA) and assessed its virulence in vivo with two host models.

Results: The STM_modA mutant was in fact defective for anaerobic growth and unable to use nitrates in the growth medium for anaerobic respiration. Bacterial growth and nitrate usage were restored when the medium was supplemented with molybdate. Most significantly, the mutant strain showed reduced virulence compared to wild-type strain PAO1 according to a competitive index in the rat model of chronic lung infection and a predation assay with Dictyostelium discoideum amoebae. As the latter took place in aerobic conditions, the in vivo impact of the mutation in modA appears to extend beyond its effect on anaerobic growth.

Conclusions: These results support the modABC-encoded transporter as important for the pathogenesis of P. aeruginosa, and suggest that enzymatic machinery implicated in anaerobic growth during chronic lung infection in CF merits further investigation as a potential target for therapeutic intervention.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4710039PMC
http://dx.doi.org/10.1186/s13104-016-1840-xDOI Listing

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