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DcaP-Family Porins are Required for Carboxylic Acid Catabolism in Acinetobacter baumannii
Hannah R Noel1, Jonathan D Winkelman2, Lauren D Palmer1
1Department of Microbiology and Immunology, University of Illinois Chicago, Chicago, IL, USA.
Abstract:
Acinetobacter baumannii is a pathogen of concern and a leading cause of multidrug-resistant healthcare-associated infections. The A. baumannii outer membrane is a barrier to antimicrobials and host defenses but must also allow essential nutrients to permeate. Here, we investigate the functional importance of the putative DcaP-family outer membrane porins, which include a proposed vaccine target in A. baumannii. All A. baumannii genomes surveyed encode multiple DcaP family porins, which we classify in four classes based on protein sequence phylogeny (DcaP1-4). DcaP proteins encoded by species in other genera could not be mapped to these DcaP classes and phylogenetic analysis suggests DcaP1-4 proteins diversified within Acinetobacter. Phenotypic array assays and additional experiments show that DcaP3 was necessary for growth on multiple di- and tri-carboxylic acids as sole carbon sources, including citric acid and tricarballylic acid. Finally, a mutant lacking all DcaP proteins was attenuated in the liver and spleen in a mouse model of bloodstream infection and complemented by expression of DcaP3. These findings provide insight on how A. baumannii acquires nutrients through the outer membrane barrier and show DcaP3 is important during infection in specific host niches, validating its potential as a therapeutic target.
Insights
Acinetobacter baumannii outer membrane porins, DcaP3, are crucial for nutrient uptake and infection. Targeting these porins, like DcaP3, shows promise for new antimicrobial therapies against this multidrug-resistant pathogen.
Area of Science:
- Microbiology
- Molecular Biology
- Infectious Diseases
Background:
- Acinetobacter baumannii is a major cause of multidrug-resistant healthcare-associated infections.
- The bacterial outer membrane is a critical barrier, yet must permit nutrient entry.
Purpose of the Study:
- Investigate the functional role of DcaP-family outer membrane porins in Acinetobacter baumannii.
- Evaluate the potential of these porins, including a vaccine target, for therapeutic intervention.
Main Methods:
- Phylogenetic analysis to classify DcaP porins into four groups (DcaP1-4).
- Phenotypic array assays to assess growth on specific carbon sources.
- In vivo mouse model of bloodstream infection to evaluate bacterial attenuation.
Main Results:
- DcaP3 porin is essential for utilizing di- and tri-carboxylic acids, such as citric acid, for growth.
- A mutant lacking all DcaP porins showed reduced virulence in a mouse infection model.
- Complementation studies confirmed DcaP3's role in virulence and nutrient acquisition.
Conclusions:
- DcaP porins, particularly DcaP3, play a vital role in Acinetobacter baumannii's nutrient acquisition via the outer membrane.
- DcaP3 is important for bacterial survival and pathogenesis in specific host environments.
- DcaP3 represents a promising therapeutic target for combating Acinetobacter baumannii infections.
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