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Published on: May 16, 2017
Characterization of BcaA, a putative classical autotransporter protein in Burkholderia pseudomallei
Cristine G Campos1, Luke Borst, Peggy A Cotter
1Department of Microbiology and Immunology, University of North Carolina at Chapel Hill School of Medicine, Chapel Hill, North Carolina, USA.
Abstract:
Burkholderia pseudomallei is a tier 1 select agent, and the causative agent of melioidosis, a disease with effects ranging from chronic abscesses to fulminant pneumonia and septic shock, which can be rapidly fatal. Autotransporters (ATs) are outer membrane proteins belonging to the type V secretion system family, and many have been shown to play crucial roles in pathogenesis. The open reading frame Bp1026b_II1054 (bcaA) in B. pseudomallei strain 1026b is predicted to encode a classical autotransporter protein with an approximately 80-kDa passenger domain that contains a subtilisin-related domain. Immediately 3' to bcaA is Bp11026_II1055 (bcaB), which encodes a putative prolyl 4-hydroxylase. To investigate the role of these genes in pathogenesis, large in-frame deletion mutations of bcaA and bcaB were constructed in strain Bp340, an efflux pump mutant derivative of the melioidosis clinical isolate 1026b. Comparison of Bp340ΔbcaA and Bp340ΔbcaB mutants to wild-type B. pseudomallei in vitro demonstrated similar levels of adherence to A549 lung epithelial cells, but the mutant strains were defective in their ability to invade these cells and to form plaques. In a BALB/c mouse model of intranasal infection, similar bacterial burdens were observed after 48 h in the lungs and liver of mice infected with Bp340ΔbcaA, Bp340ΔbcaB, and wild-type bacteria. However, significantly fewer bacteria were recovered from the spleen of Bp340ΔbcaA-infected mice, supporting the idea of a role for this AT in dissemination or in survival in the passage from the site of infection to the spleen.
Insights
Burkholderia pseudomallei autotransporter BcaA is crucial for bacterial invasion and spleen dissemination in mice. Deleting bcaA or bcaB impaired bacterial invasion of lung cells but only bcaA deletion affected spleen bacterial load.
Area of Science:
- Microbiology
- Pathogenesis
- Bacterial Secretion Systems
Background:
- Burkholderia pseudomallei causes melioidosis, a severe disease.
- Autotransporters (ATs) are key virulence factors in bacterial pathogenesis.
- The genes bcaA and bcaB in B. pseudomallei were investigated for their roles.
Purpose of the Study:
- To investigate the roles of the autotransporter gene bcaA and the prolyl 4-hydroxylase gene bcaB in B. pseudomallei pathogenesis.
- To determine the in vitro and in vivo functions of BcaA and BcaB.
Main Methods:
- Construction of in-frame deletion mutants for bcaA and bcaB in B. pseudomallei strain Bp340.
- In vitro assays: adherence and invasion of A549 lung epithelial cells, plaque formation.
- In vivo studies: intranasal infection of BALB/c mice, bacterial burden quantification in lungs, liver, and spleen.
Main Results:
- Mutants Bp340ΔbcaA and Bp340ΔbcaB showed similar adherence to lung cells but were defective in invasion and plaque formation.
- In a mouse model, bacterial burdens in lungs and liver were similar between mutant and wild-type strains after 48 hours.
- Significantly fewer Bp340ΔbcaA bacteria were recovered from the spleen, suggesting a role in dissemination or survival to the spleen.
Conclusions:
- The autotransporter BcaA plays a role in B. pseudomallei invasion of host cells and dissemination to the spleen.
- BcaB may also contribute to invasion, but BcaA appears more critical for systemic spread.
- These findings highlight potential targets for therapeutic intervention against melioidosis.
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