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Pseudomonas aeruginosa Regulatory Protein AnvM Controls Pathogenicity in Anaerobic Environments and Impacts Host
Yingchao Zhang1, Chuan-Min Zhou2,3, Qinqin Pu2
1Department of Biomedical Sciences, City University of Hong Kong, Hong Kong, People's Republic of China.
Abstract:
Pseudomonas aeruginosa, one of the most common pathogens in hospital-acquired infections, is tightly controlled by a multilayered regulatory network, including the quorum sensing system (QS), the type VI secretion system (T6SS), and resistance to host immunity. We found that the P. aeruginosa 3880 (PA3880) gene, which encodes an unknown protein, acts as a regulator of anaerobic metabolism in response to oxidative stress and virulence in P. aeruginosa More than 30 PA3880 homologs were found in other bacterial genomes, indicating that PA3880 is widely distributed in the Bacteria kingdom as a highly conserved gene. Deletion of the PA3880 gene changed the expression levels of more than 700 genes, including a group of virulence genes, under both aerobic and anaerobic conditions. To further study the mechanisms of PA3880-mediated regulation in virulence, we utilized a bacterial two-hybrid assay and found that the PA3880 protein interacted directly with QS regulator MvfR and anaerobic regulator Anr. Loss of the PA3880 protein significantly blunted the pathogenicity of P. aeruginosa, resulting in increased host survival, decreased bacterial burdens, reduced inflammatory responses, and fewer lung injuries in challenged mice hosts. Mechanistically, we found that Cys44 was a critical site for the full function of PA3880 in influencing alveolar macrophage phagocytosis and bacterial clearance. We also found that AnvM directly interacted with host receptors Toll-like receptor 2 (TLR2) and TLR5, which might lead to activation of the host immune response. Hence, we gave the name AnvM (anaerobic and virulence modulator) to the PA3880 protein. This characterization of AnvM could help to uncover new targets and strategies to treat P. aeruginosa infections.IMPORTANCE Infections by Pseudomonas aeruginosa, one of the most frequently isolated human pathogens, can create huge financial burdens. However, knowledge of the molecular mechanisms involved in the pathogenesis of P. aeruginosa remains elusive. We identified AnvM as a novel regulator of virulence in P. aeruginosa Deletion of anvM altered the expression levels of more than 700 genes under aerobic and anaerobic conditions, including quorum sensing system genes and oxidative stress resistance genes. AnvM directly interacted with MvfR and Anr, thus regulating their downstream genes. More importantly, AnvM directly bound to TLR2 and TLR5, which turn on the host immune response. These findings provide insights into the significance of AnvM homologs in pathogenic bacteria and suggest a potential drug target against bacterial infection.
Insights
Pseudomonas aeruginosa infections are a burden, but a new protein, AnvM, regulates its virulence and host immune response. Targeting AnvM offers a potential strategy against these dangerous bacterial infections.
Area of Science:
- Microbiology
- Molecular Biology
- Immunology
Background:
- Pseudomonas aeruginosa is a common cause of hospital-acquired infections.
- Its pathogenesis involves complex regulatory networks, including quorum sensing and type VI secretion systems.
- Understanding P. aeruginosa virulence mechanisms is crucial for developing effective treatments.
Purpose of the Study:
- To identify and characterize novel regulators of P. aeruginosa virulence.
- To elucidate the role of the PA3880 gene and its protein product in bacterial pathogenesis and host interaction.
- To explore potential therapeutic targets for P. aeruginosa infections.
Main Methods:
- Gene deletion and expression analysis (over 700 genes affected).
- Bacterial two-hybrid assays to identify protein interactions (AnvM with MvfR and Anr).
- In vivo studies using mouse models to assess pathogenicity and host immune response (TLR2, TLR5 interaction).
Main Results:
- The PA3880 gene, renamed AnvM (anaerobic and virulence modulator), regulates anaerobic metabolism, oxidative stress response, and virulence.
- AnvM directly interacts with quorum sensing regulator MvfR and anaerobic regulator Anr.
- AnvM deletion significantly reduces P. aeruginosa pathogenicity in mice, decreasing bacterial load and inflammation. AnvM interacts with host TLR2 and TLR5.
Conclusions:
- AnvM is a conserved and critical regulator of P. aeruginosa virulence.
- AnvM modulates bacterial factors and directly influences the host immune response via TLR2 and TLR5.
- AnvM represents a promising novel drug target for combating P. aeruginosa infections.
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