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Medically Relevant Acinetobacter Species Require a Type II Secretion System and Specific Membrane-Associated
Christian M Harding1, Rachel L Kinsella2, Lauren D Palmer3
1Department of Molecular Microbiology, Washington University School of Medicine in St. Louis, St. Louis, Missouri, United States of America.
Abstract:
Acinetobacter baumannii, A. nosocomialis, and A. pittii have recently emerged as opportunistic human pathogens capable of causing severe human disease; however, the molecular mechanisms employed by Acinetobacter to cause disease remain poorly understood. Many pathogenic members of the genus Acinetobacter contain genes predicted to encode proteins required for the biogenesis of a type II secretion system (T2SS), which have been shown to mediate virulence in many Gram-negative organisms. Here we demonstrate that Acinetobacter nosocomialis strain M2 produces a functional T2SS, which is required for full virulence in both the Galleria mellonella and murine pulmonary infection models. Importantly, this is the first bona fide secretion system shown to be required for virulence in Acinetobacter. Using bioinformatics, proteomics, and mutational analyses, we show that Acinetobacter employs its T2SS to export multiple substrates, including the lipases LipA and LipH as well as the protease CpaA. Furthermore, the Acinetobacter T2SS, which is found scattered amongst five distinct loci, does not contain a dedicated pseudopilin peptidase, but instead relies on the type IV prepilin peptidase, reinforcing the common ancestry of these two systems. Lastly, two of the three secreted proteins characterized in this study require specific chaperones for secretion. These chaperones contain an N-terminal transmembrane domain, are encoded adjacently to their cognate effector, and their disruption abolishes type II secretion of their cognate effector. Bioinformatic analysis identified putative chaperones located adjacent to multiple previously known type II effectors from several Gram-negative bacteria, which suggests that T2SS chaperones constitute a separate class of membrane-associated chaperones mediating type II secretion.
Insights
Acinetobacter nosocomialis uses a type II secretion system (T2SS) to cause severe infections. This study identifies the T2SS as crucial for Acinetobacter virulence, exporting key enzymes like lipases and proteases.
Area of Science:
- Microbiology
- Molecular Biology
- Pathogenesis
Background:
- Acinetobacter species are opportunistic human pathogens.
- The molecular mechanisms of Acinetobacter pathogenesis are poorly understood.
- Type II secretion systems (T2SS) are known virulence factors in Gram-negative bacteria.
Purpose of the Study:
- To investigate the role of the type II secretion system (T2SS) in Acinetobacter virulence.
- To identify substrates secreted by the Acinetobacter T2SS.
- To characterize the components and regulation of the Acinetobacter T2SS.
Main Methods:
- Bioinformatic analysis of Acinetobacter genomes.
- Proteomic analysis to identify secreted proteins.
- Construction and testing of mutant strains in virulence models (Galleria mellonella and murine pulmonary infection).
- Biochemical characterization of secreted proteins and their chaperones.
Main Results:
- Acinetobacter nosocomialis possesses a functional T2SS essential for full virulence.
- The T2SS secretes multiple substrates, including lipases (LipA, LipH) and a protease (CpaA).
- The Acinetobacter T2SS utilizes a type IV prepilin peptidase, not a dedicated one, and requires specific membrane-associated chaperones for effector secretion.
Conclusions:
- The T2SS is the first bona fide secretion system demonstrated to be required for Acinetobacter virulence.
- The identified T2SS chaperones represent a novel class of membrane-associated secretion mediators.
- Understanding the Acinetobacter T2SS provides insights into Gram-negative bacterial pathogenesis and potential therapeutic targets.
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