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Identification of Virulence Markers of Mycobacterium abscessus for Intracellular Replication in Phagocytes
Published on: September 27, 2018
Identification of Mycobacterium avium pathogenicity island important for macrophage and amoeba infection
Lia Danelishvili1, Martin Wu, Bernadette Stang
1Department of Biomedical Sciences, College of Veterinary Medicine, and Microbiology, Oregon State University, Corvallis, OR 97331, USA.
Abstract:
The ability to infect macrophages is a common characteristic shared among many mycobacterial species. Mycobacterium avium, Mycobacterium tuberculosis, and Mycobacterium kansasii enter macrophages, using the complement receptors CR1, CR3, CR4, and the mannose receptor. To identify M. avium genes and host cell pathways involved in the bacterial uptake by macrophages, we screened a M. avium transposon mutant library for the inability to enter macrophages. Uptake-impaired clones were selected. Sequence of six M. avium clones identified one gene involved in glycopeptidolipid biosynthesis, one gene encoding the conserved membrane protein homologue to the M. avium subsp. paratuberculosis MAP2446c gene and four others belonging to the same region of the chromosome. Analysis of the chromosome region revealed a pathogenicity island inserted between two tRNA sequences with 58% of G+C content versus 69% in the M. avium genome. The region is unique for M. avium and is not present in M. tuberculosis or M. paratuberculosis. Although the mutants did not differ from the WT bacterium regarding the binding to macrophage cell membrane, analysis of macrophage proteins after 1 h infection revealed a deficiency in the mutant to phosphorylate certain proteins on uptake. To understand M. avium interaction with two evolutionarily distinct hosts, the mutants were evaluated for Acanthamoeba castellanii invasion. The defect in the ability of the mutants to invade both cells was highly similar, suggesting that M. avium might have evolved mechanisms that are used to enter amoebas and human macrophages.
Insights
Mycobacterium avium uses specific genes to enter human macrophages and amoebas. Mutants lacking these genes showed impaired invasion, suggesting shared entry mechanisms for both hosts.
Area of Science:
- Microbiology
- Cell Biology
- Genetics
Background:
- Mycobacterial species, including Mycobacterium avium, commonly infect macrophages.
- Macrophage entry by mycobacteria involves complement receptors (CR1, CR3, CR4) and the mannose receptor.
Purpose of the Study:
- To identify Mycobacterium avium genes responsible for macrophage uptake.
- To investigate host cell pathways involved in Mycobacterium avium entry.
- To explore shared invasion mechanisms between amoebas and human macrophages.
Main Methods:
- Screened a Mycobacterium avium transposon mutant library for impaired macrophage entry.
- Sequenced identified uptake-impaired clones to pinpoint specific genes.
- Analyzed a unique pathogenicity island in Mycobacterium avium.
- Assessed mutant invasion capabilities in Acanthamoeba castellanii.
Main Results:
- Six Mycobacterium avium clones with impaired macrophage uptake were identified.
- Identified genes included those involved in glycopeptidolipid biosynthesis and a conserved membrane protein.
- A novel pathogenicity island, unique to M. avium, was discovered.
- Mutants showed similar defects in invading both macrophages and Acanthamoeba castellanii.
Conclusions:
- Specific Mycobacterium avium genes are crucial for macrophage invasion.
- The identified pathogenicity island likely plays a role in virulence.
- Mycobacterium avium may utilize conserved mechanisms for entering both amoebas and human macrophages.
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