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Identification of Virulence Markers of Mycobacterium abscessus for Intracellular Replication in Phagocytes
Published on: September 27, 2018
Trehalose polyphleates participate in Mycobacterium abscessus fitness and pathogenesis
Silke Malmsheimer1, Wassim Daher1,2, Yara Tasrini1
1Centre National de la Recherche Scientifique UMR 9004, Institut de Recherche en Infectiologie de Montpellier (IRIM), Université de Montpellier, Montpellier, France.
Abstract:
Mycobacteria produce a large repertoire of surface-exposed lipids with major biological functions. Among these lipids, trehalose polyphleates (TPPs) are instrumental in the infection of Mycobacterium abscessus by the therapeutic phage BPs. However, while the biosynthesis and transport of TPPs across the membrane by MmpL10 have been reported, the role of TPPs in host infection remains enigmatic. Here, we addressed whether the loss of TPPs influences interactions with macrophages and the virulence of M. abscessus. As anticipated, the deletion of mmpL10 in smooth (S) and rough (R) variants of M. abscessus abrogated TPP production, which was rescued upon gene complementation. Importantly, infection of human THP-1 cells with the mmpL10 mutants was associated with decreased intramacrophage survival and a reduced proportion of infected cells. The rough mmpL10 mutant showed an impaired capacity to block phagosomal acidification and was unable to co-localize with Galectin-3, a marker of phagosomal membrane damage. This suggests that TPPs participate, directly or indirectly, in phagolysosomal fusion and in phagosomal membrane damage to establish cytosolic communication. The TPP defect that affects the fitness and virulence of M. abscessus was further demonstrated in zebrafish embryos using a rough clinical strain resistant to phage BPs and harboring a frameshift mutation in mmpL10. Infection with this strain was correlated with a slight decrease in embryo survival and a reduced bacterial burden as compared to the corresponding parental and complemented derivatives. Together, these results indicate that TPPs are important surface lipids contributing to the pathogenicity of M. abscessus.IMPORTANCETrehalose polyphleates (TPPs) are complex lipids associated with the mycobacterial cell surface and were identified 50 years ago. While the TPP biosynthetic pathway has been described recently, the role of these lipids in the biology of mycobacteria remains yet to be established. The wide distribution of TPPs across mycobacterial species suggests that they may exhibit important functions in these actinobacteria. Here, we demonstrate that Mycobacterium abscessus, an emerging multidrug-resistant pathogen that causes severe lung diseases in cystic fibrosis patients, requires TPPs for survival in macrophages and virulence in a zebrafish model of infection. These findings support the importance of this underexplored family of lipids in mycobacterial pathogenesis.
Insights
Trehalose polyphleates (TPPs) are crucial for Mycobacterium abscessus survival within macrophages and virulence. Loss of TPPs impairs intramacrophage survival and reduces infection severity in zebrafish models.
Area of Science:
- Microbiology
- Pathogenesis
- Mycobacterial Infections
Background:
- Mycobacteria possess diverse surface lipids with significant biological roles.
- Trehalose polyphleates (TPPs) are surface lipids involved in Mycobacterium abscessus infection by phage BPs.
- The precise role of TPPs in host-pathogen interactions and mycobacterial virulence remains largely unknown.
Purpose of the Study:
- To investigate the impact of TPP absence on Mycobacterium abscessus interactions with macrophages.
- To determine the role of TPPs in the virulence of Mycobacterium abscessus in vivo.
- To elucidate the function of TPPs in host infection mechanisms.
Main Methods:
- Deletion of the mmpL10 gene in Mycobacterium abscessus to abrogate TPP production.
- Infection assays using human THP-1 cells and zebrafish embryos.
- Analysis of intramacrophage survival, phagosomal acidification, and co-localization with Galectin-3.
- Assessment of bacterial burden and host survival in zebrafish models.
Main Results:
- mmpL10 mutants exhibited significantly reduced intramacrophage survival and lower infection rates in THP-1 cells.
- The rough mmpL10 mutant showed impaired phagosomal acidification and failed to co-localize with Galectin-3.
- Zebrafish embryos infected with a clinical mmpL10 mutant displayed reduced survival and bacterial load.
- TPP production is essential for Mycobacterium abscessus virulence and macrophage survival.
Conclusions:
- Trehalose polyphleates (TPPs) are critical virulence factors for Mycobacterium abscessus.
- TPPs play a role in modulating phagosome-host interactions, including phagolysosomal fusion and membrane damage.
- This study highlights TPPs as important targets for understanding and combating Mycobacterium abscessus pathogenesis.
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