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Visualizing Macrophage Extracellular Traps Using Confocal Microscopy
Published on: October 19, 2017
Uptake-independent killing of macrophages by extracellular Mycobacterium tuberculosis aggregates
Chiara Toniolo1, Neeraj Dhar1,2,3, John D McKinney1
1School of Life Sciences, Swiss Federal Institute of Technology in Lausanne (EPFL), Lausanne, Switzerland.
Abstract:
Mycobacterium tuberculosis (Mtb) infection is initiated by inhalation of bacteria into lung alveoli, where they are phagocytosed by resident macrophages. Intracellular Mtb replication induces the death of the infected macrophages and the release of bacterial aggregates. Here, we show that these aggregates can evade phagocytosis by killing macrophages in a contact-dependent but uptake-independent manner. We use time-lapse fluorescence microscopy to show that contact with extracellular Mtb aggregates triggers macrophage plasma membrane perturbation, cytosolic calcium accumulation, and pyroptotic cell death. These effects depend on the Mtb ESX-1 secretion system, however, this system alone cannot induce calcium accumulation and macrophage death in the absence of the Mtb surface-exposed lipid phthiocerol dimycocerosate. Unexpectedly, we found that blocking ESX-1-mediated secretion of the EsxA/EsxB virulence factors does not eliminate the uptake-independent killing of macrophages and that the 50-kDa isoform of the ESX-1-secreted protein EspB can mediate killing in the absence of EsxA/EsxB secretion. Treatment with an ESX-1 inhibitor reduces uptake-independent killing of macrophages by Mtb aggregates, suggesting that novel therapies targeting this anti-phagocytic mechanism could prevent the propagation of extracellular bacteria within the lung.
Insights
Mycobacterium tuberculosis aggregates evade immune cells by killing macrophages independently of uptake. This contact-dependent killing mechanism involves the ESX-1 secretion system and specific lipids, offering novel therapeutic targets.
Area of Science:
- Microbiology
- Immunology
- Cell Biology
Background:
- Mycobacterium tuberculosis (Mtb) infection begins in lung macrophages.
- Intracellular Mtb replication leads to macrophage death and bacterial aggregate release.
Purpose of the Study:
- Investigate the mechanism by which Mtb aggregates evade phagocytosis.
- Identify the molecular components responsible for Mtb aggregate-mediated macrophage death.
Main Methods:
- Time-lapse fluorescence microscopy to observe macrophage-Mtb aggregate interactions.
- Analysis of the role of the Mtb ESX-1 secretion system and specific lipids.
- Assessment of virulence factors EsxA/EsxB and EspB in macrophage killing.
Main Results:
- Mtb aggregates kill macrophages via contact-dependent, uptake-independent mechanisms.
- Macrophage death involves plasma membrane perturbation, calcium accumulation, and pyroptosis.
- The ESX-1 secretion system and phthiocerol dimycocerosate lipid are crucial for this killing.
- EspB, but not EsxA/EsxB, mediates killing in the absence of EsxA/EsxB secretion.
Conclusions:
- Mtb aggregates employ a novel anti-phagocytic strategy to promote bacterial spread.
- Targeting the ESX-1 system and EspB could offer new therapeutic avenues against tuberculosis.
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