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Updated: Jul 12, 2025

Study of Phagolysosome Biogenesis in Live Macrophages
Published on: March 10, 2014
Vps18 contributes to phagosome membrane integrity in Mycobacterium tuberculosis-infected macrophages
Charul Jani1, Amanda Marsh1, Pooja Uchil1,2
1The Ragon Institute of MGH, MIT and Harvard.
Abstract:
Mycobacterium tuberculosis (Mtb) has evolved to be exquisitely adapted to survive within host macrophages. The capacity to damage the phagosomal membrane has emerged as central to Mtb virulence. While Mtb factors driving membrane damage have been described, host factors that repair that damage to contain the pathogen remain largely unknown. We used a genome-wide CRISPR screen to identify novel host factors required to repair Mtb-damaged phagosomal membranes. Vacuolar protein sorting-associated protein 18 (Vps18), a member of the HOPS and CORVET trafficking complexes, was among the top hits. Vps18 colocalized with Mtb in macrophages beginning shortly after infection, and Vps18-knockout macrophages demonstrated increased damage of Mtb-containing phagosomes without impaired autophagy. Mtb grew more robustly in Vps18-knockout cells, and the first-line anti-tuberculosis antibiotic pyrazinamide was less effective. Our results identify Vps18 as required for phagosomal membrane integrity in Mtb-infected cells and suggest that modulating phagosome integrity may hold promise for improving the efficacy of antibiotic treatment for TB.
Insights
Mycobacterium tuberculosis (Mtb) damages macrophage phagosomes, but host repair mechanisms are unknown. Researchers identified Vacuolar protein sorting-associated protein 18 (Vps18) as crucial for repairing Mtb-damaged phagosomal membranes.
Area of Science:
- Microbiology
- Cell Biology
- Immunology
Background:
- Mycobacterium tuberculosis (Mtb) thrives within host macrophages by damaging phagosomal membranes.
- Host factors involved in repairing these Mtb-induced phagosomal damages are largely unidentified.
Approach:
- A genome-wide CRISPR screen was employed to discover novel host factors essential for phagosomal membrane repair after Mtb infection.
- Vacuolar protein sorting-associated protein 18 (Vps18) was identified as a key host factor.
Key Points:
- Vps18, part of HOPS and CORVET complexes, localized to Mtb-containing phagosomes in macrophages.
- Vps18-deficient macrophages exhibited increased phagosomal membrane damage and enhanced Mtb growth.
- The efficacy of pyrazinamide, a first-line anti-TB drug, was reduced in Vps18-knockout cells.
Conclusions:
- Vps18 is critical for maintaining phagosomal membrane integrity against Mtb.
- Targeting phagosome integrity could be a therapeutic strategy to enhance anti-tuberculosis antibiotic effectiveness.
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