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Updated: Jun 2, 2026

Study of Phagolysosome Biogenesis in Live Macrophages
Published on: March 10, 2014
Importance of phagosomal functionality for growth restriction of Mycobacterium tuberculosis in primary human
Amanda Welin1, Johanna Raffetseder, Daniel Eklund
1Medical Microbiology, Department of Clinical and Experimental Medicine, Faculty of Health Sciences, Linköping University, Linköping, Sweden. Mail amanda.welin @ liu.se
Abstract:
The best characterized survival mechanism of Mycobacterium tuberculosis inside the macrophage is the inhibition of phagosomal maturation. Phagosomal maturation involves several steps including fusion with lysosomes and acidification. However, it has not been elucidated which components of phagosomal maturation correlate with growth restriction of virulent mycobacteria in human macrophages, and we aimed to study this. We infected human monocyte-derived macrophages with M. tuberculosis and assessed bacterial replication, translocation of CD63 to the phagosome, and phagosomal acidification. We found that unstimulated human macrophages were able to control infection with M. tuberculosis upon inoculation at a low multiplicity of infection (MOI) of 1, but not at a high MOI of 10. The low MOI resulted in a macrophage-controlled balance between host cells and bacteria. Both H37Rv and H37Ra infection, at high and low MOI, led to equally ineffective translocation of CD63 to the phagosome. On the other hand, acidification of mycobacterial phagosomes was more efficient at MOI 1 than 10 with both mycobacterial strains, consistent with a direct or indirect role for phagosomal acidification in restricting M. tuberculosis growth. Furthermore, inhibition of the vacuolar H(+)-ATPase as well as of cathepsin D led to enhanced mycobacterial replication inside the macrophage. This again shows the importance of phagosomal acidification for control of mycobacterial growth, through the activation of lysosomal hydrolases. We conclude that acidification and related functional aspects of the mature phagosome are important factors for restriction of M. tuberculosis replication in human macrophages.
Insights
Human macrophages control Mycobacterium tuberculosis growth by acidifying phagosomes, a key step in maturation. Inhibiting this acidification enhances bacterial replication, highlighting its importance in restricting infection.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Mycobacterium tuberculosis (M. tuberculosis) survives in macrophages by inhibiting phagosomal maturation.
- Phagosomal maturation, including lysosomal fusion and acidification, is crucial for controlling intracellular pathogens.
- The specific components of phagosomal maturation that restrict M. tuberculosis growth in human macrophages remain unclear.
Purpose of the Study:
- To investigate the correlation between phagosomal maturation components and M. tuberculosis growth restriction in human macrophages.
- To determine the role of phagosomal acidification in controlling M. tuberculosis replication.
Main Methods:
- Infection of human monocyte-derived macrophages with M. tuberculosis at different multiplicities of infection (MOI).
- Assessment of bacterial replication, CD63 translocation to phagosomes, and phagosomal acidification.
- Inhibition of vacuolar H(+)-ATPase and cathepsin D to evaluate their impact on M. tuberculosis growth.
Main Results:
- Human macrophages controlled M. tuberculosis at low MOI (1) but not high MOI (10).
- Phagosomal acidification was more efficient at MOI 1 than MOI 10, correlating with restricted bacterial growth.
- CD63 translocation was ineffective regardless of MOI.
- Inhibiting vacuolar H(+)-ATPase or cathepsin D increased M. tuberculosis replication.
Conclusions:
- Phagosomal acidification is a critical mechanism for restricting M. tuberculosis replication in human macrophages.
- Acidification likely controls M. tuberculosis growth through the activation of lysosomal hydrolases.
- Mature phagosome acidification is vital for controlling M. tuberculosis infection.
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