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Updated: May 23, 2025

Bone Marrow-derived Macrophage Production
Published on: November 22, 2013
TMEM175 activity in BK-deficient macrophages maintains lysosomal function and mediates silica-induced inflammatory
Rebekah L Kendall1, Britten Postma1, Andrij Holian1
1Center for Environmental Health Sciences, University of Montana, Missoula, Montana, USA.
Abstract:
Objective: Lysosomal ion channel function in macrophages contributes to the development of silica-induced inflammation. Recent studies have shown that blocking K+ entry into the lysosome via the BK channel reduces silica-induced damage and inflammation in macrophages. This study aims to explore the mechanisms of particle-induced inflammation in BK-/- macrophages. Methods: Bone marrow derived macrophages (BMdM) from C57BL/6 wildtype (WT) and BK-/- mice were exposed in vitro to silica and IL-1β release and cell death assessed. The effect of BK-/- on lysosomal pH, proteolytic activity, and cholesterol accumulation was evaluated. Results: BK-/- BMdM failed to demonstrate a reduction in IL-1β or cell death following silica exposure. BK-/- BMdM had comparable lysosome function to WT suggesting a compensatory mechanism was maintaining lysosome function. BK-/- macrophages demonstrated an upregulation of a second lysosomal potassium channel, TMEM175. Inhibition of TMEM175 activity caused an increase in lysosomal pH and reduced silica-induced cell death and IL-1β release in both BK-/- and WT BMdM. Conclusion: BK-/- BMdM did not exhibit the same phenotype seen with pharmaceutical abrogation of BK channel activity and showed no differences from WT in response to silica exposure. Upregulation of TMEM175 in BK-/- macrophages appears to prevent changes in lysosomal pH and cholesterol accumulation. Inhibiting TMEM175 activity in both BK-/- and WT BMdM resulted in an increase in lysosomal pH and reduced silica-induced inflammation, suggesting that reduced particle-induced cell damage and inflammation is not dependent on the activity of a single lysosomal ion channel but rather on mechanisms that elevate lysosomal pH.
Insights
Mice lacking the BK channel in macrophages did not show reduced inflammation from silica. Instead, TMEM175 channel upregulation compensated, suggesting lysosomal pH, not a single channel, regulates particle-induced inflammation.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Lysosomal ion channels in macrophages are implicated in silica-induced inflammation.
- Blocking potassium (K+) influx via the BK channel lessens silica-induced macrophage damage and inflammation.
Purpose of the Study:
- To investigate particle-induced inflammation mechanisms in BK channel knockout (BK-/-) macrophages.
- To understand the role of TMEM175 in compensating for BK channel deficiency.
Main Methods:
- Bone marrow-derived macrophages (BMdM) from wildtype (WT) and BK-/- mice were exposed to silica.
- Assessed IL-1β release, cell death, lysosomal pH, proteolytic activity, and cholesterol accumulation.
- Evaluated the impact of TMEM175 inhibition on BK-/- and WT macrophages.
Main Results:
- BK-/- BMdM did not show reduced IL-1β release or cell death upon silica exposure.
- BK-/- macrophages upregulated the lysosomal potassium channel TMEM175, maintaining lysosomal function.
- Inhibiting TMEM175 increased lysosomal pH and reduced silica-induced inflammation in both BK-/- and WT macrophages.
Conclusions:
- BK-/- macrophages did not exhibit the expected protective phenotype against silica.
- TMEM175 upregulation in BK-/- macrophages appears to prevent lysosomal dysfunction.
- Reducing particle-induced inflammation depends on elevated lysosomal pH, potentially involving multiple ion channels.
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