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Imaging Mycobacterium tuberculosis in Mice with Reporter Enzyme Fluorescence
Published on: February 26, 2018
Deubiquitinase USP15 restricts LC3-dependent targeting of Mycobacterium tuberculosis
Kathryn C Rahlwes1, Priscila C Campos1, Beatriz R S Dias1
1Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, Texas, USA.
Abstract:
Macroautophagy/autophagy enables macrophages to degrade intracellular Mycobacterium tuberculosis (Mtb), and this defense depends on E3 ubiquitin ligases such as PRKN/PARKIN/PARK2 and SMURF1, which tag Mtb-associated structures for lysosomal clearance. Deubiquitinases (DUBs) counter ubiquitin ligases by removing ubiquitin from molecular targets. We hypothesized that DUBs might offset ubiquitin ligase activity and negatively regulate host immunity to Mtb. Here, we identify USP15 (ubiquitin specific peptidase 15) as a negative regulator of MAP1LC3/LC3-dependent targeting pathways (consistent with xenophagy or CASM/LAP-related ATG8ylation) that mediate macrophage immunity to Mtb. Using a targeted knockdown screen in mouse macrophages, we found that Usp15 loss increased K63-linked ubiquitination and LC3 recruitment to Mtb-associated structures, leading to reduced bacterial replication. These effects required USP15's catalytic activity and were reversed by knockdown of PRKN or inhibition of autophagy initiation. In primary human macrophages, USP15 knockdown similarly enhanced LC3 targeting and restricted Mtb growth. Importantly, pharmacological inhibition of USP15 with a selective small molecule decreased Mtb burden in human macrophages. Our findings identify USP15 as a suppressor of macrophage immunity and suggest that targeting deubiquitinases may represent a promising host-directed therapeutic strategy against tuberculosis.Abbreviations: CFU: colony-forming unit; DUBs: deubiquitinases; K48-Ub: K48-linked ubiquitin; K63-Ub: K63-linked ubiquitin; Mtb-pLux: luminescent Mtb strain Mtb; Mycobacterium tuberculosis; MOI: multiplicity of infection; NTC: non-targeting control; TB: tuberculosis.
Insights
Researchers found that inhibiting USP15, a deubiquitinase, boosts macrophage immunity against Mycobacterium tuberculosis (Mtb). This suggests targeting deubiquitinases could be a new therapeutic strategy for tuberculosis.
Area of Science:
- Immunology
- Cell Biology
- Microbiology
Background:
- Autophagy is crucial for macrophages to eliminate intracellular Mycobacterium tuberculosis (Mtb).
- E3 ubiquitin ligases tag Mtb for lysosomal degradation, while deubiquitinases (DUBs) remove ubiquitin, potentially hindering this process.
- The role of DUBs in regulating macrophage anti-Mtb immunity is largely unknown.
Purpose of the Study:
- To investigate the role of DUBs in macrophage-mediated immunity against Mtb.
- To identify specific DUBs that negatively regulate anti-Mtb responses.
- To explore the therapeutic potential of targeting DUBs for tuberculosis treatment.
Main Methods:
- Conducted a targeted knockdown screen in mouse macrophages to identify DUBs regulating Mtb clearance.
- Assessed ubiquitination patterns and LC3 recruitment to Mtb-containing structures.
- Utilized primary human macrophages and pharmacological inhibition for validation.
- Measured Mtb burden using colony-forming unit (CFU) assays.
Main Results:
- USP15 was identified as a negative regulator of macrophage anti-Mtb immunity.
- Knockdown of USP15 enhanced K63-linked ubiquitination and LC3 recruitment to Mtb, reducing bacterial replication.
- USP15's catalytic activity was essential for its inhibitory function.
- Pharmacological inhibition of USP15 decreased Mtb burden in human macrophages.
Conclusions:
- USP15 suppresses macrophage immunity against Mycobacterium tuberculosis.
- Targeting USP15 enhances autophagy-dependent Mtb clearance.
- Inhibiting deubiquitinases represents a potential host-directed therapeutic strategy for tuberculosis.
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