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PARK2 mediates interleukin 6 and monocyte chemoattractant protein 1 production by human macrophages
Louis de Léséleuc1, Marianna Orlova, Aurelie Cobat
1McGill Centre for the Study of Host Resistance, The Research Institute of the McGill University Health Centre, Montreal, Quebec, Canada.
Abstract:
Leprosy is a persistent infectious disease caused by Mycobacterium leprae that still affects over 200,000 new patients annually. The host genetic background is an important risk factor for leprosy susceptibility and the PARK2 gene is a replicated leprosy susceptibility candidate gene. The protein product of PARK2, Parkin, is an E3 ubiquitin ligase that is involved in the development of various forms of Parkinsonism. The human macrophage is both a natural host cell of M. leprae as well as a primary mediator of natural immune defenses, in part by secreting important pro-inflammatory cytokines and chemokines. Here, we report that down-regulation of Parkin in THP-1 macrophages, human monocyte-derived macrophages and human Schwann cells resulted in a consistent and specific decrease in interleukin-6 (IL-6) and monocyte chemoattractant protein 1 (MCP-1/CCL2) production in response to mycobacteria or LPS. Interestingly, production of IL-6 at 6 hours by THP-1 cells stimulated with live M. leprae and M. bovis BCG was dependent on pretreatment with 1,25-dihydroxyvitamin D(3) (VD). Parkin knockdown in VD-treated cells blocked IL-6 induction by mycobacteria. However, IκB-α phosphorylation and levels of IκB-ξ, a nuclear protein required for IL-6 expression, were not affected by Parkin silencing. Phosphorylation of MAPK ERK1/2 and p38 was unaffected by Parkin silencing while JNK activation was promoted but did not explain the altered cytokine production. In a final set of experiments we found that genetic risk factors of leprosy located in the PARK2 promoter region were significantly correlated with M. leprae sonicate triggered CCL2 and IL6 transcript levels in whole blood assays. These results associated genetically controlled changes in the production of MCP-1/CCL2 and IL-6 with known leprosy susceptibility factors.
Insights
Parkin deficiency in immune cells reduces key inflammatory signals IL-6 and MCP-1, crucial for leprosy. Genetic variations in the PARK2 gene correlate with these reduced responses, linking host genetics to leprosy susceptibility.
Area of Science:
- Immunology
- Genetics
- Microbiology
Background:
- Leprosy, caused by Mycobacterium leprae, affects over 200,000 new patients annually.
- Host genetic factors significantly influence leprosy susceptibility.
- The PARK2 gene, encoding the E3 ubiquitin ligase Parkin, is a key candidate gene for leprosy risk.
Purpose of the Study:
- To investigate the role of Parkin in macrophage immune responses to Mycobacterium leprae.
- To determine the impact of Parkin on the production of pro-inflammatory cytokines IL-6 and MCP-1/CCL2.
- To correlate genetic variations in the PARK2 gene with leprosy susceptibility and immune responses.
Main Methods:
- Parkin was downregulated in human macrophages and Schwann cells.
- Cells were stimulated with mycobacteria or LPS.
- Cytokine production (IL-6, MCP-1/CCL2) was measured.
- Western blotting assessed signaling pathways (IκB-α, IκB-ξ, MAPKs).
- Whole blood assays correlated PARK2 promoter variants with cytokine transcript levels.
Main Results:
- Parkin downregulation specifically decreased IL-6 and MCP-1/CCL2 production in response to mycobacteria.
- Vitamin D3 pretreatment enhanced IL-6 production, which was dependent on Parkin.
- Parkin silencing did not affect IκB-α or IκB-ξ levels but promoted JNK activation.
- Genetic risk factors in the PARK2 promoter correlated with IL-6 and CCL2 transcript levels.
Conclusions:
- Parkin plays a critical role in regulating IL-6 and MCP-1/CCL2 production in macrophages during mycobacterial infection.
- Genetic variations influencing PARK2 expression are associated with altered cytokine production and leprosy susceptibility.
- These findings link host genetics, Parkin function, and innate immunity in leprosy pathogenesis.
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