Parkinson's disease-linked LRRK2 is expressed in circulating and tissue immune cells and upregulated following
Mansoureh Hakimi1, Thirumahal Selvanantham, Erika Swinton
1Division of Neuroscience, Ottawa Hospital Research Institute, Ottawa, ON, Canada.
Abstract:
Sequence variants at or near the leucine-rich repeat kinase 2 (LRRK2) locus have been associated with susceptibility to three human conditions: Parkinson's disease (PD), Crohn's disease and leprosy. As all three disorders represent complex diseases with evidence of inflammation, we hypothesized a role for LRRK2 in immune cell functions. Here, we report that full-length Lrrk2 is a relatively common constituent of human peripheral blood mononuclear cells (PBMC) including affinity isolated, CD14(+) monocytes, CD19(+) B cells, and CD4(+) as well as CD8(+) T cells. Up to 26% of PBMC from healthy donors and up to 43% of CD14(+) monocytes were stained by anti-Lrrk2 antibodies using cell sorting. PBMC lysates contained full-length (>260 kDa) and higher molecular weight Lrrk2 species. The expression of LRRK2 in circulating leukocytes was confirmed by microscopy of human blood smears and in sections from normal midbrain and distal ileum. Lrrk2 reactivity was also detected in mesenteric lymph nodes and spleen (including in dendritic cells), but was absent in splenic mononuclear cells from lrrk2-null mice, as expected. In cultured bone marrow-derived macrophages from mice we made three observations: (i) a predominance of higher molecular weight lrrk2; (ii) the reduction of autophagy marker LC3-II in (R1441C)lrrk2-mutant cells (<31%); and (iii) a significant up-regulation of lrrk2 mRNA (>fourfold) and protein after exposure to several microbial structures including bacterial lipopolysaccharide and lentiviral particles. We conclude that Lrrk2 is a constituent of many cell types in the immune system. Following the recognition of microbial structures, stimulated macrophages respond with altered lrrk2 gene expression. In the same cells, lrrk2 appears to co-regulate autophagy. A pattern recognition receptor-type function for LRRK2 could explain its locus' association with Crohn's disease and leprosy risk. We speculate that the role of Lrrk2 in immune cells may also be relevant to the susceptibility of developing PD or its progression.
Insights
Leucine-rich repeat kinase 2 (LRRK2) is present in immune cells and its expression changes upon microbial exposure. This suggests LRRK2 may play a role in immune responses and diseases like Parkinson's disease (PD), Crohn's disease, and leprosy.
Area of Science:
- Immunology
- Neuroscience
- Genetics
Background:
- Sequence variants in the leucine-rich repeat kinase 2 (LRRK2) gene are linked to Parkinson's disease (PD), Crohn's disease, and leprosy.
- These complex diseases share inflammatory characteristics, suggesting a potential role for LRRK2 in immune cell function.
Purpose of the Study:
- To investigate the presence and function of LRRK2 in immune cells.
- To explore the relationship between LRRK2 expression, microbial stimulation, and autophagy.
Main Methods:
- Flow cytometry and antibody staining to detect LRRK2 in human peripheral blood mononuclear cells (PBMCs).
- Microscopy of human blood smears and tissue sections to confirm LRRK2 expression.
- Culture of mouse bone marrow-derived macrophages exposed to microbial structures (e.g., lipopolysaccharide) to assess LRRK2 expression and autophagy markers.
Main Results:
- Full-length LRRK2 was detected in various human immune cells, including monocytes, B cells, and T cells.
- LRRK2 expression in macrophages increased significantly after stimulation with microbial components.
- A specific LRRK2 mutation (R1441C) was associated with reduced autophagy marker LC3-II levels.
Conclusions:
- LRRK2 is a component of multiple immune cell types and its gene expression is modulated by microbial stimuli.
- LRRK2 appears to co-regulate autophagy in macrophages.
- The findings suggest a potential pattern recognition receptor-like function for LRRK2, linking it to inflammatory diseases and potentially PD susceptibility.
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