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Updated: Jul 16, 2026

Assaying the Kinase Activity of LRRK2 in vitro
Published on: January 18, 2012
Single molecule array measures of LRRK2 kinase activity in serum link Parkinson's disease severity to peripheral
Background:
LRRK2-targeting therapeutics that inhibit LRRK2 kinase activity have advanced to clinical trials in idiopathic Parkinson's disease (iPD). LRRK2 phosphorylates Rab10 on endolysosomes in phagocytic cells to promote some types of immunological responses. The identification of factors that regulate LRRK2-mediated Rab10 phosphorylation in iPD, and whether phosphorylated-Rab10 levels change in different disease states, or with disease progression, may provide insights into the role of Rab10 phosphorylation in iPD and help guide therapeutic strategies targeting this pathway.
Methods:
Capitalizing on past work demonstrating LRRK2 and phosphorylated-Rab10 interact on vesicles that can shed into biofluids, we developed and validated a high-throughput single-molecule array assay to measure extracellular pT73-Rab10. Ratios of pT73-Rab10 to total Rab10 measured in biobanked serum samples were compared between informative groups of transgenic mice, rats, and a deeply phenotyped cohort of iPD cases and controls. Multivariable and weighted correlation network analyses were used to identify genetic, transcriptomic, clinical, and demographic variables that predict the extracellular pT73-Rab10 to total Rab10 ratio.
Results:
pT73-Rab10 is absent in serum from Lrrk2 knockout mice but elevated by LRRK2 and VPS35 mutations, as well as SNCA expression. Bone-marrow transplantation experiments in mice show that serum pT73-Rab10 levels derive primarily from circulating immune cells. The extracellular ratio of pT73-Rab10 to total Rab10 is dynamic, increasing with inflammation and rapidly decreasing with LRRK2 kinase inhibition. The ratio of pT73-Rab10 to total Rab10 is elevated in iPD patients with greater motor dysfunction, irrespective of disease duration, age, sex, or the usage of PD-related or anti-inflammatory medications. pT73-Rab10 to total Rab10 ratios are associated with neutrophil activation, antigenic responses, and the suppression of platelet activation.
Conclusions:
The extracellular ratio of pT73-Rab10 to total Rab10 in serum is a novel pharmacodynamic biomarker for LRRK2-linked innate immune activation associated with disease severity in iPD. We propose that those iPD patients with higher serum pT73-Rab10 levels may benefit from LRRK2-targeting therapeutics to mitigate associated deleterious immunological responses.
Insights
A new assay measures extracellular phosphorylated-Rab10 (pT73-Rab10) in Parkinson's disease (PD) patients. Elevated levels correlate with motor dysfunction and immune activation, suggesting it as a biomarker for LRRK2-targeting therapies.
Area of Science:
- Neuroscience
- Immunology
- Biochemistry
Background:
- LRRK2 kinase inhibitors are in clinical trials for idiopathic Parkinson's disease (iPD).
- LRRK2 phosphorylates Rab10, influencing immune responses in phagocytic cells.
- Understanding Rab10 phosphorylation in iPD is crucial for therapeutic development.
Approach:
- Developed and validated a high-throughput assay to measure extracellular phosphorylated-Rab10 (pT73-Rab10) in serum.
- Compared pT73-Rab10 to total Rab10 ratios in mouse models and a cohort of iPD patients and controls.
- Utilized multivariable and network analyses to identify predictive factors for the pT73-Rab10 ratio.
Key Points:
- Serum pT73-Rab10 is absent in LRRK2 knockout mice but elevated with LRRK2/VPS35 mutations and SNCA expression.
- Bone-marrow transplantation studies indicate circulating immune cells are the primary source of serum pT73-Rab10.
- The pT73-Rab10 ratio is dynamic, increasing with inflammation and decreasing with LRRK2 inhibition.
- Elevated pT73-Rab10/Rab10 ratios in iPD patients correlate with motor dysfunction and immune cell activation.
Conclusions:
- The serum pT73-Rab10 to total Rab10 ratio serves as a novel pharmacodynamic biomarker for LRRK2-linked immune activation in iPD.
- This biomarker reflects disease severity and may predict response to LRRK2-targeting therapies.
- Higher serum pT73-Rab10 levels suggest potential benefit from LRRK2 inhibitors to mitigate immune responses in iPD.
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