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Updated: May 18, 2026

Assaying the Kinase Activity of LRRK2 in vitro
Published on: January 18, 2012
Screening for novel LRRK2 inhibitors using a high-throughput TR-FRET cellular assay for LRRK2 Ser935 phosphorylation
Spencer B Hermanson1, Coby B Carlson, Steven M Riddle
1Primary and Stem Cell Systems, Life Technologies Corporation, Madison, Wisconsin, United States of America.
Background:
Mutations in the leucine-rich repeat kinase-2 (LRRK2) have been linked to Parkinson's disease. Recent studies show that inhibition of LRRK2 kinase activity decreased the level of phosphorylation at its own Ser910 and Ser935, indicating that these sites are prime targets for cellular readouts of LRRK2 inhibition.
Methodology/Principal Findings:
Using Time-Resolved Förster Resonance Energy Transfer (TR-FRET) technology, we developed a high-throughput cellular assay for monitoring LRRK2 phosphorylation at Ser935. LRRK2-Green Fluorescence Protein (GFP) fusions were expressed in cells via BacMam. Phosphorylation at Ser935 in these cells is detected using a terbium labeled anti-phospho-Ser935 antibody that generates a TR-FRET signal between terbium and GFP. LRRK2 wild-type and G2019S are constitutively phosphorylated at Ser935 in cells as measured by TR-FRET. The phosphorylation level is reduced for the R1441C mutant and little could be detected for the kinase-dead mutant D1994A. The TR-FRET cellular assay was further validated using reported LRRK2 inhibitors including LRRK2-IN-1 and our results confirmed that inhibition of LRRK2 can reduce the phosphorylation level at Ser935. To demonstrate the utility of this assay for screening, we profiled a small library of 1120 compounds. Three known LRRK2 inhibitors were identified and 16 hits were followed up in the TR-FRET and a cytotoxicity assay. Interestingly, out of the top 16 hits, five are known inhibitors of IκB phosphorylation, two CHK1 and two CDC25 inhibitors. Thirteen hits were further tested in a biochemical LRRK2 kinase activity assay and Western blot analysis for their effects on the phosphorylation of Ser910, Ser935, Ser955 and Ser973.
Conclusions/Significance:
We developed a TR-FRET cellular assay for LRRK2 Ser935 phosphorylation that can be applied to the screening for LRRK2 inhibitors. We report for the first time that several compounds such as IKK16, CHK1 inhibitors and GW441756 can inhibit LRRK2 Ser935 phosphorylation in cells and LRRK2 kinase activity in vitro.
Insights
We developed a novel cellular assay using TR-FRET technology to measure LRRK2 phosphorylation at Ser935, aiding in Parkinson
Area of Science:
- Neuroscience
- Biochemistry
- Pharmacology
Background:
- Mutations in leucine-rich repeat kinase-2 (LRRK2) are associated with Parkinson's disease.
- LRRK2 kinase activity inhibition reduces phosphorylation at Ser910 and Ser935, key indicators for monitoring LRRK2 inhibition.
Purpose of the Study:
- To develop a high-throughput cellular assay for monitoring LRRK2 phosphorylation at Ser935.
- To validate the assay's utility for screening potential LRRK2 inhibitors.
Main Methods:
- Utilized Time-Resolved Förster Resonance Energy Transfer (TR-FRET) technology.
- Expressed LRRK2-Green Fluorescence Protein (GFP) fusions in cells via BacMam.
- Detected Ser935 phosphorylation using a terbium-labeled anti-phospho-Ser935 antibody.
Main Results:
- The TR-FRET assay successfully measured constitutive Ser935 phosphorylation in LRRK2 wild-type and G2019S mutants.
- Phosphorylation levels were reduced in R1441C mutants and undetectable in kinase-dead mutants.
- The assay identified known LRRK2 inhibitors and revealed novel inhibitors targeting IκB phosphorylation, CHK1, and CDC25.
Conclusions:
- A robust TR-FRET cellular assay for LRRK2 Ser935 phosphorylation was established for inhibitor screening.
- Compounds including IKK16, CHK1 inhibitors, and GW441756 demonstrated efficacy in inhibiting LRRK2 Ser935 phosphorylation in cells and kinase activity in vitro.
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