Single molecule array measures of LRRK2 kinase activity in serum link Parkinson's disease severity to peripheral

Abstract

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.