Parkinson's disease-associated LRRK2 risk variant, G2385R, enhances Rab substrate phosphorylation and impairs

An Phu Tran Nguyen1,2, Roger Moser3, Nicole Bryant4

  • 1Departments of Neurodegenerative Science, Van Andel Institute, Grand Rapids, Michigan 49503, USA.

Insights

Common Parkinson's disease (PD) risk variants in the LRRK2 gene alter Rab10 phosphorylation, a key indicator of PD risk. The G2385R LRRK2 variant impairs neuronal growth, similar to the G2019S mutation.

Area of Science:

  • Genetics
  • Neuroscience
  • Biochemistry

Background:

  • Mutations in the Leucine-Rich Repeat Kinase 2 (LRRK2) gene are a primary cause of familial Parkinson's disease (PD).
  • Common LRRK2 variants increase the risk of sporadic PD, but their functional impact remains unclear.
  • LRRK2 protein possesses GTPase and kinase activities, both implicated in PD pathogenesis.

Purpose of the Study:

  • To investigate how common LRRK2 coding risk variants affect LRRK2 protein biochemistry and neurotoxicity.
  • To determine if these variants alter LRRK2 kinase activity, specifically Rab10 phosphorylation.
  • To assess the impact of PD-associated LRRK2 variants on neuronal integrity.

Main Methods:

  • Utilized cell-based assays with human cell lines and primary neurons.
  • Analyzed LRRK2 protein levels, GTP-binding, phosphorylation at key sites (Ser910, Ser935, Ser1292), and subcellular localization.
  • Quantified LRRK2-mediated Rab10 phosphorylation (pRab10) levels.
  • Assessed the effect of LRRK2 variants on neurite outgrowth and response to lysosomal stressors.

Main Results:

  • Most LRRK2 coding risk variants had minor effects on protein levels and basic biochemical properties, except for G2385R, which reduced LRRK2 levels and phosphorylation.
  • PD-associated LRRK2 variants (A419V, R1628P, M1646T, G2385R) significantly increased Rab10 phosphorylation by two-fold.
  • The G2385R LRRK2 variant markedly inhibited neurite outgrowth in primary neurons, comparable to the familial G2019S mutation.
  • Both PD-risk and PD-protective variants responded normally to kinase activation by lysosomal stressors.

Conclusions:

  • LRRK2-dependent Rab10 phosphorylation serves as a crucial indicator of PD risk associated with LRRK2 coding variants.
  • The G2385R LRRK2 variant exhibits hyperactive kinase function, leading to impaired neuronal integrity.
  • Common LRRK2 coding variants contribute to PD pathogenesis through altered kinase activity and neurotoxicity.

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