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Rab10 Phosphorylation Detection by LRRK2 Activity Using SDS-PAGE with a Phosphate-binding Tag
Published on: December 14, 2017
LRRK2 kinase mediates increased GCase activity in microglia in response to IFNγ-induced proinflammatory stimulation
Emma J MacDougall1, Carol X-Q Chen2, Eric Deneault2,3
1Neurodegenerative Disorders Research Group, Department of Neurology and Neurosurgery, Montreal Neurological Institute-Hospital (The Neuro), McGill University, Montreal, QC, Canada.
Abstract:
Variants in the LRRK2 and GBA1 genes are among the most common risk factors associated with Parkinson's disease (PD). Both patients carrying PD-associated variants in GBA1, encoding lysosomal enzyme glucocerebrosidase (GCase), and a subset of non-carrier patients have been shown to have reduced GCase enzymatic activity, suggesting that reduced GCase activity may be a feature of both genetic and a subset of sporadic PD. However, the effect of PD-associated variants in LRRK2, encoding a serine/threonine kinase, on GCase activity remains controversial, with conflicting results in various tissues and cell types. Moreover, rare patients carrying both GBA1 and LRRK2 risk alleles seem to have a more benign disease course than carriers of GBA1 variants alone, suggesting a complex interplay between these two genes in PD. Here, we evaluate the effect of LRRK2 kinase activity on GCase activity in human induced pluripotent stem cell (iPSC)-derived microglia (iMGs), a PD-relevant brain cell type expressing high levels of LRRK2. Using CRISPR editing, isogenic control iPSC lines were generated to match PD patient-derived iPSC lines harbouring the LRRK2 p.G2019S, p.M1646T, or p.N551K-p.R1398H protective haplotype variants. Whereas iMGs harbouring the p.M1646T variant, and the protective haplotype, respectively increased and decreased phosphorylation of canonical LRRK2 substrate, Rab10, GCase protein levels and activity were not altered in any of the LRRK2 variant lines. Additionally, whereas pharmacological inhibition of LRRK2 kinase activity had no impact on GCase activity in iMGs under basal conditions, it attenuated the increase in GCase activity elicited in response to interferon γ (IFNγ) treatment. Moreover, GCase activity induced by IFNγ was reduced in PD risk LRRK2 p.M1646T iMGs and increased in p.N551K-p.R1398H protective haplotype iMGs compared to their isogenic corrected controls, congruent with their respective effects on LRRK2 kinase activity and PD risk. Thus, our data suggest a role for LRRK2 kinase activity in regulation of GCase activity in response to neuroinflammation.
Insights
Parkinson's disease (PD) risk genes LRRK2 and GBA1 influence glucocerebrosidase (GCase) activity. LRRK2 kinase activity modulates GCase levels, particularly during neuroinflammation, suggesting a complex interplay in PD pathogenesis.
Area of Science:
- Neuroscience
- Genetics
- Biochemistry
Background:
- LRRK2 and GBA1 variants are common Parkinson's disease (PD) risk factors.
- Reduced glucocerebrosidase (GCase) activity is observed in PD patients with GBA1 variants and some sporadic PD cases.
- The impact of LRRK2 variants on GCase activity is controversial, with conflicting data across different cell types.
Purpose of the Study:
- To investigate the effect of LRRK2 kinase activity on GCase activity in human induced pluripotent stem cell (iPSC)-derived microglia (iMGs).
- To explore the interplay between LRRK2 and GBA1 in the context of Parkinson's disease pathogenesis.
Main Methods:
- Generated isogenic control iPSC lines using CRISPR editing to match PD patient-derived iPSC lines with LRRK2 variants (p.G2019S, p.M1646T, p.N551K-p.R1398H protective haplotype).
- Assessed LRRK2 substrate phosphorylation (Rab10), GCase protein levels, and GCase activity in iMGs.
- Utilized pharmacological inhibition of LRRK2 and interferon gamma (IFNγ) stimulation to evaluate GCase activity regulation.
Main Results:
- LRRK2 variants p.M1646T and the protective haplotype altered Rab10 phosphorylation but did not affect GCase protein levels or activity in iMGs.
- Pharmacological LRRK2 inhibition did not impact basal GCase activity but attenuated IFNγ-induced GCase activity.
- IFNγ-induced GCase activity was modulated by LRRK2 variants, showing reduced activity in p.M1646T iMGs and increased activity in p.N551K-p.R1398H iMGs.
Conclusions:
- LRRK2 kinase activity plays a role in regulating GCase activity, particularly in response to neuroinflammatory stimuli like IFNγ.
- The findings suggest a complex interaction between LRRK2 and GBA1 pathways in Parkinson's disease.
- These results provide new insights into the molecular mechanisms underlying Parkinson's disease associated with LRRK2 and GBA1 genetics.
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