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Updated: Jun 14, 2026

Assaying the Kinase Activity of LRRK2 in vitro
Published on: January 18, 2012
PAK6 rescues pathogenic LRRK2-mediated ciliogenesis and centrosomal cohesion defects in a mutation-specific manner
Lucia Iannotta1,2, Rachel Fasiczka3, Giulia Favetta1
1Department of Biology, University of Padova, Padova, PD, Italy.
Abstract:
P21 activated kinase 6 (PAK6) is a serine-threonine kinase with physiological expression enriched in the brain and overexpressed in a number of human tumors. While the role of PAK6 in cancer cells has been extensively investigated, the physiological function of the kinase in the context of brain cells is poorly understood. Our previous work uncovered a link between PAK6 and the Parkinson's disease (PD)-associated kinase LRRK2, with PAK6 controlling LRRK2 activity and subcellular localization via phosphorylation of 14-3-3 proteins. Here, to gain more insights into PAK6 physiological function, we performed protein-protein interaction arrays and identified a subgroup of PAK6 binders related to ciliogenesis. We confirmed that endogenous PAK6 localizes at both the centrosome and the cilium, and positively regulates ciliogenesis not only in tumor cells but also in neurons and astrocytes. Notably, PAK6 rescues ciliogenesis and centrosomal cohesion defects associated with the G2019S but not the R1441C LRRK2 PD mutation. Since PAK6 binds LRRK2 via its GTPase/Roc-COR domain and the R1441C mutation is located in the Roc domain, we used microscale thermophoresis and AlphaFold2-based computational analysis to demonstrate that PD mutations in LRRK2 affecting the Roc-COR structure substantially decrease PAK6 affinity, providing a rationale for the differential protective effect of PAK6 toward the distinct forms of mutant LRRK2. Altogether, our study discloses a novel role of PAK6 in ciliogenesis and points to PAK6 as the first LRRK2 modifier with PD mutation-specificity.
Insights
P21 activated kinase 6 (PAK6) regulates ciliogenesis in brain cells and tumors. PAK6 specifically rescues defects linked to certain Parkinson's disease LRRK2 mutations, revealing a novel role in neuroprotection.
Area of Science:
- Cell Biology
- Neuroscience
- Molecular Biology
Background:
- P21 activated kinase 6 (PAK6) is a serine-threonine kinase found in the brain and overexpressed in tumors.
- Its physiological role in brain cells remains largely unknown, despite extensive cancer research.
- Previous studies linked PAK6 to Parkinson's disease (PD) kinase LRRK2.
Purpose of the Study:
- To investigate the physiological function of PAK6 in brain cells.
- To explore the relationship between PAK6, ciliogenesis, and Parkinson's disease.
Main Methods:
- Protein-protein interaction arrays to identify PAK6 binding partners.
- Immunofluorescence to confirm PAK6 localization in centrosomes and cilia.
- Functional assays to assess ciliogenesis in various cell types.
- Microscale thermophoresis and AlphaFold2 analysis to study PAK6-LRRK2 interactions.
Main Results:
- PAK6 was found to localize at the centrosome and cilium, positively regulating ciliogenesis in tumor cells, neurons, and astrocytes.
- PAK6 rescued ciliogenesis and centrosomal cohesion defects associated with the G2019S LRRK2 PD mutation, but not the R1441C mutation.
- PD mutations in LRRK2's Roc-COR domain significantly reduced PAK6 binding affinity.
Conclusions:
- PAK6 plays a novel and crucial role in regulating ciliogenesis across different cell types.
- PAK6 acts as a specific modifier of LRRK2, offering differential protection against distinct Parkinson's disease mutations.
- This study identifies PAK6 as a potential therapeutic target for specific forms of Parkinson's disease.
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