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.

Cell Death & Disease
|October 17, 2024
PubMed

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.