The role of LRRK2 in cell signalling
Kirsten Harvey1, Tiago F Outeiro2,3,4
1Department of Pharmacology, UCL School of Pharmacy, University College London, 29-39 Brunswick Square, London WC1N 1AX, U.K. kirsten.harvey@ucl.ac.uk.
Abstract:
Parkinson's disease (PD) is a common late-onset neurodegenerative disorder known primarily for its motor features. Mutations and risk variants in LRRK2 cause familial and idiopathic forms of PD. Mutations segregating with disease are found in the LRRK2 GTPase and kinase domains, affecting catalytic activity and protein-protein interactions. This likely results in an overall gain of LRRK2 cell signalling function contributing to PD pathogenesis. This concept supports the development of LRRK2 kinase inhibitors as disease-modifying treatments, at least for a subset of patients. However, the function of LRRK2 as a cell signalling protein with two catalytic and several protein-protein interaction domains is highly complex. For example, LRRK2 plays important roles in several inflammatory diseases, raising the possibility that it may mediate immune responses in PD. Consistently, LRRK2-mediated cell signalling was not only shown to be important for neuronal function, including neuronal development and homeostasis, but also for peripheral and central immune responses. The catalytic activity of LRRK2 is regulated by autophosphorylation, protein monomer/dimer cycling, and upstream kinases and GTPases, affecting its subcellular localisation and downstream signalling. Part of LRRK2-mediated signalling is likely facilitated by Rab protein phosphorylation, affecting primarily membrane trafficking, including vesicle release at the trans-Golgi network. However, LRRK2 also displays intrinsic GTPase activity and functions as a signalling scaffold. As an example, LRRK2 was suggested to be part of the NRON complex and β-catenin destruction complex, inhibiting NFAT and canonical Wnt signalling, respectively. In summary, continuous research into LRRK2 signalling function contributes to novel diagnostic and therapeutic concepts in PD.
Insights
Research into Leucine-Rich Repeat Kinase 2 (LRRK2) signaling reveals its complex role in Parkinson's disease (PD) pathogenesis, influencing neuronal function and immune responses. Understanding LRRK2 pathways offers new diagnostic and therapeutic strategies for PD.
Area of Science:
- Neuroscience
- Genetics
- Immunology
Background:
- Parkinson's disease (PD) is a neurodegenerative disorder primarily affecting motor function.
- Mutations in Leucine-Rich Repeat Kinase 2 (LRRK2) are linked to familial and idiopathic PD.
- LRRK2 mutations often result in increased signaling, contributing to PD pathogenesis.
Purpose of the Study:
- To explore the complex signaling functions of LRRK2 in PD.
- To investigate LRRK2's role in both neuronal and immune system processes.
- To highlight the therapeutic potential of targeting LRRK2.
Main Methods:
- Analysis of LRRK2 mutations in GTPase and kinase domains.
- Investigation of LRRK2's impact on protein-protein interactions and cell signaling.
- Examination of LRRK2's involvement in inflammatory and immune responses.
- Study of LRRK2's regulation via autophosphorylation, dimerization, and upstream factors.
- Assessment of LRRK2's role in Rab protein phosphorylation and membrane trafficking.
- Exploration of LRRK2 as a signaling scaffold, interacting with complexes like NRON and β-catenin destruction complex.
Main Results:
- LRRK2 signaling gain-of-function contributes to PD.
- LRRK2 is implicated in neuronal homeostasis and immune responses.
- LRRK2 activity is tightly regulated by multiple mechanisms.
- LRRK2 influences membrane trafficking and signaling pathways like NFAT and Wnt.
Conclusions:
- LRRK2 signaling is a complex, multifaceted process relevant to PD.
- LRRK2's dual role in neuronal and immune functions offers therapeutic avenues.
- Further research into LRRK2 signaling can lead to novel PD diagnostics and treatments.
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