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Rab10 Phosphorylation Detection by LRRK2 Activity Using SDS-PAGE with a Phosphate-binding Tag
Published on: December 14, 2017
Contribution of GTPase activity to LRRK2-associated Parkinson disease
Elpida Tsika1, Darren J Moore1
1Laboratory of Molecular Neurodegenerative Research; Brain Mind Institute; School of Life Sciences; Ecole Polytechnique Fédérale de Lausanne (EPFL); Lausanne, Switzerland.
Abstract:
Mutations in the leucine-rich repeat kinase 2 (LRRK2, PARK8, OMIM 607060) gene represent the most common known cause of hereditary Parkinson's disease (PD) with late-onset and dominant inheritance. LRRK2 protein is composed of multiple domains including two distinct enzymatic domains, a kinase and a Ras-of-complex (Roc) GTPase, connected by a C-terminal-of-Roc (COR) domain, and belongs to the ROCO protein family. Disease-causing mutations located in the kinase domain enhance kinase activity (i.e., G2019S) whereas mutations clustering within the Roc-COR tandem domain impair GTPase activity (i.e., R1441C/G and Y1699C). Familial LRRK2 mutations commonly induce neuronal toxicity that, at least for the frequent G2019S variant, is dependent on kinase activity. The contribution of GTPase activity to LRRK2-dependent neuronal toxicity is not yet clear. Therefore, both GTPase and kinase activity may be important for mediating neurodegeneration in PD due to familial LRRK2 mutations. At present, the physiological function of LRRK2 in the mammalian brain and the regulation of its enzymatic activity are incompletely understood. In this review, we focus on the GTPase domain of LRRK2 and discuss the recent advances in elucidating its function and its interplay with the kinase domain for the regulation of LRRK2 activity and toxicity. GTPase activity is an important feature of LRRK2 biology and pathophysiology and represents an underexplored yet potentially tractable therapeutic target for treating LRRK2-associated PD.
Insights
Mutations in the leucine-rich repeat kinase 2 (LRRK2) gene are a common cause of Parkinson's disease. This review explores the GTPase domain's role in LRRK2 activity and neurotoxicity, highlighting it as a potential therapeutic target.
Area of Science:
- Neuroscience
- Genetics
- Biochemistry
Background:
- Mutations in the leucine-rich repeat kinase 2 (LRRK2) gene are the most frequent cause of hereditary Parkinson's disease (PD).
- LRRK2 protein possesses kinase and GTPase enzymatic domains, crucial for its function.
- Understanding LRRK2's physiological role and activity regulation is incomplete.
Purpose of the Study:
- To review recent advances in understanding the LRRK2 GTPase domain's function.
- To explore the interplay between LRRK2's GTPase and kinase domains.
- To assess the GTPase domain as a therapeutic target for LRRK2-associated PD.
Main Methods:
- Literature review focusing on LRRK2 GTPase domain research.
- Analysis of studies investigating LRRK2 mutations and their impact on enzymatic activity.
- Synthesis of current knowledge on LRRK2 regulation and neurotoxicity.
Main Results:
- LRRK2 mutations can enhance kinase activity or impair GTPase activity, both potentially contributing to PD.
- Kinase activity is linked to neurotoxicity for some LRRK2 variants, but the role of GTPase activity remains unclear.
- The GTPase domain is integral to LRRK2 biology and pathophysiology.
Conclusions:
- Both kinase and GTPase activities of LRRK2 may mediate neurodegeneration in familial PD.
- The LRRK2 GTPase domain's function and regulation are critical areas for further research.
- Targeting LRRK2 GTPase activity presents a promising therapeutic avenue for Parkinson's disease.
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