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1.
Sci Rep ; 10(1): 3799, 2020 03 02.
Article in English | MEDLINE | ID: mdl-32123243

ABSTRACT

The LRRK2 protein consists of multiple functional domains, including protein-binding domains at its N and C-terminus. Mutations in the Leucine-rich repeat kinase 2 gene (LRRK2) have been linked to familial and sporadic Parkinson's disease (PD). We have recently described a novel variant falling within the N-terminal armadillo repeats, E193K. Herein, our aim is to investigate the functional impact of LRRK2 N-terminal domain and the E193K variant on vesicle trafficking. By combining Total Internal Reflection Fluorescence (TIRF) microscopy and a synaptopHluorin assay, we found that expression of a construct lacking the N-terminal domain increases the frequency and amplitude of spontaneous synaptic events. Complementary biochemical approaches showed that the E193K variant alters the binding properties of LRRK2, decreases LRRK2 binding to synaptic vesicles, and promotes vesicle fusion. Our results confirm the physiological and pathological relevance of the nature of the LRRK2-associated macro-molecular complex solidifying the idea that different pathological mutations critically alter the scaffolding function of LRRK2 resulting in a perturbation of the vesicular trafficking as a common denominator.


Subject(s)
Leucine-Rich Repeat Serine-Threonine Protein Kinase-2/chemistry , Leucine-Rich Repeat Serine-Threonine Protein Kinase-2/metabolism , Synaptic Vesicles/metabolism , Humans , Leucine-Rich Repeat Serine-Threonine Protein Kinase-2/genetics , Mutation, Missense , Parkinson Disease/genetics , Parkinson Disease/metabolism , Protein Domains , Protein Transport , Synaptic Vesicles/genetics
2.
Sci Rep ; 7(1): 5377, 2017 07 14.
Article in English | MEDLINE | ID: mdl-28710481

ABSTRACT

Mutations in the Leucine-rich repeat kinase 2 gene (LRRK2) are associated with familial Parkinson's disease (PD). LRRK2 protein contains several functional domains, including protein-protein interaction domains at its N- and C-termini. In this study, we analyzed the functional features attributed to LRRK2 by its N- and C-terminal domains. We combined TIRF microscopy and synaptopHluorin assay to visualize synaptic vesicle trafficking. We found that N- and C-terminal domains have opposite impact on synaptic vesicle dynamics. Biochemical analysis demonstrated that different proteins are bound at the two extremities, namely ß3-Cav2.1 at N-terminus part and ß-Actin and Synapsin I at C-terminus domain. A sequence variant (G2385R) harboured within the C-terminal WD40 domain increases the risk for PD. Complementary biochemical and imaging approaches revealed that the G2385R variant alters strength and quality of LRRK2 interactions and increases fusion of synaptic vesicles. Our data suggest that the G2385R variant behaves like a loss-of-function mutation that mimics activity-driven events. Impaired scaffolding capabilities of mutant LRRK2 resulting in perturbed vesicular trafficking may arise as a common pathophysiological denominator through which different LRRK2 pathological mutations cause disease.


Subject(s)
Caveolin 2/metabolism , Leucine-Rich Repeat Serine-Threonine Protein Kinase-2/metabolism , Neurons/metabolism , Recombinant Fusion Proteins/metabolism , Synaptic Vesicles/metabolism , Actins/genetics , Actins/metabolism , Animals , Biological Transport , Caveolin 2/genetics , Cell Line , Embryo, Mammalian , Gene Expression , Glutathione Transferase/genetics , Glutathione Transferase/metabolism , Humans , Leucine-Rich Repeat Serine-Threonine Protein Kinase-2/chemistry , Leucine-Rich Repeat Serine-Threonine Protein Kinase-2/genetics , Membrane Fusion , Mice , Mice, Inbred C57BL , Mutation , Neurons/cytology , Primary Cell Culture , Protein Interaction Domains and Motifs , Recombinant Fusion Proteins/chemistry , Recombinant Fusion Proteins/genetics , Signal Transduction , Synapsins/genetics , Synapsins/metabolism
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