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Parkinson's disease-associated mutations in LRRK2 link enhanced GTP-binding and kinase activities to neuronal toxicity

Human Molecular Genetics · 2007 · Vol. 16(2) · pp. 223–232
Andrew B. WestDarren J. MooreCatherine ChoiShaida A. AndrabiXiaojie LiDustin DikemanSaskia BiskupZhenshui ZhangKah‐Leong LimValina L. DawsonTed M. Dawson

Abstract

Mutations in the leucine-rich repeat kinase 2 gene (LRRK2) cause late-onset Parkinson's disease indistinguishable from idiopathic disease. The mechanisms whereby missense alterations in the LRRK2 gene initiate neurodegeneration remain unknown. Here, we demonstrate that seven of 10 suspected familial-linked mutations result in increased kinase activity. Functional and disease-associated mutations in conserved residues reveal the critical link between intrinsic guanosine triphosphatase (GTPase) activity and downstream kinase activity. LRRK2 kinase activity requires GTPase activity, whereas GTPase activity functions independently of kinase activity. Both LRRK2 kinase and GTPase activity are required for neurotoxicity and potentiate peroxide-induced cell death, although LRRK2 does not function as a canonical MAP-kinase-kinase-kinase. These results suggest a link between LRRK2 kinase activity and pathogenic mechanisms relating to neurodegeneration, further supporting a gain-of-function role for LRRK2 mutations.

Parkinson's Disease Mechanisms and TreatmentsAlzheimer's disease research and treatmentsLysosomal Storage Disorders ResearchLRRK2BiologyGTPaseKinaseASK1Cyclin-dependent kinase 9MAP kinase kinase kinaseCyclin-dependent kinase 4Cell biologyMAP3K7

MeSH terms

Leucine-Rich Repeat Serine-Threonine Protein Kinase-2AnimalsCell LineCell SurvivalHumansMutationNerve DegenerationNeuronsParkinson DiseaseBlotting, WesternProtein Serine-Threonine KinasesGTP PhosphohydrolasesMice
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Parkinson's disease
Human Molecular Genetics · 2007 · 717 citations
References
MOLECULAR PATHOPHYSIOLOGY OF PARKINSON'S DISEASE
Annual Review of Neuroscience · 2005 · 1,280 citations
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