LRRK2 kinase regulates α-synuclein propagation via RAB35 phosphorylation

被引:0
作者
Eun-Jin Bae
Dong-Kyu Kim
Changyoun Kim
Michael Mante
Anthony Adame
Edward Rockenstein
Ayse Ulusoy
Michael Klinkenberg
Ga Ram Jeong
Jae Ryul Bae
Cheolsoon Lee
He-Jin Lee
Byung-Dae Lee
Donato A. Di Monte
Eliezer Masliah
Seung-Jae Lee
机构
[1] Seoul National University College of Medicine,Departments of Biomedical Sciences and Medicine, Neuroscience Research Institute
[2] Laboratory of Neurogenetics,Molecular Neuropathology Section
[3] National Institute on Aging,Department Neurosciences
[4] National Institutes of Health,Department of Neuroscience
[5] School of Medicine,Department of Anatomy
[6] University of California,Department of Physiology
[7] San Diego,Department of Pathology
[8] German Center for Neurodegenerative Diseases (DZNE),undefined
[9] Graduate School,undefined
[10] Kyung Hee University,undefined
[11] School of Medicine,undefined
[12] Konkuk University,undefined
[13] School of Medicine,undefined
[14] Kyung Hee University,undefined
[15] School of Medicine,undefined
[16] University of California,undefined
[17] San Diego,undefined
来源
Nature Communications | / 9卷
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摘要
Propagation of α-synuclein aggregates has been suggested as a contributing factor in Parkinson’s disease (PD) progression. However, the molecular mechanisms underlying α-synuclein aggregation are not fully understood. Here, we demonstrate in cell culture, nematode, and rodent models of PD that leucine-rich repeat kinase 2 (LRRK2), a PD-linked kinase, modulates α-synuclein propagation in a kinase activity-dependent manner. The PD-linked G2019S mutation in LRRK2, which increases kinase activity, enhances propagation efficiency. Furthermore, we show that the role of LRRK2 in α-synuclein propagation is mediated by RAB35 phosphorylation. Constitutive activation of RAB35 overrides the reduced α-synuclein propagation phenotype in lrk-1 mutant C. elegans. Finally, in a mouse model of synucleinopathy, administration of an LRRK2 kinase inhibitor reduced α-synuclein aggregation via enhanced interaction of α-synuclein with the lysosomal degradation pathway. These results suggest that LRRK2-mediated RAB35 phosphorylation is a potential therapeutic target for modifying disease progression.
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