Full Text

Turn on search term navigation

Copyright Nature Publishing Group Jun 2016

Abstract

A common genetic form of Parkinson's disease (PD) is caused by mutations in LRRK2. We identify WSB1 as a LRRK2 interacting protein. WSB1 ubiquitinates LRRK2 through K27 and K29 linkage chains, leading to LRRK2 aggregation and neuronal protection in primary neurons and a Drosophila model of G2019S LRRK2. Knocking down endogenous WSB1 exacerbates mutant LRRK2 neuronal toxicity in neurons and the Drosophila model, indicating a role for endogenous WSB1 in modulating LRRK2 cell toxicity. WSB1 is in Lewy bodies in human PD post-mortem tissue. These data demonstrate a role for WSB1 in mutant LRRK2 pathogenesis, and suggest involvement in Lewy body pathology in sporadic PD. Our data indicate a role in PD for ubiquitin K27 and K29 linkages, and suggest that ubiquitination may be a signal for aggregation and neuronal protection in PD, which may be relevant for other neurodegenerative disorders. Finally, our study identifies a novel therapeutic target for PD.

Details

Title
Ubiqutination via K27 and K29 chains signals aggregation and neuronal protection of LRRK2 by WSB1
Author
Nucifora, Frederick C, , Jr; Nucifora, Leslie G; Ng, Chee-hoe; Arbez, Nicolas; Guo, Yajuan; Roby, Elaine; Shani, Vered; Engelender, Simone; Wei, Dong; Wang, Xiao-fang; Li, Tianxia; Moore, Darren J; Pletnikova, Olga; Troncoso, Juan C; Sawa, Akira; Dawson, Ted M; Smith, Wanli; Lim, Kah-leong; Ross, Christopher A
Pages
11792
Publication year
2016
Publication date
Jun 2016
Publisher
Nature Publishing Group
e-ISSN
20411723
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1794125151
Copyright
Copyright Nature Publishing Group Jun 2016