| Literature DB >> 27773581 |
Fernando J Martinez1, Gabriel A Pratt2, Eric L Van Nostrand1, Ranjan Batra1, Stephanie C Huelga1, Katannya Kapeli3, Peter Freese4, Seung J Chun5, Karen Ling5, Chelsea Gelboin-Burkhart1, Layla Fijany1, Harrison C Wang1, Julia K Nussbacher1, Sara M Broski6, Hong Joo Kim7, Rea Lardelli8, Balaji Sundararaman1, John P Donohue9, Ashkan Javaherian6, Jens Lykke-Andersen8, Steven Finkbeiner10, C Frank Bennett5, Manuel Ares9, Christopher B Burge4, J Paul Taylor7, Frank Rigo5, Gene W Yeo11.
Abstract
HnRNPA2B1 encodes an RNA binding protein associated with neurodegeneration. However, its function in the nervous system is unclear. Transcriptome-wide crosslinking and immunoprecipitation in mouse spinal cord discover UAGG motifs enriched within ∼2,500 hnRNP A2/B1 binding sites and an unexpected role for hnRNP A2/B1 in alternative polyadenylation. HnRNP A2/B1 loss results in alternative splicing (AS), including skipping of an exon in amyotrophic lateral sclerosis (ALS)-associated D-amino acid oxidase (DAO) that reduces D-serine metabolism. ALS-associated hnRNP A2/B1 D290V mutant patient fibroblasts and motor neurons differentiated from induced pluripotent stem cells (iPSC-MNs) demonstrate abnormal splicing changes, likely due to increased nuclear-insoluble hnRNP A2/B1. Mutant iPSC-MNs display decreased survival in long-term culture and exhibit hnRNP A2/B1 localization to cytoplasmic granules as well as exacerbated changes in gene expression and splicing upon cellular stress. Our findings provide a cellular resource and reveal RNA networks relevant to neurodegeneration, regulated by normal and mutant hnRNP A2/B1. VIDEO ABSTRACT.Entities:
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Year: 2016 PMID: 27773581 PMCID: PMC5123850 DOI: 10.1016/j.neuron.2016.09.050
Source DB: PubMed Journal: Neuron ISSN: 0896-6273 Impact factor: 17.173