bioRxiv · 10.1101/2022.02.03.479052
Analysis of altered pre-mRNA splicing patterns caused by a mutation in the RNA binding protein hnRNPA1 linked to amyotrophic lateral sclerosis
Abstract
Amyotrophic lateral sclerosis (ALS) is a debilitating neurodegenerative disease characterized by loss of motor neurons. Human genetic studies have linked mutations in RNA binding proteins as causative for this disease. The hnRNPA1 protein, a known pre-mRNA splicing factor, is mutated in a number of ALS patients. Here, we generate two cell models to investigate how a mutation in the C-terminal low complexity domain of hnRNPA1 affects global pre-mRNA splicing patterns and RNA binding. We show that a single amino acid change in the C-terminal low complexity domain (D262V) leads to changes in splicing of thousands of transcripts whose genes are linked to the DNA damage response, cilia organization and translation. We also show that there are changes in RNA binding of the mutant hnRNPA1 protein to transcripts whose splicing patterns change. Finally, we show that cells expressing the hnRNPA1 D262V mutation exhibit an aggregation phenotype, markedly reduced growth rates and changes in stress granules. This study shows that global changes in pre-mRNA splicing patterns caused by a single mutation in the hnRNPA1 protein lead to phenotypes related to ALS and that specific cellular pathways are affected.
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Rio, D. C., Lee, Y. J.. 2022-02-04. Analysis of altered pre-mRNA splicing patterns caused by a mutation in the RNA binding protein hnRNPA1 linked to amyotrophic lateral sclerosis. https://doi.org/10.1101/2022.02.03.479052
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