Dysregulated miRNA biogenesis downstream of cellular stress and ALS-causing mutations: a new mechanism for ALS

细胞应激和 ALS 致病突变下游 miRNA 生物合成失调:ALS 的新机制

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作者:Anna Emde, Chen Eitan, Lee-Loung Liou, Ryan T Libby, Natali Rivkin, Iddo Magen, Irit Reichenstein, Hagar Oppenheim, Raya Eilam, Aurelio Silvestroni, Betty Alajajian, Iddo Z Ben-Dov, Julianne Aebischer, Alon Savidor, Yishai Levin, Robert Sons, Scott M Hammond, John M Ravits, Thomas Möller, Eran Horns

Abstract

Interest in RNA dysfunction in amyotrophic lateral sclerosis (ALS) recently aroused upon discovering causative mutations in RNA-binding protein genes. Here, we show that extensive down-regulation of miRNA levels is a common molecular denominator for multiple forms of human ALS. We further demonstrate that pathogenic ALS-causing mutations are sufficient to inhibit miRNA biogenesis at the Dicing step. Abnormalities of the stress response are involved in the pathogenesis of neurodegeneration, including ALS. Accordingly, we describe a novel mechanism for modulating microRNA biogenesis under stress, involving stress granule formation and re-organization of DICER and AGO2 protein interactions with their partners. In line with this observation, enhancing DICER activity by a small molecule, enoxacin, is beneficial for neuromuscular function in two independent ALS mouse models. Characterizing miRNA biogenesis downstream of the stress response ties seemingly disparate pathways in neurodegeneration and further suggests that DICER and miRNAs affect neuronal integrity and are possible therapeutic targets.

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