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Wienand, A.

Publications and source records attributed to Wienand, A..

2 recordsLinked to original sources

FUS controls muscle differentiation and structure through LLPS mediated recruitment of MEF2 and ETV5

FUS is an RNA binding protein mutated in amyotrophic lateral sclerosis (ALS), a neurodegenerative disease characterized by progressive muscle weakness. We show that ALS-associated FUS mutations lead to ultrastructural defects in muscle of FUS-ALS patients, with disruption of sarcomeres and mitochondria. Studies in mouse and Drosophila models demonstrate an evolutionary-conserved cell autonomous function of FUS in muscle development. Mechanistically, FUS is required for transcription of MEF2 dependent genes, binds to the promoter of genes bound by ETS transcription factors in particular ETV5 and co-activates transcription of MEF2 dependent genes with ETV5. FUS phase separates with ETV5 and MEF2A, and MEF2A binding to FUS is potentiated by ETV5. Last, Etv5 haploinsufficiency exacerbates muscle weakness in a mouse model of FUS-ALS. These findings establish FUS as an essential protein for skeletal muscle structure through its phase separation-dependent recruitment of ETV5 and MEF2, defining a novel pathway compromised in FUS-ALS.

neuroscience↗

DiDBiT-TMT: A novel method to quantify changes in the proteomic landscape induced by neural plasticity

Withdrawal StatementThe authors have withdrawn this manuscript because during the peer review process in the journal, it was discovered that one of the processed proteomic data groups (the chemical LTP group) was mistakenly processed from the raw data for the norepinephrine group, resulting in an apparent complete overlap between the two conditions. For a correct analysis, please refer to the currently published peer-reviewed publication through the following DOI: https://doi.org/10.1021/acs.jproteome.4c00180 Therefore, the authors do not wish this preprint to be cited as reference for the project. If you have any questions, please contact the corresponding author.

neuroscience↗