Aberrant interaction of FUS with the U1 snRNA provides a molecular mechanism of FUS induced amyotrophic lateral sclerosis

Daniel Jutzi(King's College London), Sébastien Campagne(ETH Zurich), Ralf Schmidt(University of Basel), Stefan Reber(King's College London), Jonas Mechtersheimer(King's College London), Foivos Gypas(University of Basel), Christoph Schweingruber(Karolinska Institutet), Martino Colombo, Christine von Schroetter(ETH Zurich), Fionna E. Loughlin(ETH Zurich), Anny Devoy(King's College London), Eva Hedlund(Karolinska Institutet), Mihaela Zavolan(University of Basel), Frédéric H.‐T. Allain(ETH Zurich), Marc‐David Ruepp(King's College London)
Nature Communications
December 11, 2020
Cited by 82Open Access
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Abstract

Mutations in the RNA-binding protein Fused in Sarcoma (FUS) cause early-onset amyotrophic lateral sclerosis (ALS). However, a detailed understanding of central RNA targets of FUS and their implications for disease remain elusive. Here, we use a unique blend of crosslinking and immunoprecipitation (CLIP) and NMR spectroscopy to identify and characterise physiological and pathological RNA targets of FUS. We find that U1 snRNA is the primary RNA target of FUS via its interaction with stem-loop 3 and provide atomic details of this RNA-mediated mode of interaction with the U1 snRNP. Furthermore, we show that ALS-associated FUS aberrantly contacts U1 snRNA at the Sm site with its zinc finger and traps snRNP biogenesis intermediates in human and murine motor neurons. Altogether, we present molecular insights into a FUS toxic gain-of-function involving direct and aberrant RNA-binding and strengthen the link between two motor neuron diseases, ALS and spinal muscular atrophy (SMA).


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