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Mol Cell
Published

The Solution Structure of FUS Bound to RNA Reveals a Bipartite Mode of RNA Recognition with Both Sequence and Shape Specificity.

Authors

Fionna E Loughlin, Peter J Lukavsky, Tamara Kazeeva, Stefan Reber, Eva-Maria Hock, Martino Colombo, Christine Von Schroetter, Phillip Pauli, Antoine Cléry, Oliver Mühlemann, Magdalini Polymenidou, Marc-David Ruepp, Frédéric H-T Allain

Abstract

Fused in sarcoma (FUS) is an RNA binding protein involved in regulating many aspects of RNA processing and linked to several neurodegenerative diseases. Transcriptomics studies indicate that FUS binds a large variety of RNA motifs, suggesting that FUS RNA binding might be quite complex. Here, we present solution structures of FUS zinc finger (ZnF) and RNA recognition motif (RRM) domains bound to RNA. These structures show a bipartite binding mode of FUS comprising of sequence-specific recognition of a NGGU motif via the ZnF and an unusual shape recognition of a stem-loop RNA via the RRM. In addition, sequence-independent interactions via the RGG repeats significantly increase binding affinity and promote destabilization of structured RNA conformation, enabling additional binding. We further show that disruption of the RRM and ZnF domains abolishes FUS function in splicing. Altogether, our results rationalize why deciphering the RNA binding mode of FUS has been so challenging.

PMID:30581145 | DOI:S1097-2765(18)30982-1

UK DRI Authors

Image of Marc-David Ruepp

Dr Marc-David Ruepp

Group Leader

Exploring RNA metabolism in health and neurodegeneration

Dr Marc-David Ruepp