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Identification of Footprints of RNA:Protein Complexes via RNA Immunoprecipitation in Tandem Followed by Sequencing (RIPiT-Seq)
Published on: July 10, 2019
UPF1 at Work: Structural and Mechanistic Insights Into a Master Regulator of Nonsense-Mediated mRNA Decay
Vincent Mocquet1, Francesca Fiorini2
1Laboratoire de Biologie et Modélisation de la Cellule, Ecole Normale Supérieure de Lyon, Université Claude Bernard, CNRS UMR 5239, Inserm, U1293 Lyon, France.
Abstract:
RNA helicases are central architects of ribonucleoprotein (RNP) organization, coupling nucleoside triphosphate hydrolysis to RNA binding to unwind duplexes, translocate along nucleic acids, displace RNA-binding proteins, and remodel RNP assemblies. Among them, UPF1 (UP-Frameshift 1) is a highly conserved superfamily 1 (SF1) helicase and the pivotal effector of nonsense-mediated mRNA decay (NMD). UPF1 harbors the canonical helicase core motifs required for ATP binding and hydrolysis, RNA interaction, and chemo-mechanical coupling, as well as regulatory domains that fine-tune its catalytic activity and protein-protein interactions. UPF1 displays remarkable enzymatic versatility, acting as an RNA translocase, helicase and RNPase. Its capacity to coordinate these distinct but interconnected activities enables dynamic remodeling of messenger RNPs and positions UPF1 as a multifunctional regulator of RNA fate during NMD. In this review, we integrate current structural and mechanistic insights into UPF1 function and propose a unifying framework that links its biochemical properties to its diverse cellular roles, aiming to reconcile the existing models that describe its mechanism of action.
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