Nonsense‐mediated mRNA decay involves two distinct Upf1‐bound complexes

Archive ouverte

Dehecq, Marine | Decourty, Laurence | Namane, Abdelkader | Proux, Caroline | Kanaan, Joanne | Le Hir, Hervé | Jacquier, Alain | Saveanu, Cosmin

Edité par CCSD ; EMBO Press -

International audience. Nonsense-mediated mRNA decay (NMD) is a translation-dependent RNA degradation pathway involved in many cellular pathways and crucial for telomere maintenance and embryo development. Core NMD factors Upf1, Upf2 and Upf3 are conserved from yeast to mammals, but a universal NMD model is lacking. We used affinity purification coupled with mass spectrometry and an improved data analysis protocol to obtain the first large-scale quantitative characterization of yeast NMD complexes in yeast (112 experiments). Unexpectedly, we identified two distinct complexes associated with Upf1: Detector (Upf1/2/3) and Effector. Effector contained the mRNA decapping enzyme, together with Nmd4 and Ebs1, two proteins that globally affected NMD and were critical for RNA degradation mediated by the Upf1 C-terminal helicase region. The fact that Nmd4 association to RNA was dependent on Detector components and the similarity between Nmd4/Ebs1 and mammalian Smg5-7 proteins suggest that NMD operates through successive Upf1-bound Detector and Effector complexes in other species. This model can be extended to accommodate steps that are missing in yeast, and thus serve for mechanistic studies of NMD in all eukaryotes. Running title: The Detector/Effector NMD model

Suggestions

Du même auteur

UPF1-like helicase grip on nucleic acids dictates processivity

Archive ouverte | Kanaan, Joanne | CCSD

International audience

Cdc48-associated complex bound to 60S particles is required for the clearance of aberrant translation products

Archive ouverte | Defenouillere, Quentin | CCSD

International audience. Ribosome stalling on eukaryotic mRNAs triggers cotranslational RNA and protein degradation through conserved mechanisms. For example, mRNAs lacking a stop codon are degraded by the exosome in...

Structure of the Nmd4-Upf1 complex supports conservation of the nonsense-mediated mRNA decay pathway between yeast and humans

Archive ouverte | Barbarin-Bocahu, Irène | CCSD

International audience. The nonsense-mediated mRNA decay (NMD) pathway clears eukaryotic cells of mRNAs containing premature termination codons (PTCs) or normal stop codons located in specific contexts. It therefore...

Chargement des enrichissements...