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Namane, A.

Publications and source records attributed to Namane, A..

2 recordsLinked to original sources

A SKI subcomplex specifically required for the degradation of ribosome-free RNA regions

The Ski2-Ski3-Ski8 (SKI) complex assists the RNA exosome during the 3-5 degradation of cytoplasmic transcripts. Previous reports showed that the SKI complex is involved in the 3-5 degradation of mRNA, including 3 untranslated regions (UTRs), devoid of ribosomes. Paradoxically, we recently showed that the SKI complex directly interacts with ribosomes during the co-translational mRNA decay and that this interaction is necessary for its RNA degradation promoting activity. Here, we characterized a new SKI-associated factor, Ska1, which antagonizes the SKI-ribosome interaction. We showed that the SKI-Ska1-subcomplex is specifically involved in the degradation of ribosome-free RNA regions such as long mRNA 3UTRs and cytoplasmic lncRNAs. We propose a model in which the SKI-exosome complex first targets ribosome-free RNA 3ends in its Ska1-associated form. When the complex reaches the mRNA coding sequence, the Ska1-SKI-exosome complex is exchanged for the SKI-exosome, which interacts directly with ribosomes in order to resume the degradation process.

molecular biology

Detection and Degradation of Nonsense-mediated mRNA Decay Substrates Involve Two Distinct Upf1-bound Complexes

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 in all eukaryotes NMD operates through successive Upf1-bound Detector and Effector complexes.

molecular biology