| Literature DB >> 32299921 |
Robert Buschauer1, Yoshitaka Matsuo2, Takato Sugiyama2, Ying-Hsin Chen3, Najwa Alhusaini3, Thomas Sweet3, Ken Ikeuchi1,2, Jingdong Cheng1, Yasuko Matsuki2, Risa Nobuta2, Andrea Gilmozzi1, Otto Berninghausen1, Petr Tesina1, Thomas Becker1, Jeff Coller4, Toshifumi Inada5, Roland Beckmann6.
Abstract
Control of messenger RNA (mRNA) decay rate is intimately connected to translation elongation, but the spatial coordination of these events is poorly understood. The Ccr4-Not complex initiates mRNA decay through deadenylation and activation of decapping. We used a combination of cryo-electron microscopy, ribosome profiling, and mRNA stability assays to examine the recruitment of Ccr4-Not to the ribosome via specific interaction of the Not5 subunit with the ribosomal E-site in Saccharomyces cerevisiae This interaction occurred when the ribosome lacked accommodated A-site transfer RNA, indicative of low codon optimality. Loss of the interaction resulted in the inability of the mRNA degradation machinery to sense codon optimality. Our findings elucidate a physical link between the Ccr4-Not complex and the ribosome and provide mechanistic insight into the coupling of decoding efficiency with mRNA stability.Entities:
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Year: 2020 PMID: 32299921 PMCID: PMC8663607 DOI: 10.1126/science.aay6912
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728