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Two modes of Cue2-mediated mRNA cleavage with distinct substrate recognition initiate no-go decay

Ribosome collisions are recognized by E3 ubiquitin ligase Hel2/ZNF598, leading to RQC (ribosome-associated quality control) and to endonucleolytic cleavage and degradation of the mRNA termed NGD (no-go decay). NGD in yeast requires the Cue2 endonuclease and occurs in two modes, either coupled to RQC...

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Autores principales: Tomomatsu, Shota, Watanabe, Atsuya, Tesina, Petr, Hashimoto, Satoshi, Ikeuchi, Ken, Li, Sihan, Matsuo, Yoshitaka, Beckmann, Roland, Inada, Toshifumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9841427/
https://www.ncbi.nlm.nih.gov/pubmed/36583309
http://dx.doi.org/10.1093/nar/gkac1172
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author Tomomatsu, Shota
Watanabe, Atsuya
Tesina, Petr
Hashimoto, Satoshi
Ikeuchi, Ken
Li, Sihan
Matsuo, Yoshitaka
Beckmann, Roland
Inada, Toshifumi
author_facet Tomomatsu, Shota
Watanabe, Atsuya
Tesina, Petr
Hashimoto, Satoshi
Ikeuchi, Ken
Li, Sihan
Matsuo, Yoshitaka
Beckmann, Roland
Inada, Toshifumi
author_sort Tomomatsu, Shota
collection PubMed
description Ribosome collisions are recognized by E3 ubiquitin ligase Hel2/ZNF598, leading to RQC (ribosome-associated quality control) and to endonucleolytic cleavage and degradation of the mRNA termed NGD (no-go decay). NGD in yeast requires the Cue2 endonuclease and occurs in two modes, either coupled to RQC (NGD(RQC+)) or RQC uncoupled (NGD(RQC−)). This is mediated by an unknown mechanism of substrate recognition by Cue2. Here, we show that the ubiquitin binding activity of Cue2 is required for NGD(RQC−) but not for NGD(RQC+), and that it involves the first two N-terminal Cue domains. In contrast, Trp122 of Cue2 is crucial for NGD(RQC+). Moreover, Mbf1 is required for quality controls by preventing +1 ribosome frameshifting induced by a rare codon staller. We propose that in Cue2-dependent cleavage upstream of the collided ribosomes (NGD(RQC−)), polyubiquitination of eS7 is recognized by two N-terminal Cue domains of Cue2. In contrast, for the cleavage within collided ribosomes (NGD(RQC+)), the UBA domain, Trp122 and the interaction between Mbf1 and uS3 are critical.
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spelling pubmed-98414272023-01-18 Two modes of Cue2-mediated mRNA cleavage with distinct substrate recognition initiate no-go decay Tomomatsu, Shota Watanabe, Atsuya Tesina, Petr Hashimoto, Satoshi Ikeuchi, Ken Li, Sihan Matsuo, Yoshitaka Beckmann, Roland Inada, Toshifumi Nucleic Acids Res Molecular Biology Ribosome collisions are recognized by E3 ubiquitin ligase Hel2/ZNF598, leading to RQC (ribosome-associated quality control) and to endonucleolytic cleavage and degradation of the mRNA termed NGD (no-go decay). NGD in yeast requires the Cue2 endonuclease and occurs in two modes, either coupled to RQC (NGD(RQC+)) or RQC uncoupled (NGD(RQC−)). This is mediated by an unknown mechanism of substrate recognition by Cue2. Here, we show that the ubiquitin binding activity of Cue2 is required for NGD(RQC−) but not for NGD(RQC+), and that it involves the first two N-terminal Cue domains. In contrast, Trp122 of Cue2 is crucial for NGD(RQC+). Moreover, Mbf1 is required for quality controls by preventing +1 ribosome frameshifting induced by a rare codon staller. We propose that in Cue2-dependent cleavage upstream of the collided ribosomes (NGD(RQC−)), polyubiquitination of eS7 is recognized by two N-terminal Cue domains of Cue2. In contrast, for the cleavage within collided ribosomes (NGD(RQC+)), the UBA domain, Trp122 and the interaction between Mbf1 and uS3 are critical. Oxford University Press 2022-12-30 /pmc/articles/PMC9841427/ /pubmed/36583309 http://dx.doi.org/10.1093/nar/gkac1172 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Molecular Biology
Tomomatsu, Shota
Watanabe, Atsuya
Tesina, Petr
Hashimoto, Satoshi
Ikeuchi, Ken
Li, Sihan
Matsuo, Yoshitaka
Beckmann, Roland
Inada, Toshifumi
Two modes of Cue2-mediated mRNA cleavage with distinct substrate recognition initiate no-go decay
title Two modes of Cue2-mediated mRNA cleavage with distinct substrate recognition initiate no-go decay
title_full Two modes of Cue2-mediated mRNA cleavage with distinct substrate recognition initiate no-go decay
title_fullStr Two modes of Cue2-mediated mRNA cleavage with distinct substrate recognition initiate no-go decay
title_full_unstemmed Two modes of Cue2-mediated mRNA cleavage with distinct substrate recognition initiate no-go decay
title_short Two modes of Cue2-mediated mRNA cleavage with distinct substrate recognition initiate no-go decay
title_sort two modes of cue2-mediated mrna cleavage with distinct substrate recognition initiate no-go decay
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9841427/
https://www.ncbi.nlm.nih.gov/pubmed/36583309
http://dx.doi.org/10.1093/nar/gkac1172
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