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RNA binding proteins Smaug and Cup induce CCR4–NOT-dependent deadenylation of the nanos mRNA in a reconstituted system

Posttranscriptional regulation of the maternal nanos mRNA is essential for the development of the anterior – posterior axis of the Drosophila embryo. The nanos RNA is regulated by the protein Smaug, which binds to Smaug recognition elements (SREs) in the nanos 3’-UTR and nucleates the assembly of a...

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Autores principales: Pekovic, Filip, Rammelt, Christiane, Kubíková, Jana, Metz, Jutta, Jeske, Mandy, Wahle, Elmar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10164591/
https://www.ncbi.nlm.nih.gov/pubmed/36951092
http://dx.doi.org/10.1093/nar/gkad159
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author Pekovic, Filip
Rammelt, Christiane
Kubíková, Jana
Metz, Jutta
Jeske, Mandy
Wahle, Elmar
author_facet Pekovic, Filip
Rammelt, Christiane
Kubíková, Jana
Metz, Jutta
Jeske, Mandy
Wahle, Elmar
author_sort Pekovic, Filip
collection PubMed
description Posttranscriptional regulation of the maternal nanos mRNA is essential for the development of the anterior – posterior axis of the Drosophila embryo. The nanos RNA is regulated by the protein Smaug, which binds to Smaug recognition elements (SREs) in the nanos 3’-UTR and nucleates the assembly of a larger repressor complex including the eIF4E-T paralog Cup and five additional proteins. The Smaug-dependent complex represses translation of nanos and induces its deadenylation by the CCR4–NOT deadenylase. Here we report an in vitro reconstitution of the Drosophila CCR4–NOT complex and Smaug-dependent deadenylation. We find that Smaug by itself is sufficient to cause deadenylation by the Drosophila or human CCR4–NOT complexes in an SRE-dependent manner. CCR4–NOT subunits NOT10 and NOT11 are dispensable, but the NOT module, consisting of NOT2, NOT3 and the C-terminal part of NOT1, is required. Smaug interacts with the C-terminal domain of NOT3. Both catalytic subunits of CCR4–NOT contribute to Smaug-dependent deadenylation. Whereas the CCR4–NOT complex itself acts distributively, Smaug induces a processive behavior. The cytoplasmic poly(A) binding protein (PABPC) has a minor inhibitory effect on Smaug-dependent deadenylation. Among the additional constituents of the Smaug-dependent repressor complex, Cup also facilitates CCR4–NOT-dependent deadenylation, both independently and in cooperation with Smaug.
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spelling pubmed-101645912023-05-08 RNA binding proteins Smaug and Cup induce CCR4–NOT-dependent deadenylation of the nanos mRNA in a reconstituted system Pekovic, Filip Rammelt, Christiane Kubíková, Jana Metz, Jutta Jeske, Mandy Wahle, Elmar Nucleic Acids Res RNA and RNA-protein complexes Posttranscriptional regulation of the maternal nanos mRNA is essential for the development of the anterior – posterior axis of the Drosophila embryo. The nanos RNA is regulated by the protein Smaug, which binds to Smaug recognition elements (SREs) in the nanos 3’-UTR and nucleates the assembly of a larger repressor complex including the eIF4E-T paralog Cup and five additional proteins. The Smaug-dependent complex represses translation of nanos and induces its deadenylation by the CCR4–NOT deadenylase. Here we report an in vitro reconstitution of the Drosophila CCR4–NOT complex and Smaug-dependent deadenylation. We find that Smaug by itself is sufficient to cause deadenylation by the Drosophila or human CCR4–NOT complexes in an SRE-dependent manner. CCR4–NOT subunits NOT10 and NOT11 are dispensable, but the NOT module, consisting of NOT2, NOT3 and the C-terminal part of NOT1, is required. Smaug interacts with the C-terminal domain of NOT3. Both catalytic subunits of CCR4–NOT contribute to Smaug-dependent deadenylation. Whereas the CCR4–NOT complex itself acts distributively, Smaug induces a processive behavior. The cytoplasmic poly(A) binding protein (PABPC) has a minor inhibitory effect on Smaug-dependent deadenylation. Among the additional constituents of the Smaug-dependent repressor complex, Cup also facilitates CCR4–NOT-dependent deadenylation, both independently and in cooperation with Smaug. Oxford University Press 2023-03-23 /pmc/articles/PMC10164591/ /pubmed/36951092 http://dx.doi.org/10.1093/nar/gkad159 Text en © The Author(s) 2023. 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 RNA and RNA-protein complexes
Pekovic, Filip
Rammelt, Christiane
Kubíková, Jana
Metz, Jutta
Jeske, Mandy
Wahle, Elmar
RNA binding proteins Smaug and Cup induce CCR4–NOT-dependent deadenylation of the nanos mRNA in a reconstituted system
title RNA binding proteins Smaug and Cup induce CCR4–NOT-dependent deadenylation of the nanos mRNA in a reconstituted system
title_full RNA binding proteins Smaug and Cup induce CCR4–NOT-dependent deadenylation of the nanos mRNA in a reconstituted system
title_fullStr RNA binding proteins Smaug and Cup induce CCR4–NOT-dependent deadenylation of the nanos mRNA in a reconstituted system
title_full_unstemmed RNA binding proteins Smaug and Cup induce CCR4–NOT-dependent deadenylation of the nanos mRNA in a reconstituted system
title_short RNA binding proteins Smaug and Cup induce CCR4–NOT-dependent deadenylation of the nanos mRNA in a reconstituted system
title_sort rna binding proteins smaug and cup induce ccr4–not-dependent deadenylation of the nanos mrna in a reconstituted system
topic RNA and RNA-protein complexes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10164591/
https://www.ncbi.nlm.nih.gov/pubmed/36951092
http://dx.doi.org/10.1093/nar/gkad159
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