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Pseudo-RNA-Binding Domains Mediate RNA Structure Specificity in Upstream of N-Ras

RNA-binding proteins (RBPs) commonly feature multiple RNA-binding domains (RBDs), which provide these proteins with a modular architecture. Accumulating evidence supports that RBP architectural modularity and adaptability define the specificity of their interactions with RNA. However, how multiple R...

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Autores principales: Hollmann, Nele Merret, Jagtap, Pravin Kumar Ankush, Masiewicz, Pawel, Guitart, Tanit, Simon, Bernd, Provaznik, Jan, Stein, Frank, Haberkant, Per, Sweetapple, Lara Jayne, Villacorta, Laura, Mooijman, Dylan, Benes, Vladimir, Savitski, Mikhail M., Gebauer, Fátima, Hennig, Janosch
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7383231/
https://www.ncbi.nlm.nih.gov/pubmed/32697992
http://dx.doi.org/10.1016/j.celrep.2020.107930
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author Hollmann, Nele Merret
Jagtap, Pravin Kumar Ankush
Masiewicz, Pawel
Guitart, Tanit
Simon, Bernd
Provaznik, Jan
Stein, Frank
Haberkant, Per
Sweetapple, Lara Jayne
Villacorta, Laura
Mooijman, Dylan
Benes, Vladimir
Savitski, Mikhail M.
Gebauer, Fátima
Hennig, Janosch
author_facet Hollmann, Nele Merret
Jagtap, Pravin Kumar Ankush
Masiewicz, Pawel
Guitart, Tanit
Simon, Bernd
Provaznik, Jan
Stein, Frank
Haberkant, Per
Sweetapple, Lara Jayne
Villacorta, Laura
Mooijman, Dylan
Benes, Vladimir
Savitski, Mikhail M.
Gebauer, Fátima
Hennig, Janosch
author_sort Hollmann, Nele Merret
collection PubMed
description RNA-binding proteins (RBPs) commonly feature multiple RNA-binding domains (RBDs), which provide these proteins with a modular architecture. Accumulating evidence supports that RBP architectural modularity and adaptability define the specificity of their interactions with RNA. However, how multiple RBDs recognize their cognate single-stranded RNA (ssRNA) sequences in concert remains poorly understood. Here, we use Upstream of N-Ras (Unr) as a model system to address this question. Although reported to contain five ssRNA-binding cold-shock domains (CSDs), we demonstrate that Unr includes an additional four CSDs that do not bind RNA (pseudo-RBDs) but are involved in mediating RNA tertiary structure specificity by reducing the conformational heterogeneity of Unr. Disrupting the interactions between canonical and non-canonical CSDs impacts RNA binding, Unr-mediated translation regulation, and the Unr-dependent RNA interactome. Taken together, our studies reveal a new paradigm in protein-RNA recognition, where interactions between RBDs and pseudo-RBDs select RNA tertiary structures, influence RNP assembly, and define target specificity.
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spelling pubmed-73832312020-07-30 Pseudo-RNA-Binding Domains Mediate RNA Structure Specificity in Upstream of N-Ras Hollmann, Nele Merret Jagtap, Pravin Kumar Ankush Masiewicz, Pawel Guitart, Tanit Simon, Bernd Provaznik, Jan Stein, Frank Haberkant, Per Sweetapple, Lara Jayne Villacorta, Laura Mooijman, Dylan Benes, Vladimir Savitski, Mikhail M. Gebauer, Fátima Hennig, Janosch Cell Rep Article RNA-binding proteins (RBPs) commonly feature multiple RNA-binding domains (RBDs), which provide these proteins with a modular architecture. Accumulating evidence supports that RBP architectural modularity and adaptability define the specificity of their interactions with RNA. However, how multiple RBDs recognize their cognate single-stranded RNA (ssRNA) sequences in concert remains poorly understood. Here, we use Upstream of N-Ras (Unr) as a model system to address this question. Although reported to contain five ssRNA-binding cold-shock domains (CSDs), we demonstrate that Unr includes an additional four CSDs that do not bind RNA (pseudo-RBDs) but are involved in mediating RNA tertiary structure specificity by reducing the conformational heterogeneity of Unr. Disrupting the interactions between canonical and non-canonical CSDs impacts RNA binding, Unr-mediated translation regulation, and the Unr-dependent RNA interactome. Taken together, our studies reveal a new paradigm in protein-RNA recognition, where interactions between RBDs and pseudo-RBDs select RNA tertiary structures, influence RNP assembly, and define target specificity. Cell Press 2020-07-21 /pmc/articles/PMC7383231/ /pubmed/32697992 http://dx.doi.org/10.1016/j.celrep.2020.107930 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hollmann, Nele Merret
Jagtap, Pravin Kumar Ankush
Masiewicz, Pawel
Guitart, Tanit
Simon, Bernd
Provaznik, Jan
Stein, Frank
Haberkant, Per
Sweetapple, Lara Jayne
Villacorta, Laura
Mooijman, Dylan
Benes, Vladimir
Savitski, Mikhail M.
Gebauer, Fátima
Hennig, Janosch
Pseudo-RNA-Binding Domains Mediate RNA Structure Specificity in Upstream of N-Ras
title Pseudo-RNA-Binding Domains Mediate RNA Structure Specificity in Upstream of N-Ras
title_full Pseudo-RNA-Binding Domains Mediate RNA Structure Specificity in Upstream of N-Ras
title_fullStr Pseudo-RNA-Binding Domains Mediate RNA Structure Specificity in Upstream of N-Ras
title_full_unstemmed Pseudo-RNA-Binding Domains Mediate RNA Structure Specificity in Upstream of N-Ras
title_short Pseudo-RNA-Binding Domains Mediate RNA Structure Specificity in Upstream of N-Ras
title_sort pseudo-rna-binding domains mediate rna structure specificity in upstream of n-ras
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7383231/
https://www.ncbi.nlm.nih.gov/pubmed/32697992
http://dx.doi.org/10.1016/j.celrep.2020.107930
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