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Unearthing SRSF1’s Novel Function in Binding and Unfolding of RNA G-Quadruplexes

SRSF1 governs splicing of over 1,500 mRNA transcripts. SRSF1 contains two RNA-recognition motifs (RRMs) and a C-terminal Arg/Ser-rich region (RS). It has been thought that SRSF1 RRMs exclusively recognize single-stranded exonic splicing enhancers, while RS lacks RNA-binding specificity. With our suc...

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Autores principales: De Silva, Naiduwadura Ivon Upekala, Lehman, Nathan, Fargason, Talia, Paul, Trenton, Zhang, Zihan, Zhang, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10634998/
https://www.ncbi.nlm.nih.gov/pubmed/37961538
http://dx.doi.org/10.1101/2023.10.30.563137
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author De Silva, Naiduwadura Ivon Upekala
Lehman, Nathan
Fargason, Talia
Paul, Trenton
Zhang, Zihan
Zhang, Jun
author_facet De Silva, Naiduwadura Ivon Upekala
Lehman, Nathan
Fargason, Talia
Paul, Trenton
Zhang, Zihan
Zhang, Jun
author_sort De Silva, Naiduwadura Ivon Upekala
collection PubMed
description SRSF1 governs splicing of over 1,500 mRNA transcripts. SRSF1 contains two RNA-recognition motifs (RRMs) and a C-terminal Arg/Ser-rich region (RS). It has been thought that SRSF1 RRMs exclusively recognize single-stranded exonic splicing enhancers, while RS lacks RNA-binding specificity. With our success in solving the insolubility problem of SRSF1, we can explore the unknown RNA-binding landscape of SRSF1. We find that SRSF1 RS prefers purine over pyrimidine. Moreover, SRSF1 binds to the G-quadruplex (GQ) from the ARPC2 mRNA, with both RRMs and RS being crucial. Our binding assays show that the traditional RNA-binding sites on the RRM tandem and the Arg in RS are responsible for GQ binding. Interestingly, our FRET and circular dichroism data reveal that SRSF1 unfolds the ARPC2 GQ, with RS leading unfolding and RRMs aiding. Our saturation transfer difference NMR results discover that Arg residues in SRSF1 RS interact with the guanine base but other nucleobases, underscoring the uniqueness of the Arg/guanine interaction. Our luciferase assays confirm that SRSF1 can alleviate the inhibitory effect of GQ on gene expression in the cell. Given the prevalence of RNA GQ and SR proteins, our findings unveil unexplored SR protein functions with broad implications in RNA splicing and translation.
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spelling pubmed-106349982023-11-13 Unearthing SRSF1’s Novel Function in Binding and Unfolding of RNA G-Quadruplexes De Silva, Naiduwadura Ivon Upekala Lehman, Nathan Fargason, Talia Paul, Trenton Zhang, Zihan Zhang, Jun bioRxiv Article SRSF1 governs splicing of over 1,500 mRNA transcripts. SRSF1 contains two RNA-recognition motifs (RRMs) and a C-terminal Arg/Ser-rich region (RS). It has been thought that SRSF1 RRMs exclusively recognize single-stranded exonic splicing enhancers, while RS lacks RNA-binding specificity. With our success in solving the insolubility problem of SRSF1, we can explore the unknown RNA-binding landscape of SRSF1. We find that SRSF1 RS prefers purine over pyrimidine. Moreover, SRSF1 binds to the G-quadruplex (GQ) from the ARPC2 mRNA, with both RRMs and RS being crucial. Our binding assays show that the traditional RNA-binding sites on the RRM tandem and the Arg in RS are responsible for GQ binding. Interestingly, our FRET and circular dichroism data reveal that SRSF1 unfolds the ARPC2 GQ, with RS leading unfolding and RRMs aiding. Our saturation transfer difference NMR results discover that Arg residues in SRSF1 RS interact with the guanine base but other nucleobases, underscoring the uniqueness of the Arg/guanine interaction. Our luciferase assays confirm that SRSF1 can alleviate the inhibitory effect of GQ on gene expression in the cell. Given the prevalence of RNA GQ and SR proteins, our findings unveil unexplored SR protein functions with broad implications in RNA splicing and translation. Cold Spring Harbor Laboratory 2023-11-02 /pmc/articles/PMC10634998/ /pubmed/37961538 http://dx.doi.org/10.1101/2023.10.30.563137 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
De Silva, Naiduwadura Ivon Upekala
Lehman, Nathan
Fargason, Talia
Paul, Trenton
Zhang, Zihan
Zhang, Jun
Unearthing SRSF1’s Novel Function in Binding and Unfolding of RNA G-Quadruplexes
title Unearthing SRSF1’s Novel Function in Binding and Unfolding of RNA G-Quadruplexes
title_full Unearthing SRSF1’s Novel Function in Binding and Unfolding of RNA G-Quadruplexes
title_fullStr Unearthing SRSF1’s Novel Function in Binding and Unfolding of RNA G-Quadruplexes
title_full_unstemmed Unearthing SRSF1’s Novel Function in Binding and Unfolding of RNA G-Quadruplexes
title_short Unearthing SRSF1’s Novel Function in Binding and Unfolding of RNA G-Quadruplexes
title_sort unearthing srsf1’s novel function in binding and unfolding of rna g-quadruplexes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10634998/
https://www.ncbi.nlm.nih.gov/pubmed/37961538
http://dx.doi.org/10.1101/2023.10.30.563137
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