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The m(6)A reader protein YTHDC2 interacts with the small ribosomal subunit and the 5′–3′ exoribonuclease XRN1

N(6)-methyladenosine (m(6)A) modifications in RNAs play important roles in regulating many different aspects of gene expression. While m(6)As can have direct effects on the structure, maturation, or translation of mRNAs, such modifications can also influence the fate of RNAs via proteins termed “rea...

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Autores principales: Kretschmer, Jens, Rao, Harita, Hackert, Philipp, Sloan, Katherine E., Höbartner, Claudia, Bohnsack, Markus T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6140455/
https://www.ncbi.nlm.nih.gov/pubmed/29970596
http://dx.doi.org/10.1261/rna.064238.117
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author Kretschmer, Jens
Rao, Harita
Hackert, Philipp
Sloan, Katherine E.
Höbartner, Claudia
Bohnsack, Markus T.
author_facet Kretschmer, Jens
Rao, Harita
Hackert, Philipp
Sloan, Katherine E.
Höbartner, Claudia
Bohnsack, Markus T.
author_sort Kretschmer, Jens
collection PubMed
description N(6)-methyladenosine (m(6)A) modifications in RNAs play important roles in regulating many different aspects of gene expression. While m(6)As can have direct effects on the structure, maturation, or translation of mRNAs, such modifications can also influence the fate of RNAs via proteins termed “readers” that specifically recognize and bind modified nucleotides. Several YTH domain-containing proteins have been identified as m(6)A readers that regulate the splicing, translation, or stability of specific mRNAs. In contrast to the other YTH domain-containing proteins, YTHDC2 has several defined domains and here, we have analyzed the contribution of these domains to the RNA and protein interactions of YTHDC2. The YTH domain of YTHDC2 preferentially binds m(6)A-containing RNAs via a conserved hydrophobic pocket, whereas the ankyrin repeats mediate an RNA-independent interaction with the 5′–3′ exoribonuclease XRN1. We show that the YTH and R3H domains contribute to the binding of YTHDC2 to cellular RNAs, and using crosslinking and analysis of cDNA (CRAC), we reveal that YTHDC2 interacts with the small ribosomal subunit in close proximity to the mRNA entry/exit sites. YTHDC2 was recently found to promote a “fast-track” expression program for specific mRNAs, and our data suggest that YTHDC2 accomplishes this by recruitment of the RNA degradation machinery to regulate the stability of m(6)A-containing mRNAs and by utilizing its distinct RNA-binding domains to bridge interactions between m(6)A-containing mRNAs and the ribosomes to facilitate their efficient translation.
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spelling pubmed-61404552018-10-01 The m(6)A reader protein YTHDC2 interacts with the small ribosomal subunit and the 5′–3′ exoribonuclease XRN1 Kretschmer, Jens Rao, Harita Hackert, Philipp Sloan, Katherine E. Höbartner, Claudia Bohnsack, Markus T. RNA Article N(6)-methyladenosine (m(6)A) modifications in RNAs play important roles in regulating many different aspects of gene expression. While m(6)As can have direct effects on the structure, maturation, or translation of mRNAs, such modifications can also influence the fate of RNAs via proteins termed “readers” that specifically recognize and bind modified nucleotides. Several YTH domain-containing proteins have been identified as m(6)A readers that regulate the splicing, translation, or stability of specific mRNAs. In contrast to the other YTH domain-containing proteins, YTHDC2 has several defined domains and here, we have analyzed the contribution of these domains to the RNA and protein interactions of YTHDC2. The YTH domain of YTHDC2 preferentially binds m(6)A-containing RNAs via a conserved hydrophobic pocket, whereas the ankyrin repeats mediate an RNA-independent interaction with the 5′–3′ exoribonuclease XRN1. We show that the YTH and R3H domains contribute to the binding of YTHDC2 to cellular RNAs, and using crosslinking and analysis of cDNA (CRAC), we reveal that YTHDC2 interacts with the small ribosomal subunit in close proximity to the mRNA entry/exit sites. YTHDC2 was recently found to promote a “fast-track” expression program for specific mRNAs, and our data suggest that YTHDC2 accomplishes this by recruitment of the RNA degradation machinery to regulate the stability of m(6)A-containing mRNAs and by utilizing its distinct RNA-binding domains to bridge interactions between m(6)A-containing mRNAs and the ribosomes to facilitate their efficient translation. Cold Spring Harbor Laboratory Press 2018-10 /pmc/articles/PMC6140455/ /pubmed/29970596 http://dx.doi.org/10.1261/rna.064238.117 Text en © 2018 Kretschmer et al.; Published by Cold Spring Harbor Laboratory Press for the RNA Society http://creativecommons.org/licenses/by-nc/4.0/ This article, published in RNA, is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Article
Kretschmer, Jens
Rao, Harita
Hackert, Philipp
Sloan, Katherine E.
Höbartner, Claudia
Bohnsack, Markus T.
The m(6)A reader protein YTHDC2 interacts with the small ribosomal subunit and the 5′–3′ exoribonuclease XRN1
title The m(6)A reader protein YTHDC2 interacts with the small ribosomal subunit and the 5′–3′ exoribonuclease XRN1
title_full The m(6)A reader protein YTHDC2 interacts with the small ribosomal subunit and the 5′–3′ exoribonuclease XRN1
title_fullStr The m(6)A reader protein YTHDC2 interacts with the small ribosomal subunit and the 5′–3′ exoribonuclease XRN1
title_full_unstemmed The m(6)A reader protein YTHDC2 interacts with the small ribosomal subunit and the 5′–3′ exoribonuclease XRN1
title_short The m(6)A reader protein YTHDC2 interacts with the small ribosomal subunit and the 5′–3′ exoribonuclease XRN1
title_sort m(6)a reader protein ythdc2 interacts with the small ribosomal subunit and the 5′–3′ exoribonuclease xrn1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6140455/
https://www.ncbi.nlm.nih.gov/pubmed/29970596
http://dx.doi.org/10.1261/rna.064238.117
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