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The Disordered EZH2 Loop: Atomic Level Characterization by (1)H(N)- and (1)H(α)-Detected NMR Approaches, Interaction with the Long Noncoding HOTAIR RNA

The 96-residue-long loop of EZH2 is proposed to play a role in the interaction with long non-coding RNAs (lncRNAs) and to contribute to EZH2 recruitment to the chromatin. However, molecular details of RNA recognition have not been described so far. Cellular studies have suggested that phosphorylatio...

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Autores principales: Szabó, Csenge Lilla, Szabó, Beáta, Sebák, Fanni, Bermel, Wolfgang, Tantos, Agnes, Bodor, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181245/
https://www.ncbi.nlm.nih.gov/pubmed/35682829
http://dx.doi.org/10.3390/ijms23116150
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author Szabó, Csenge Lilla
Szabó, Beáta
Sebák, Fanni
Bermel, Wolfgang
Tantos, Agnes
Bodor, Andrea
author_facet Szabó, Csenge Lilla
Szabó, Beáta
Sebák, Fanni
Bermel, Wolfgang
Tantos, Agnes
Bodor, Andrea
author_sort Szabó, Csenge Lilla
collection PubMed
description The 96-residue-long loop of EZH2 is proposed to play a role in the interaction with long non-coding RNAs (lncRNAs) and to contribute to EZH2 recruitment to the chromatin. However, molecular details of RNA recognition have not been described so far. Cellular studies have suggested that phosphorylation of the Thr345 residue localized in this loop influences RNA binding; however, no mechanistic explanation has been offered. To address these issues, a systematic NMR study was performed. As the (1)H(N)-detected NMR approach presents many challenges under physiological conditions, our earlier developed, as well as improved, (1)H(α)-detected experiments were used. As a result of the successful resonance assignment, the obtained chemical shift values indicate the highly disordered nature of the EZH2 loop, with some nascent helical tendency in the Ser407–Ser412 region. Further investigations conducted on the phosphomimetic mutant EZH2(T345D) showed that the mutation has only a local effect, and that the loop remains disordered. On the other hand, the mutation influences the cis/trans Pro346 equilibrium. Interactions of both the wild-type and the phosphomimetic mutant with the lncRNA HOTAIR(140) (1–140 nt) highlight that the Thr367–Ser375 region is affected. This segment does not resemble any of the previously reported RNA-binding motifs, therefore the identified binding region is unique. As no structural changes occur in the EZH2 loop upon RNA binding, we can consider the protein–RNA interaction as a “fuzzy” complex.
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spelling pubmed-91812452022-06-10 The Disordered EZH2 Loop: Atomic Level Characterization by (1)H(N)- and (1)H(α)-Detected NMR Approaches, Interaction with the Long Noncoding HOTAIR RNA Szabó, Csenge Lilla Szabó, Beáta Sebák, Fanni Bermel, Wolfgang Tantos, Agnes Bodor, Andrea Int J Mol Sci Article The 96-residue-long loop of EZH2 is proposed to play a role in the interaction with long non-coding RNAs (lncRNAs) and to contribute to EZH2 recruitment to the chromatin. However, molecular details of RNA recognition have not been described so far. Cellular studies have suggested that phosphorylation of the Thr345 residue localized in this loop influences RNA binding; however, no mechanistic explanation has been offered. To address these issues, a systematic NMR study was performed. As the (1)H(N)-detected NMR approach presents many challenges under physiological conditions, our earlier developed, as well as improved, (1)H(α)-detected experiments were used. As a result of the successful resonance assignment, the obtained chemical shift values indicate the highly disordered nature of the EZH2 loop, with some nascent helical tendency in the Ser407–Ser412 region. Further investigations conducted on the phosphomimetic mutant EZH2(T345D) showed that the mutation has only a local effect, and that the loop remains disordered. On the other hand, the mutation influences the cis/trans Pro346 equilibrium. Interactions of both the wild-type and the phosphomimetic mutant with the lncRNA HOTAIR(140) (1–140 nt) highlight that the Thr367–Ser375 region is affected. This segment does not resemble any of the previously reported RNA-binding motifs, therefore the identified binding region is unique. As no structural changes occur in the EZH2 loop upon RNA binding, we can consider the protein–RNA interaction as a “fuzzy” complex. MDPI 2022-05-30 /pmc/articles/PMC9181245/ /pubmed/35682829 http://dx.doi.org/10.3390/ijms23116150 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Szabó, Csenge Lilla
Szabó, Beáta
Sebák, Fanni
Bermel, Wolfgang
Tantos, Agnes
Bodor, Andrea
The Disordered EZH2 Loop: Atomic Level Characterization by (1)H(N)- and (1)H(α)-Detected NMR Approaches, Interaction with the Long Noncoding HOTAIR RNA
title The Disordered EZH2 Loop: Atomic Level Characterization by (1)H(N)- and (1)H(α)-Detected NMR Approaches, Interaction with the Long Noncoding HOTAIR RNA
title_full The Disordered EZH2 Loop: Atomic Level Characterization by (1)H(N)- and (1)H(α)-Detected NMR Approaches, Interaction with the Long Noncoding HOTAIR RNA
title_fullStr The Disordered EZH2 Loop: Atomic Level Characterization by (1)H(N)- and (1)H(α)-Detected NMR Approaches, Interaction with the Long Noncoding HOTAIR RNA
title_full_unstemmed The Disordered EZH2 Loop: Atomic Level Characterization by (1)H(N)- and (1)H(α)-Detected NMR Approaches, Interaction with the Long Noncoding HOTAIR RNA
title_short The Disordered EZH2 Loop: Atomic Level Characterization by (1)H(N)- and (1)H(α)-Detected NMR Approaches, Interaction with the Long Noncoding HOTAIR RNA
title_sort disordered ezh2 loop: atomic level characterization by (1)h(n)- and (1)h(α)-detected nmr approaches, interaction with the long noncoding hotair rna
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181245/
https://www.ncbi.nlm.nih.gov/pubmed/35682829
http://dx.doi.org/10.3390/ijms23116150
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