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Recognition of Transcription Termination Signal by the Nuclear Polyadenylated RNA-binding (NAB) 3 Protein

Non-coding RNA polymerase II transcripts are processed by the poly(A)-independent termination pathway that requires the Nrd1 complex. The Nrd1 complex includes two RNA-binding proteins, the nuclear polyadenylated RNA-binding (Nab) 3 and the nuclear pre-mRNA down-regulation (Nrd) 1 that bind their sp...

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Autores principales: Hobor, Fruzsina, Pergoli, Roberto, Kubicek, Karel, Hrossova, Dominika, Bacikova, Veronika, Zimmermann, Michal, Pasulka, Josef, Hofr, Ctirad, Vanacova, Stepanka, Stefl, Richard
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2011
Materias:
RNA
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3030368/
https://www.ncbi.nlm.nih.gov/pubmed/21084293
http://dx.doi.org/10.1074/jbc.M110.158774
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author Hobor, Fruzsina
Pergoli, Roberto
Kubicek, Karel
Hrossova, Dominika
Bacikova, Veronika
Zimmermann, Michal
Pasulka, Josef
Hofr, Ctirad
Vanacova, Stepanka
Stefl, Richard
author_facet Hobor, Fruzsina
Pergoli, Roberto
Kubicek, Karel
Hrossova, Dominika
Bacikova, Veronika
Zimmermann, Michal
Pasulka, Josef
Hofr, Ctirad
Vanacova, Stepanka
Stefl, Richard
author_sort Hobor, Fruzsina
collection PubMed
description Non-coding RNA polymerase II transcripts are processed by the poly(A)-independent termination pathway that requires the Nrd1 complex. The Nrd1 complex includes two RNA-binding proteins, the nuclear polyadenylated RNA-binding (Nab) 3 and the nuclear pre-mRNA down-regulation (Nrd) 1 that bind their specific termination elements. Here we report the solution structure of the RNA-recognition motif (RRM) of Nab3 in complex with a UCUU oligonucleotide, representing the Nab3 termination element. The structure shows that the first three nucleotides of UCUU are accommodated on the β-sheet surface of Nab3 RRM, but reveals a sequence-specific recognition only for the central cytidine and uridine. The specific contacts we identified are important for binding affinity in vitro as well as for yeast viability. Furthermore, we show that both RNA-binding motifs of Nab3 and Nrd1 alone bind their termination elements with a weak affinity. Interestingly, when Nab3 and Nrd1 form a heterodimer, the affinity to RNA is significantly increased due to the cooperative binding. These findings are in accordance with the model of their function in the poly(A) independent termination, in which binding to the combined and/or repetitive termination elements elicits efficient termination.
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spelling pubmed-30303682012-02-04 Recognition of Transcription Termination Signal by the Nuclear Polyadenylated RNA-binding (NAB) 3 Protein Hobor, Fruzsina Pergoli, Roberto Kubicek, Karel Hrossova, Dominika Bacikova, Veronika Zimmermann, Michal Pasulka, Josef Hofr, Ctirad Vanacova, Stepanka Stefl, Richard J Biol Chem RNA Non-coding RNA polymerase II transcripts are processed by the poly(A)-independent termination pathway that requires the Nrd1 complex. The Nrd1 complex includes two RNA-binding proteins, the nuclear polyadenylated RNA-binding (Nab) 3 and the nuclear pre-mRNA down-regulation (Nrd) 1 that bind their specific termination elements. Here we report the solution structure of the RNA-recognition motif (RRM) of Nab3 in complex with a UCUU oligonucleotide, representing the Nab3 termination element. The structure shows that the first three nucleotides of UCUU are accommodated on the β-sheet surface of Nab3 RRM, but reveals a sequence-specific recognition only for the central cytidine and uridine. The specific contacts we identified are important for binding affinity in vitro as well as for yeast viability. Furthermore, we show that both RNA-binding motifs of Nab3 and Nrd1 alone bind their termination elements with a weak affinity. Interestingly, when Nab3 and Nrd1 form a heterodimer, the affinity to RNA is significantly increased due to the cooperative binding. These findings are in accordance with the model of their function in the poly(A) independent termination, in which binding to the combined and/or repetitive termination elements elicits efficient termination. American Society for Biochemistry and Molecular Biology 2011-02-04 2010-11-17 /pmc/articles/PMC3030368/ /pubmed/21084293 http://dx.doi.org/10.1074/jbc.M110.158774 Text en © 2011 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle RNA
Hobor, Fruzsina
Pergoli, Roberto
Kubicek, Karel
Hrossova, Dominika
Bacikova, Veronika
Zimmermann, Michal
Pasulka, Josef
Hofr, Ctirad
Vanacova, Stepanka
Stefl, Richard
Recognition of Transcription Termination Signal by the Nuclear Polyadenylated RNA-binding (NAB) 3 Protein
title Recognition of Transcription Termination Signal by the Nuclear Polyadenylated RNA-binding (NAB) 3 Protein
title_full Recognition of Transcription Termination Signal by the Nuclear Polyadenylated RNA-binding (NAB) 3 Protein
title_fullStr Recognition of Transcription Termination Signal by the Nuclear Polyadenylated RNA-binding (NAB) 3 Protein
title_full_unstemmed Recognition of Transcription Termination Signal by the Nuclear Polyadenylated RNA-binding (NAB) 3 Protein
title_short Recognition of Transcription Termination Signal by the Nuclear Polyadenylated RNA-binding (NAB) 3 Protein
title_sort recognition of transcription termination signal by the nuclear polyadenylated rna-binding (nab) 3 protein
topic RNA
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3030368/
https://www.ncbi.nlm.nih.gov/pubmed/21084293
http://dx.doi.org/10.1074/jbc.M110.158774
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