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Structural basis of Nrd1–Nab3 heterodimerization

Heterodimerization of RNA binding proteins Nrd1 and Nab3 is essential to communicate the RNA recognition in the nascent transcript with the Nrd1 recognition of the Ser(5)-phosphorylated Rbp1 C-terminal domain in RNA polymerase II. The structure of a Nrd1–Nab3 chimera reveals the basis of heterodimer...

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Autores principales: Chaves-Arquero, Belén, Martínez-Lumbreras, Santiago, Camero, Sergio, Santiveri, Clara M, Mirassou, Yasmina, Campos-Olivas, Ramón, Jiménez, Maria Ángeles, Calvo, Olga, Pérez-Cañadillas, José Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8761494/
https://www.ncbi.nlm.nih.gov/pubmed/35022249
http://dx.doi.org/10.26508/lsa.202101252
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author Chaves-Arquero, Belén
Martínez-Lumbreras, Santiago
Camero, Sergio
Santiveri, Clara M
Mirassou, Yasmina
Campos-Olivas, Ramón
Jiménez, Maria Ángeles
Calvo, Olga
Pérez-Cañadillas, José Manuel
author_facet Chaves-Arquero, Belén
Martínez-Lumbreras, Santiago
Camero, Sergio
Santiveri, Clara M
Mirassou, Yasmina
Campos-Olivas, Ramón
Jiménez, Maria Ángeles
Calvo, Olga
Pérez-Cañadillas, José Manuel
author_sort Chaves-Arquero, Belén
collection PubMed
description Heterodimerization of RNA binding proteins Nrd1 and Nab3 is essential to communicate the RNA recognition in the nascent transcript with the Nrd1 recognition of the Ser(5)-phosphorylated Rbp1 C-terminal domain in RNA polymerase II. The structure of a Nrd1–Nab3 chimera reveals the basis of heterodimerization, filling a missing gap in knowledge of this system. The free form of the Nrd1 interaction domain of Nab3 (NRID) forms a multi-state three-helix bundle that is clamped in a single conformation upon complex formation with the Nab3 interaction domain of Nrd1 (NAID). The latter domain forms two long helices that wrap around NRID, resulting in an extensive protein–protein interface that would explain the highly favorable free energy of heterodimerization. Mutagenesis of some conserved hydrophobic residues involved in the heterodimerization leads to temperature-sensitive phenotypes, revealing the importance of this interaction in yeast cell fitness. The Nrd1–Nab3 structure resembles the previously reported Rna14/Rna15 heterodimer structure, which is part of the poly(A)-dependent termination pathway, suggesting that both machineries use similar structural solutions despite they share little sequence homology and are potentially evolutionary divergent.
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spelling pubmed-87614942022-01-26 Structural basis of Nrd1–Nab3 heterodimerization Chaves-Arquero, Belén Martínez-Lumbreras, Santiago Camero, Sergio Santiveri, Clara M Mirassou, Yasmina Campos-Olivas, Ramón Jiménez, Maria Ángeles Calvo, Olga Pérez-Cañadillas, José Manuel Life Sci Alliance Research Articles Heterodimerization of RNA binding proteins Nrd1 and Nab3 is essential to communicate the RNA recognition in the nascent transcript with the Nrd1 recognition of the Ser(5)-phosphorylated Rbp1 C-terminal domain in RNA polymerase II. The structure of a Nrd1–Nab3 chimera reveals the basis of heterodimerization, filling a missing gap in knowledge of this system. The free form of the Nrd1 interaction domain of Nab3 (NRID) forms a multi-state three-helix bundle that is clamped in a single conformation upon complex formation with the Nab3 interaction domain of Nrd1 (NAID). The latter domain forms two long helices that wrap around NRID, resulting in an extensive protein–protein interface that would explain the highly favorable free energy of heterodimerization. Mutagenesis of some conserved hydrophobic residues involved in the heterodimerization leads to temperature-sensitive phenotypes, revealing the importance of this interaction in yeast cell fitness. The Nrd1–Nab3 structure resembles the previously reported Rna14/Rna15 heterodimer structure, which is part of the poly(A)-dependent termination pathway, suggesting that both machineries use similar structural solutions despite they share little sequence homology and are potentially evolutionary divergent. Life Science Alliance LLC 2022-01-12 /pmc/articles/PMC8761494/ /pubmed/35022249 http://dx.doi.org/10.26508/lsa.202101252 Text en © 2022 Chaves-Arquero et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Chaves-Arquero, Belén
Martínez-Lumbreras, Santiago
Camero, Sergio
Santiveri, Clara M
Mirassou, Yasmina
Campos-Olivas, Ramón
Jiménez, Maria Ángeles
Calvo, Olga
Pérez-Cañadillas, José Manuel
Structural basis of Nrd1–Nab3 heterodimerization
title Structural basis of Nrd1–Nab3 heterodimerization
title_full Structural basis of Nrd1–Nab3 heterodimerization
title_fullStr Structural basis of Nrd1–Nab3 heterodimerization
title_full_unstemmed Structural basis of Nrd1–Nab3 heterodimerization
title_short Structural basis of Nrd1–Nab3 heterodimerization
title_sort structural basis of nrd1–nab3 heterodimerization
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8761494/
https://www.ncbi.nlm.nih.gov/pubmed/35022249
http://dx.doi.org/10.26508/lsa.202101252
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