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The glycine arginine‐rich domain of the RNA‐binding protein nucleolin regulates its subcellular localization

Nucleolin is a multifunctional RNA Binding Protein (RBP) with diverse subcellular localizations, including the nucleolus in all eukaryotic cells, the plasma membrane in tumor cells, and the axon in neurons. Here we show that the glycine arginine rich (GAR) domain of nucleolin drives subcellular loca...

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Autores principales: Doron‐Mandel, Ella, Koppel, Indrek, Abraham, Ofri, Rishal, Ida, Smith, Terika P, Buchanan, Courtney N, Sahoo, Pabitra K, Kadlec, Jan, Oses‐Prieto, Juan A, Kawaguchi, Riki, Alber, Stefanie, Zahavi, Eitan Erez, Di Matteo, Pierluigi, Di Pizio, Agostina, Song, Didi‐Andreas, Okladnikov, Nataliya, Gordon, Dalia, Ben‐Dor, Shifra, Haffner‐Krausz, Rebecca, Coppola, Giovanni, Burlingame, Alma L, Jungwirth, Pavel, Twiss, Jeffery L, Fainzilber, Mike
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8521312/
https://www.ncbi.nlm.nih.gov/pubmed/34515347
http://dx.doi.org/10.15252/embj.2020107158
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author Doron‐Mandel, Ella
Koppel, Indrek
Abraham, Ofri
Rishal, Ida
Smith, Terika P
Buchanan, Courtney N
Sahoo, Pabitra K
Kadlec, Jan
Oses‐Prieto, Juan A
Kawaguchi, Riki
Alber, Stefanie
Zahavi, Eitan Erez
Di Matteo, Pierluigi
Di Pizio, Agostina
Song, Didi‐Andreas
Okladnikov, Nataliya
Gordon, Dalia
Ben‐Dor, Shifra
Haffner‐Krausz, Rebecca
Coppola, Giovanni
Burlingame, Alma L
Jungwirth, Pavel
Twiss, Jeffery L
Fainzilber, Mike
author_facet Doron‐Mandel, Ella
Koppel, Indrek
Abraham, Ofri
Rishal, Ida
Smith, Terika P
Buchanan, Courtney N
Sahoo, Pabitra K
Kadlec, Jan
Oses‐Prieto, Juan A
Kawaguchi, Riki
Alber, Stefanie
Zahavi, Eitan Erez
Di Matteo, Pierluigi
Di Pizio, Agostina
Song, Didi‐Andreas
Okladnikov, Nataliya
Gordon, Dalia
Ben‐Dor, Shifra
Haffner‐Krausz, Rebecca
Coppola, Giovanni
Burlingame, Alma L
Jungwirth, Pavel
Twiss, Jeffery L
Fainzilber, Mike
author_sort Doron‐Mandel, Ella
collection PubMed
description Nucleolin is a multifunctional RNA Binding Protein (RBP) with diverse subcellular localizations, including the nucleolus in all eukaryotic cells, the plasma membrane in tumor cells, and the axon in neurons. Here we show that the glycine arginine rich (GAR) domain of nucleolin drives subcellular localization via protein‐protein interactions with a kinesin light chain. In addition, GAR sequences mediate plasma membrane interactions of nucleolin. Both these modalities are in addition to the already reported involvement of the GAR domain in liquid‐liquid phase separation in the nucleolus. Nucleolin transport to axons requires the GAR domain, and heterozygous GAR deletion mice reveal reduced axonal localization of nucleolin cargo mRNAs and enhanced sensory neuron growth. Thus, the GAR domain governs axonal transport of a growth controlling RNA‐RBP complex in neurons, and is a versatile localization determinant for different subcellular compartments. Localization determination by GAR domains may explain why GAR mutants in diverse RBPs are associated with neurodegenerative disease.
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spelling pubmed-85213122021-10-29 The glycine arginine‐rich domain of the RNA‐binding protein nucleolin regulates its subcellular localization Doron‐Mandel, Ella Koppel, Indrek Abraham, Ofri Rishal, Ida Smith, Terika P Buchanan, Courtney N Sahoo, Pabitra K Kadlec, Jan Oses‐Prieto, Juan A Kawaguchi, Riki Alber, Stefanie Zahavi, Eitan Erez Di Matteo, Pierluigi Di Pizio, Agostina Song, Didi‐Andreas Okladnikov, Nataliya Gordon, Dalia Ben‐Dor, Shifra Haffner‐Krausz, Rebecca Coppola, Giovanni Burlingame, Alma L Jungwirth, Pavel Twiss, Jeffery L Fainzilber, Mike EMBO J Articles Nucleolin is a multifunctional RNA Binding Protein (RBP) with diverse subcellular localizations, including the nucleolus in all eukaryotic cells, the plasma membrane in tumor cells, and the axon in neurons. Here we show that the glycine arginine rich (GAR) domain of nucleolin drives subcellular localization via protein‐protein interactions with a kinesin light chain. In addition, GAR sequences mediate plasma membrane interactions of nucleolin. Both these modalities are in addition to the already reported involvement of the GAR domain in liquid‐liquid phase separation in the nucleolus. Nucleolin transport to axons requires the GAR domain, and heterozygous GAR deletion mice reveal reduced axonal localization of nucleolin cargo mRNAs and enhanced sensory neuron growth. Thus, the GAR domain governs axonal transport of a growth controlling RNA‐RBP complex in neurons, and is a versatile localization determinant for different subcellular compartments. Localization determination by GAR domains may explain why GAR mutants in diverse RBPs are associated with neurodegenerative disease. John Wiley and Sons Inc. 2021-09-13 2021-10-18 /pmc/articles/PMC8521312/ /pubmed/34515347 http://dx.doi.org/10.15252/embj.2020107158 Text en © 2021 The Authors. Published under the terms of the CC BY NC ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Articles
Doron‐Mandel, Ella
Koppel, Indrek
Abraham, Ofri
Rishal, Ida
Smith, Terika P
Buchanan, Courtney N
Sahoo, Pabitra K
Kadlec, Jan
Oses‐Prieto, Juan A
Kawaguchi, Riki
Alber, Stefanie
Zahavi, Eitan Erez
Di Matteo, Pierluigi
Di Pizio, Agostina
Song, Didi‐Andreas
Okladnikov, Nataliya
Gordon, Dalia
Ben‐Dor, Shifra
Haffner‐Krausz, Rebecca
Coppola, Giovanni
Burlingame, Alma L
Jungwirth, Pavel
Twiss, Jeffery L
Fainzilber, Mike
The glycine arginine‐rich domain of the RNA‐binding protein nucleolin regulates its subcellular localization
title The glycine arginine‐rich domain of the RNA‐binding protein nucleolin regulates its subcellular localization
title_full The glycine arginine‐rich domain of the RNA‐binding protein nucleolin regulates its subcellular localization
title_fullStr The glycine arginine‐rich domain of the RNA‐binding protein nucleolin regulates its subcellular localization
title_full_unstemmed The glycine arginine‐rich domain of the RNA‐binding protein nucleolin regulates its subcellular localization
title_short The glycine arginine‐rich domain of the RNA‐binding protein nucleolin regulates its subcellular localization
title_sort glycine arginine‐rich domain of the rna‐binding protein nucleolin regulates its subcellular localization
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8521312/
https://www.ncbi.nlm.nih.gov/pubmed/34515347
http://dx.doi.org/10.15252/embj.2020107158
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