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TDP-43 condensation properties specify its RNA-binding and regulatory repertoire

Mutations causing amyotrophic lateral sclerosis (ALS) often affect the condensation properties of RNA-binding proteins (RBPs). However, the role of RBP condensation in the specificity and function of protein-RNA complexes remains unclear. We created a series of TDP-43 C-terminal domain (CTD) variant...

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Autores principales: Hallegger, Martina, Chakrabarti, Anob M., Lee, Flora C.Y., Lee, Bo Lim, Amalietti, Aram G., Odeh, Hana M., Copley, Katie E., Rubien, Jack D., Portz, Bede, Kuret, Klara, Huppertz, Ina, Rau, Frédérique, Patani, Rickie, Fawzi, Nicolas L., Shorter, James, Luscombe, Nicholas M., Ule, Jernej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8445024/
https://www.ncbi.nlm.nih.gov/pubmed/34380047
http://dx.doi.org/10.1016/j.cell.2021.07.018
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author Hallegger, Martina
Chakrabarti, Anob M.
Lee, Flora C.Y.
Lee, Bo Lim
Amalietti, Aram G.
Odeh, Hana M.
Copley, Katie E.
Rubien, Jack D.
Portz, Bede
Kuret, Klara
Huppertz, Ina
Rau, Frédérique
Patani, Rickie
Fawzi, Nicolas L.
Shorter, James
Luscombe, Nicholas M.
Ule, Jernej
author_facet Hallegger, Martina
Chakrabarti, Anob M.
Lee, Flora C.Y.
Lee, Bo Lim
Amalietti, Aram G.
Odeh, Hana M.
Copley, Katie E.
Rubien, Jack D.
Portz, Bede
Kuret, Klara
Huppertz, Ina
Rau, Frédérique
Patani, Rickie
Fawzi, Nicolas L.
Shorter, James
Luscombe, Nicholas M.
Ule, Jernej
author_sort Hallegger, Martina
collection PubMed
description Mutations causing amyotrophic lateral sclerosis (ALS) often affect the condensation properties of RNA-binding proteins (RBPs). However, the role of RBP condensation in the specificity and function of protein-RNA complexes remains unclear. We created a series of TDP-43 C-terminal domain (CTD) variants that exhibited a gradient of low to high condensation propensity, as observed in vitro and by nuclear mobility and foci formation. Notably, a capacity for condensation was required for efficient TDP-43 assembly on subsets of RNA-binding regions, which contain unusually long clusters of motifs of characteristic types and density. These “binding-region condensates” are promoted by homomeric CTD-driven interactions and required for efficient regulation of a subset of bound transcripts, including autoregulation of TDP-43 mRNA. We establish that RBP condensation can occur in a binding-region-specific manner to selectively modulate transcriptome-wide RNA regulation, which has implications for remodeling RNA networks in the context of signaling, disease, and evolution.
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spelling pubmed-84450242021-09-22 TDP-43 condensation properties specify its RNA-binding and regulatory repertoire Hallegger, Martina Chakrabarti, Anob M. Lee, Flora C.Y. Lee, Bo Lim Amalietti, Aram G. Odeh, Hana M. Copley, Katie E. Rubien, Jack D. Portz, Bede Kuret, Klara Huppertz, Ina Rau, Frédérique Patani, Rickie Fawzi, Nicolas L. Shorter, James Luscombe, Nicholas M. Ule, Jernej Cell Article Mutations causing amyotrophic lateral sclerosis (ALS) often affect the condensation properties of RNA-binding proteins (RBPs). However, the role of RBP condensation in the specificity and function of protein-RNA complexes remains unclear. We created a series of TDP-43 C-terminal domain (CTD) variants that exhibited a gradient of low to high condensation propensity, as observed in vitro and by nuclear mobility and foci formation. Notably, a capacity for condensation was required for efficient TDP-43 assembly on subsets of RNA-binding regions, which contain unusually long clusters of motifs of characteristic types and density. These “binding-region condensates” are promoted by homomeric CTD-driven interactions and required for efficient regulation of a subset of bound transcripts, including autoregulation of TDP-43 mRNA. We establish that RBP condensation can occur in a binding-region-specific manner to selectively modulate transcriptome-wide RNA regulation, which has implications for remodeling RNA networks in the context of signaling, disease, and evolution. Cell Press 2021-09-02 /pmc/articles/PMC8445024/ /pubmed/34380047 http://dx.doi.org/10.1016/j.cell.2021.07.018 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hallegger, Martina
Chakrabarti, Anob M.
Lee, Flora C.Y.
Lee, Bo Lim
Amalietti, Aram G.
Odeh, Hana M.
Copley, Katie E.
Rubien, Jack D.
Portz, Bede
Kuret, Klara
Huppertz, Ina
Rau, Frédérique
Patani, Rickie
Fawzi, Nicolas L.
Shorter, James
Luscombe, Nicholas M.
Ule, Jernej
TDP-43 condensation properties specify its RNA-binding and regulatory repertoire
title TDP-43 condensation properties specify its RNA-binding and regulatory repertoire
title_full TDP-43 condensation properties specify its RNA-binding and regulatory repertoire
title_fullStr TDP-43 condensation properties specify its RNA-binding and regulatory repertoire
title_full_unstemmed TDP-43 condensation properties specify its RNA-binding and regulatory repertoire
title_short TDP-43 condensation properties specify its RNA-binding and regulatory repertoire
title_sort tdp-43 condensation properties specify its rna-binding and regulatory repertoire
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8445024/
https://www.ncbi.nlm.nih.gov/pubmed/34380047
http://dx.doi.org/10.1016/j.cell.2021.07.018
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