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The large N-terminal region of the Brr2 RNA helicase guides productive spliceosome activation

The Brr2 helicase provides the key remodeling activity for spliceosome catalytic activation, during which it disrupts the U4/U6 di-snRNP (small nuclear RNA protein), and its activity has to be tightly regulated. Brr2 exhibits an unusual architecture, including an ∼500-residue N-terminal region, whos...

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Autores principales: Absmeier, Eva, Wollenhaupt, Jan, Mozaffari-Jovin, Sina, Becke, Christian, Lee, Chung-Tien, Preussner, Marco, Heyd, Florian, Urlaub, Henning, Lührmann, Reinhard, Santos, Karine F., Wahl, Markus C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4699386/
https://www.ncbi.nlm.nih.gov/pubmed/26637280
http://dx.doi.org/10.1101/gad.271528.115
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author Absmeier, Eva
Wollenhaupt, Jan
Mozaffari-Jovin, Sina
Becke, Christian
Lee, Chung-Tien
Preussner, Marco
Heyd, Florian
Urlaub, Henning
Lührmann, Reinhard
Santos, Karine F.
Wahl, Markus C.
author_facet Absmeier, Eva
Wollenhaupt, Jan
Mozaffari-Jovin, Sina
Becke, Christian
Lee, Chung-Tien
Preussner, Marco
Heyd, Florian
Urlaub, Henning
Lührmann, Reinhard
Santos, Karine F.
Wahl, Markus C.
author_sort Absmeier, Eva
collection PubMed
description The Brr2 helicase provides the key remodeling activity for spliceosome catalytic activation, during which it disrupts the U4/U6 di-snRNP (small nuclear RNA protein), and its activity has to be tightly regulated. Brr2 exhibits an unusual architecture, including an ∼500-residue N-terminal region, whose functions and molecular mechanisms are presently unknown, followed by a tandem array of structurally similar helicase units (cassettes), only the first of which is catalytically active. Here, we show by crystal structure analysis of full-length Brr2 in complex with a regulatory Jab1/MPN domain of the Prp8 protein and by cross-linking/mass spectrometry of isolated Brr2 that the Brr2 N-terminal region encompasses two folded domains and adjacent linear elements that clamp and interconnect the helicase cassettes. Stepwise N-terminal truncations led to yeast growth and splicing defects, reduced Brr2 association with U4/U6•U5 tri-snRNPs, and increased ATP-dependent disruption of the tri-snRNP, yielding U4/U6 di-snRNP and U5 snRNP. Trends in the RNA-binding, ATPase, and helicase activities of the Brr2 truncation variants are fully rationalized by the crystal structure, demonstrating that the N-terminal region autoinhibits Brr2 via substrate competition and conformational clamping. Our results reveal molecular mechanisms that prevent premature and unproductive tri-snRNP disruption and suggest novel principles of Brr2-dependent splicing regulation.
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spelling pubmed-46993862016-06-15 The large N-terminal region of the Brr2 RNA helicase guides productive spliceosome activation Absmeier, Eva Wollenhaupt, Jan Mozaffari-Jovin, Sina Becke, Christian Lee, Chung-Tien Preussner, Marco Heyd, Florian Urlaub, Henning Lührmann, Reinhard Santos, Karine F. Wahl, Markus C. Genes Dev Research Paper The Brr2 helicase provides the key remodeling activity for spliceosome catalytic activation, during which it disrupts the U4/U6 di-snRNP (small nuclear RNA protein), and its activity has to be tightly regulated. Brr2 exhibits an unusual architecture, including an ∼500-residue N-terminal region, whose functions and molecular mechanisms are presently unknown, followed by a tandem array of structurally similar helicase units (cassettes), only the first of which is catalytically active. Here, we show by crystal structure analysis of full-length Brr2 in complex with a regulatory Jab1/MPN domain of the Prp8 protein and by cross-linking/mass spectrometry of isolated Brr2 that the Brr2 N-terminal region encompasses two folded domains and adjacent linear elements that clamp and interconnect the helicase cassettes. Stepwise N-terminal truncations led to yeast growth and splicing defects, reduced Brr2 association with U4/U6•U5 tri-snRNPs, and increased ATP-dependent disruption of the tri-snRNP, yielding U4/U6 di-snRNP and U5 snRNP. Trends in the RNA-binding, ATPase, and helicase activities of the Brr2 truncation variants are fully rationalized by the crystal structure, demonstrating that the N-terminal region autoinhibits Brr2 via substrate competition and conformational clamping. Our results reveal molecular mechanisms that prevent premature and unproductive tri-snRNP disruption and suggest novel principles of Brr2-dependent splicing regulation. Cold Spring Harbor Laboratory Press 2015-12-15 /pmc/articles/PMC4699386/ /pubmed/26637280 http://dx.doi.org/10.1101/gad.271528.115 Text en © 2015 Absmeier et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genesdev.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research Paper
Absmeier, Eva
Wollenhaupt, Jan
Mozaffari-Jovin, Sina
Becke, Christian
Lee, Chung-Tien
Preussner, Marco
Heyd, Florian
Urlaub, Henning
Lührmann, Reinhard
Santos, Karine F.
Wahl, Markus C.
The large N-terminal region of the Brr2 RNA helicase guides productive spliceosome activation
title The large N-terminal region of the Brr2 RNA helicase guides productive spliceosome activation
title_full The large N-terminal region of the Brr2 RNA helicase guides productive spliceosome activation
title_fullStr The large N-terminal region of the Brr2 RNA helicase guides productive spliceosome activation
title_full_unstemmed The large N-terminal region of the Brr2 RNA helicase guides productive spliceosome activation
title_short The large N-terminal region of the Brr2 RNA helicase guides productive spliceosome activation
title_sort large n-terminal region of the brr2 rna helicase guides productive spliceosome activation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4699386/
https://www.ncbi.nlm.nih.gov/pubmed/26637280
http://dx.doi.org/10.1101/gad.271528.115
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