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Degenerate minigene library analysis enables identification of altered branch point utilization by mutant splicing factor 3B1 (SF3B1)

Cancer-associated mutations of the core splicing factor 3 B1 (SF3B1) result in selection of novel 3′ splice sites (3′SS), but precise molecular mechanisms of oncogenesis remain unclear. SF3B1 stabilizes the interaction between U2 snRNP and branch point (BP) on the pre-mRNA. It has hence been specula...

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Autores principales: Gupta, Abhishek K, Murthy, Tushar, Paul, Kiran V, Ramirez, Oscar, Fisher, Joseph B, Rao, Sridhar, Rosenberg, Alexander B, Seelig, Georg, Minella, Alex C, Pillai, Manoj M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6344872/
https://www.ncbi.nlm.nih.gov/pubmed/30462273
http://dx.doi.org/10.1093/nar/gky1161
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author Gupta, Abhishek K
Murthy, Tushar
Paul, Kiran V
Ramirez, Oscar
Fisher, Joseph B
Rao, Sridhar
Rosenberg, Alexander B
Seelig, Georg
Minella, Alex C
Pillai, Manoj M
author_facet Gupta, Abhishek K
Murthy, Tushar
Paul, Kiran V
Ramirez, Oscar
Fisher, Joseph B
Rao, Sridhar
Rosenberg, Alexander B
Seelig, Georg
Minella, Alex C
Pillai, Manoj M
author_sort Gupta, Abhishek K
collection PubMed
description Cancer-associated mutations of the core splicing factor 3 B1 (SF3B1) result in selection of novel 3′ splice sites (3′SS), but precise molecular mechanisms of oncogenesis remain unclear. SF3B1 stabilizes the interaction between U2 snRNP and branch point (BP) on the pre-mRNA. It has hence been speculated that a change in BP selection is the basis for novel 3′SS selection. Direct quantitative determination of BP utilization is however technically challenging. To define BP utilization by SF3B1-mutant spliceosomes, we used an overexpression approach in human cells as well as a complementary strategy using isogenic murine embryonic stem cells with monoallelic K700E mutations constructed via CRISPR/Cas9-based genome editing and a dual vector homology-directed repair methodology. A synthetic minigene library with degenerate regions in 3′ intronic regions (3.4 million individual minigenes) was used to compare BP usage of SF3B1(K700E) and SF3B1(WT). Using this model, we show that SF3B1(K700E) spliceosomes utilize non-canonical sequence variants (at position −1 relative to BP adenosine) more frequently than wild-type spliceosomes. These predictions were confirmed using minigene splicing assays. Our results suggest a model of BP utilization by mutant SF3B1 wherein it is able to utilize non-consensus alternative BP sequences by stabilizing weaker U2-BP interactions.
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spelling pubmed-63448722019-01-29 Degenerate minigene library analysis enables identification of altered branch point utilization by mutant splicing factor 3B1 (SF3B1) Gupta, Abhishek K Murthy, Tushar Paul, Kiran V Ramirez, Oscar Fisher, Joseph B Rao, Sridhar Rosenberg, Alexander B Seelig, Georg Minella, Alex C Pillai, Manoj M Nucleic Acids Res RNA and RNA-protein complexes Cancer-associated mutations of the core splicing factor 3 B1 (SF3B1) result in selection of novel 3′ splice sites (3′SS), but precise molecular mechanisms of oncogenesis remain unclear. SF3B1 stabilizes the interaction between U2 snRNP and branch point (BP) on the pre-mRNA. It has hence been speculated that a change in BP selection is the basis for novel 3′SS selection. Direct quantitative determination of BP utilization is however technically challenging. To define BP utilization by SF3B1-mutant spliceosomes, we used an overexpression approach in human cells as well as a complementary strategy using isogenic murine embryonic stem cells with monoallelic K700E mutations constructed via CRISPR/Cas9-based genome editing and a dual vector homology-directed repair methodology. A synthetic minigene library with degenerate regions in 3′ intronic regions (3.4 million individual minigenes) was used to compare BP usage of SF3B1(K700E) and SF3B1(WT). Using this model, we show that SF3B1(K700E) spliceosomes utilize non-canonical sequence variants (at position −1 relative to BP adenosine) more frequently than wild-type spliceosomes. These predictions were confirmed using minigene splicing assays. Our results suggest a model of BP utilization by mutant SF3B1 wherein it is able to utilize non-consensus alternative BP sequences by stabilizing weaker U2-BP interactions. Oxford University Press 2019-01-25 2018-11-20 /pmc/articles/PMC6344872/ /pubmed/30462273 http://dx.doi.org/10.1093/nar/gky1161 Text en © The Author(s) 2018. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle RNA and RNA-protein complexes
Gupta, Abhishek K
Murthy, Tushar
Paul, Kiran V
Ramirez, Oscar
Fisher, Joseph B
Rao, Sridhar
Rosenberg, Alexander B
Seelig, Georg
Minella, Alex C
Pillai, Manoj M
Degenerate minigene library analysis enables identification of altered branch point utilization by mutant splicing factor 3B1 (SF3B1)
title Degenerate minigene library analysis enables identification of altered branch point utilization by mutant splicing factor 3B1 (SF3B1)
title_full Degenerate minigene library analysis enables identification of altered branch point utilization by mutant splicing factor 3B1 (SF3B1)
title_fullStr Degenerate minigene library analysis enables identification of altered branch point utilization by mutant splicing factor 3B1 (SF3B1)
title_full_unstemmed Degenerate minigene library analysis enables identification of altered branch point utilization by mutant splicing factor 3B1 (SF3B1)
title_short Degenerate minigene library analysis enables identification of altered branch point utilization by mutant splicing factor 3B1 (SF3B1)
title_sort degenerate minigene library analysis enables identification of altered branch point utilization by mutant splicing factor 3b1 (sf3b1)
topic RNA and RNA-protein complexes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6344872/
https://www.ncbi.nlm.nih.gov/pubmed/30462273
http://dx.doi.org/10.1093/nar/gky1161
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