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Global analysis of pre-mRNA subcellular localization following splicing inhibition by spliceostatin A

Spliceostatin A (SSA) is a methyl ketal derivative of FR901464, a potent antitumor compound isolated from a culture broth of Pseudomonas sp. no. 2663. These compounds selectively bind to the essential spliceosome component SF3b, a subcomplex of the U2 snRNP, to inhibit pre-mRNA splicing. However, th...

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Autores principales: Yoshimoto, Rei, Kaida, Daisuke, Furuno, Masaaki, Burroughs, A. Maxwell, Noma, Shohei, Suzuki, Harukazu, Kawamura, Yumi, Hayashizaki, Yoshihide, Mayeda, Akila, Yoshida, Minoru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5159648/
https://www.ncbi.nlm.nih.gov/pubmed/27754875
http://dx.doi.org/10.1261/rna.058065.116
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author Yoshimoto, Rei
Kaida, Daisuke
Furuno, Masaaki
Burroughs, A. Maxwell
Noma, Shohei
Suzuki, Harukazu
Kawamura, Yumi
Hayashizaki, Yoshihide
Mayeda, Akila
Yoshida, Minoru
author_facet Yoshimoto, Rei
Kaida, Daisuke
Furuno, Masaaki
Burroughs, A. Maxwell
Noma, Shohei
Suzuki, Harukazu
Kawamura, Yumi
Hayashizaki, Yoshihide
Mayeda, Akila
Yoshida, Minoru
author_sort Yoshimoto, Rei
collection PubMed
description Spliceostatin A (SSA) is a methyl ketal derivative of FR901464, a potent antitumor compound isolated from a culture broth of Pseudomonas sp. no. 2663. These compounds selectively bind to the essential spliceosome component SF3b, a subcomplex of the U2 snRNP, to inhibit pre-mRNA splicing. However, the mechanism of SSA's antitumor activity is unknown. It is noteworthy that SSA causes accumulation of a truncated form of the CDK inhibitor protein p27 translated from CDKN1B pre-mRNA, which is involved in SSA-induced cell-cycle arrest. However, it is still unclear whether pre-mRNAs are uniformly exported from the nucleus following SSA treatment. We performed RNA-seq analysis on nuclear and cytoplasmic fractions of SSA-treated cells. Our statistical analyses showed that intron retention is the major consequence of SSA treatment, and a small number of intron-containing pre-mRNAs leak into the cytoplasm. Using a series of reporter plasmids to investigate the roles of intronic sequences in the pre-mRNA leakage, we showed that the strength of the 5′ splice site affects pre-mRNA leakage. Additionally, we found that the level of pre-mRNA leakage is related to transcript length. These results suggest that the strength of the 5′ splice site and the length of the transcripts are determinants of the pre-mRNA leakage induced by SF3b inhibitors.
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spelling pubmed-51596482018-01-01 Global analysis of pre-mRNA subcellular localization following splicing inhibition by spliceostatin A Yoshimoto, Rei Kaida, Daisuke Furuno, Masaaki Burroughs, A. Maxwell Noma, Shohei Suzuki, Harukazu Kawamura, Yumi Hayashizaki, Yoshihide Mayeda, Akila Yoshida, Minoru RNA Article Spliceostatin A (SSA) is a methyl ketal derivative of FR901464, a potent antitumor compound isolated from a culture broth of Pseudomonas sp. no. 2663. These compounds selectively bind to the essential spliceosome component SF3b, a subcomplex of the U2 snRNP, to inhibit pre-mRNA splicing. However, the mechanism of SSA's antitumor activity is unknown. It is noteworthy that SSA causes accumulation of a truncated form of the CDK inhibitor protein p27 translated from CDKN1B pre-mRNA, which is involved in SSA-induced cell-cycle arrest. However, it is still unclear whether pre-mRNAs are uniformly exported from the nucleus following SSA treatment. We performed RNA-seq analysis on nuclear and cytoplasmic fractions of SSA-treated cells. Our statistical analyses showed that intron retention is the major consequence of SSA treatment, and a small number of intron-containing pre-mRNAs leak into the cytoplasm. Using a series of reporter plasmids to investigate the roles of intronic sequences in the pre-mRNA leakage, we showed that the strength of the 5′ splice site affects pre-mRNA leakage. Additionally, we found that the level of pre-mRNA leakage is related to transcript length. These results suggest that the strength of the 5′ splice site and the length of the transcripts are determinants of the pre-mRNA leakage induced by SF3b inhibitors. Cold Spring Harbor Laboratory Press 2017-01 /pmc/articles/PMC5159648/ /pubmed/27754875 http://dx.doi.org/10.1261/rna.058065.116 Text en © 2016 Yoshimoto et al.; Published by Cold Spring Harbor Laboratory Press for the RNA Society http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by the RNA Society for the first 12 months after the full-issue publication date (see http://rnajournal.cshlp.org/site/misc/terms.xhtml). After 12 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 Article
Yoshimoto, Rei
Kaida, Daisuke
Furuno, Masaaki
Burroughs, A. Maxwell
Noma, Shohei
Suzuki, Harukazu
Kawamura, Yumi
Hayashizaki, Yoshihide
Mayeda, Akila
Yoshida, Minoru
Global analysis of pre-mRNA subcellular localization following splicing inhibition by spliceostatin A
title Global analysis of pre-mRNA subcellular localization following splicing inhibition by spliceostatin A
title_full Global analysis of pre-mRNA subcellular localization following splicing inhibition by spliceostatin A
title_fullStr Global analysis of pre-mRNA subcellular localization following splicing inhibition by spliceostatin A
title_full_unstemmed Global analysis of pre-mRNA subcellular localization following splicing inhibition by spliceostatin A
title_short Global analysis of pre-mRNA subcellular localization following splicing inhibition by spliceostatin A
title_sort global analysis of pre-mrna subcellular localization following splicing inhibition by spliceostatin a
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5159648/
https://www.ncbi.nlm.nih.gov/pubmed/27754875
http://dx.doi.org/10.1261/rna.058065.116
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