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Cwf16p Associating with the Nineteen Complex Ensures Ordered Exon Joining in Constitutive Pre-mRNA Splicing in Fission Yeast

Exons are ligated in an ordered manner without the skipping of exons in the constitutive splicing of pre-mRNAs with multiple introns. To identify factors ensuring ordered exon joining in constitutive pre-mRNA splicing, we previously screened for exon skipping mutants in Schizosaccharomyces pombe usi...

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Autores principales: Sasaki-Haraguchi, Noriko, Ikuyama, Takeshi, Yoshii, Shogo, Takeuchi-Andoh, Tomoko, Frendewey, David, Tani, Tokio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4547733/
https://www.ncbi.nlm.nih.gov/pubmed/26302002
http://dx.doi.org/10.1371/journal.pone.0136336
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author Sasaki-Haraguchi, Noriko
Ikuyama, Takeshi
Yoshii, Shogo
Takeuchi-Andoh, Tomoko
Frendewey, David
Tani, Tokio
author_facet Sasaki-Haraguchi, Noriko
Ikuyama, Takeshi
Yoshii, Shogo
Takeuchi-Andoh, Tomoko
Frendewey, David
Tani, Tokio
author_sort Sasaki-Haraguchi, Noriko
collection PubMed
description Exons are ligated in an ordered manner without the skipping of exons in the constitutive splicing of pre-mRNAs with multiple introns. To identify factors ensuring ordered exon joining in constitutive pre-mRNA splicing, we previously screened for exon skipping mutants in Schizosaccharomyces pombe using a reporter plasmid, and characterized three exon skipping mutants named ods1 (ordered splicing 1), ods2, and ods3, the responsible genes of which encode Prp2/U2AF(59), U2AF(23), and SF1, respectively. They form an SF1-U2AF(59)-U2AF(23) complex involved in recognition of the branch and 3′ splice sites in pre-mRNA. In the present study, we identified a fourth ods mutant, ods4, which was isolated in an exon-skipping screen. The ods4 (+) gene encodes Cwf16p, which interacts with the NineTeen Complex (NTC), a complex thought to be involved in the first catalytic step of the splicing reaction. We isolated two multi-copy suppressors for the ods4-1 mutation, Srp2p, an SR protein essential for pre-mRNA splicing, and Tif213p, a translation initiation factor, in S. pombe. The overexpression of Srp2p suppressed the exon-skipping phenotype of all ods mutants, whereas Tif213p suppressed only ods4-1, which has a mutation in the translational start codon of the cwf16 gene. We also showed that the decrease in the transcriptional elongation rate induced by drug treatment suppressed exon skipping in ods4-1. We propose that Cwf16p/NTC participates in the early recognition of the branch and 3′ splice sites and cooperates with the SF1-U2AF(59)-U2AF(23) complex to maintain ordered exon joining.
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spelling pubmed-45477332015-09-01 Cwf16p Associating with the Nineteen Complex Ensures Ordered Exon Joining in Constitutive Pre-mRNA Splicing in Fission Yeast Sasaki-Haraguchi, Noriko Ikuyama, Takeshi Yoshii, Shogo Takeuchi-Andoh, Tomoko Frendewey, David Tani, Tokio PLoS One Research Article Exons are ligated in an ordered manner without the skipping of exons in the constitutive splicing of pre-mRNAs with multiple introns. To identify factors ensuring ordered exon joining in constitutive pre-mRNA splicing, we previously screened for exon skipping mutants in Schizosaccharomyces pombe using a reporter plasmid, and characterized three exon skipping mutants named ods1 (ordered splicing 1), ods2, and ods3, the responsible genes of which encode Prp2/U2AF(59), U2AF(23), and SF1, respectively. They form an SF1-U2AF(59)-U2AF(23) complex involved in recognition of the branch and 3′ splice sites in pre-mRNA. In the present study, we identified a fourth ods mutant, ods4, which was isolated in an exon-skipping screen. The ods4 (+) gene encodes Cwf16p, which interacts with the NineTeen Complex (NTC), a complex thought to be involved in the first catalytic step of the splicing reaction. We isolated two multi-copy suppressors for the ods4-1 mutation, Srp2p, an SR protein essential for pre-mRNA splicing, and Tif213p, a translation initiation factor, in S. pombe. The overexpression of Srp2p suppressed the exon-skipping phenotype of all ods mutants, whereas Tif213p suppressed only ods4-1, which has a mutation in the translational start codon of the cwf16 gene. We also showed that the decrease in the transcriptional elongation rate induced by drug treatment suppressed exon skipping in ods4-1. We propose that Cwf16p/NTC participates in the early recognition of the branch and 3′ splice sites and cooperates with the SF1-U2AF(59)-U2AF(23) complex to maintain ordered exon joining. Public Library of Science 2015-08-24 /pmc/articles/PMC4547733/ /pubmed/26302002 http://dx.doi.org/10.1371/journal.pone.0136336 Text en © 2015 Sasaki-Haraguchi et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sasaki-Haraguchi, Noriko
Ikuyama, Takeshi
Yoshii, Shogo
Takeuchi-Andoh, Tomoko
Frendewey, David
Tani, Tokio
Cwf16p Associating with the Nineteen Complex Ensures Ordered Exon Joining in Constitutive Pre-mRNA Splicing in Fission Yeast
title Cwf16p Associating with the Nineteen Complex Ensures Ordered Exon Joining in Constitutive Pre-mRNA Splicing in Fission Yeast
title_full Cwf16p Associating with the Nineteen Complex Ensures Ordered Exon Joining in Constitutive Pre-mRNA Splicing in Fission Yeast
title_fullStr Cwf16p Associating with the Nineteen Complex Ensures Ordered Exon Joining in Constitutive Pre-mRNA Splicing in Fission Yeast
title_full_unstemmed Cwf16p Associating with the Nineteen Complex Ensures Ordered Exon Joining in Constitutive Pre-mRNA Splicing in Fission Yeast
title_short Cwf16p Associating with the Nineteen Complex Ensures Ordered Exon Joining in Constitutive Pre-mRNA Splicing in Fission Yeast
title_sort cwf16p associating with the nineteen complex ensures ordered exon joining in constitutive pre-mrna splicing in fission yeast
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4547733/
https://www.ncbi.nlm.nih.gov/pubmed/26302002
http://dx.doi.org/10.1371/journal.pone.0136336
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