Prp4 Kinase Grants the License to Splice: Control of Weak Splice Sites during Spliceosome Activation.
The genome of the fission yeast Schizosaccharomyces pombe encodes 17 kinases that are essential for cell growth. These include the cell-cycle regulator Cdc2, as well as several kinases that coordinate cell growth, polarity, and morphogenesis during the cell cycle. In this study, we further character...
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doaj-72d453027e0c42a49b14bdddf945c2242020-11-25T01:57:37ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042016-01-01121e100576810.1371/journal.pgen.1005768Prp4 Kinase Grants the License to Splice: Control of Weak Splice Sites during Spliceosome Activation.Daniela EckertNicole AndréeAleh RazanauSusanne Zock-EmmenthalMartin LützelbergerSusann PlathHenning SchmidtAngel Guerra-MorenoLuca CozzutoJosé AytéNorbert F KäuferThe genome of the fission yeast Schizosaccharomyces pombe encodes 17 kinases that are essential for cell growth. These include the cell-cycle regulator Cdc2, as well as several kinases that coordinate cell growth, polarity, and morphogenesis during the cell cycle. In this study, we further characterized another of these essential kinases, Prp4, and showed that the splicing of many introns is dependent on Prp4 kinase activity. For detailed characterization, we chose the genes res1 and ppk8, each of which contains one intron of typical size and position. Splicing of the res1 intron was dependent on Prp4 kinase activity, whereas splicing of the ppk8 intron was not. Extensive mutational analyses of the 5' splice site of both genes revealed that proper transient interaction with the 5' end of snRNA U1 governs the dependence of splicing on Prp4 kinase activity. Proper transient interaction between the branch sequence and snRNA U2 was also important. Therefore, the Prp4 kinase is required for recognition and efficient splicing of introns displaying weak exon1/5' splice sites and weak branch sequences.http://europepmc.org/articles/PMC4701394?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Daniela Eckert Nicole Andrée Aleh Razanau Susanne Zock-Emmenthal Martin Lützelberger Susann Plath Henning Schmidt Angel Guerra-Moreno Luca Cozzuto José Ayté Norbert F Käufer |
spellingShingle |
Daniela Eckert Nicole Andrée Aleh Razanau Susanne Zock-Emmenthal Martin Lützelberger Susann Plath Henning Schmidt Angel Guerra-Moreno Luca Cozzuto José Ayté Norbert F Käufer Prp4 Kinase Grants the License to Splice: Control of Weak Splice Sites during Spliceosome Activation. PLoS Genetics |
author_facet |
Daniela Eckert Nicole Andrée Aleh Razanau Susanne Zock-Emmenthal Martin Lützelberger Susann Plath Henning Schmidt Angel Guerra-Moreno Luca Cozzuto José Ayté Norbert F Käufer |
author_sort |
Daniela Eckert |
title |
Prp4 Kinase Grants the License to Splice: Control of Weak Splice Sites during Spliceosome Activation. |
title_short |
Prp4 Kinase Grants the License to Splice: Control of Weak Splice Sites during Spliceosome Activation. |
title_full |
Prp4 Kinase Grants the License to Splice: Control of Weak Splice Sites during Spliceosome Activation. |
title_fullStr |
Prp4 Kinase Grants the License to Splice: Control of Weak Splice Sites during Spliceosome Activation. |
title_full_unstemmed |
Prp4 Kinase Grants the License to Splice: Control of Weak Splice Sites during Spliceosome Activation. |
title_sort |
prp4 kinase grants the license to splice: control of weak splice sites during spliceosome activation. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Genetics |
issn |
1553-7390 1553-7404 |
publishDate |
2016-01-01 |
description |
The genome of the fission yeast Schizosaccharomyces pombe encodes 17 kinases that are essential for cell growth. These include the cell-cycle regulator Cdc2, as well as several kinases that coordinate cell growth, polarity, and morphogenesis during the cell cycle. In this study, we further characterized another of these essential kinases, Prp4, and showed that the splicing of many introns is dependent on Prp4 kinase activity. For detailed characterization, we chose the genes res1 and ppk8, each of which contains one intron of typical size and position. Splicing of the res1 intron was dependent on Prp4 kinase activity, whereas splicing of the ppk8 intron was not. Extensive mutational analyses of the 5' splice site of both genes revealed that proper transient interaction with the 5' end of snRNA U1 governs the dependence of splicing on Prp4 kinase activity. Proper transient interaction between the branch sequence and snRNA U2 was also important. Therefore, the Prp4 kinase is required for recognition and efficient splicing of introns displaying weak exon1/5' splice sites and weak branch sequences. |
url |
http://europepmc.org/articles/PMC4701394?pdf=render |
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