The CCR4-NOT complex is implicated in the viability of aneuploid yeasts.

To identify the genes required to sustain aneuploid viability, we screened a deletion library of non-essential genes in the fission yeast Schizosaccharomyces pombe, in which most types of aneuploidy are eventually lethal to the cell. Aneuploids remain viable for a period of time and can form colonie...

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Main Authors: Yoshie Tange, Atsushi Kurabayashi, Bunshiro Goto, Kwang-Lae Hoe, Dong-Uk Kim, Han-Oh Park, Jacqueline Hayles, Yuji Chikashige, Chihiro Tsutumi, Yasushi Hiraoka, Fumiaki Yamao, Paul Nurse, Osami Niwa
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC3380822?pdf=render
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spelling doaj-a6dcfd8f90f64d42906e5b7e8ca6a5752020-11-24T21:49:54ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042012-01-0186e100277610.1371/journal.pgen.1002776The CCR4-NOT complex is implicated in the viability of aneuploid yeasts.Yoshie TangeAtsushi KurabayashiBunshiro GotoKwang-Lae HoeDong-Uk KimHan-Oh ParkJacqueline HaylesYuji ChikashigeChihiro TsutumiYasushi HiraokaFumiaki YamaoPaul NurseOsami NiwaTo identify the genes required to sustain aneuploid viability, we screened a deletion library of non-essential genes in the fission yeast Schizosaccharomyces pombe, in which most types of aneuploidy are eventually lethal to the cell. Aneuploids remain viable for a period of time and can form colonies by reducing the extent of the aneuploidy. We hypothesized that a reduction in colony formation efficiency could be used to screen for gene deletions that compromise aneuploid viability. Deletion mutants were used to measure the effects on the viability of spores derived from triploid meiosis and from a chromosome instability mutant. We found that the CCR4-NOT complex, an evolutionarily conserved general regulator of mRNA turnover, and other related factors, including poly(A)-specific nuclease for mRNA decay, are involved in aneuploid viability. Defective mutations in CCR4-NOT complex components in the distantly related yeast Saccharomyces cerevisiae also affected the viability of spores produced from triploid cells, suggesting that this complex has a conserved role in aneuploids. In addition, our findings suggest that the genes required for homologous recombination repair are important for aneuploid viability.http://europepmc.org/articles/PMC3380822?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yoshie Tange
Atsushi Kurabayashi
Bunshiro Goto
Kwang-Lae Hoe
Dong-Uk Kim
Han-Oh Park
Jacqueline Hayles
Yuji Chikashige
Chihiro Tsutumi
Yasushi Hiraoka
Fumiaki Yamao
Paul Nurse
Osami Niwa
spellingShingle Yoshie Tange
Atsushi Kurabayashi
Bunshiro Goto
Kwang-Lae Hoe
Dong-Uk Kim
Han-Oh Park
Jacqueline Hayles
Yuji Chikashige
Chihiro Tsutumi
Yasushi Hiraoka
Fumiaki Yamao
Paul Nurse
Osami Niwa
The CCR4-NOT complex is implicated in the viability of aneuploid yeasts.
PLoS Genetics
author_facet Yoshie Tange
Atsushi Kurabayashi
Bunshiro Goto
Kwang-Lae Hoe
Dong-Uk Kim
Han-Oh Park
Jacqueline Hayles
Yuji Chikashige
Chihiro Tsutumi
Yasushi Hiraoka
Fumiaki Yamao
Paul Nurse
Osami Niwa
author_sort Yoshie Tange
title The CCR4-NOT complex is implicated in the viability of aneuploid yeasts.
title_short The CCR4-NOT complex is implicated in the viability of aneuploid yeasts.
title_full The CCR4-NOT complex is implicated in the viability of aneuploid yeasts.
title_fullStr The CCR4-NOT complex is implicated in the viability of aneuploid yeasts.
title_full_unstemmed The CCR4-NOT complex is implicated in the viability of aneuploid yeasts.
title_sort ccr4-not complex is implicated in the viability of aneuploid yeasts.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2012-01-01
description To identify the genes required to sustain aneuploid viability, we screened a deletion library of non-essential genes in the fission yeast Schizosaccharomyces pombe, in which most types of aneuploidy are eventually lethal to the cell. Aneuploids remain viable for a period of time and can form colonies by reducing the extent of the aneuploidy. We hypothesized that a reduction in colony formation efficiency could be used to screen for gene deletions that compromise aneuploid viability. Deletion mutants were used to measure the effects on the viability of spores derived from triploid meiosis and from a chromosome instability mutant. We found that the CCR4-NOT complex, an evolutionarily conserved general regulator of mRNA turnover, and other related factors, including poly(A)-specific nuclease for mRNA decay, are involved in aneuploid viability. Defective mutations in CCR4-NOT complex components in the distantly related yeast Saccharomyces cerevisiae also affected the viability of spores produced from triploid cells, suggesting that this complex has a conserved role in aneuploids. In addition, our findings suggest that the genes required for homologous recombination repair are important for aneuploid viability.
url http://europepmc.org/articles/PMC3380822?pdf=render
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