International audienceQuiescent cells play a predominant role in most organisms. Here we identify RNA interference (RNAi) as a major requirement for quiescence (G0 phase of the cell cycle) in Schizosaccharomyces pombe RNAi mutants lose viability at G0 entry and are unable to maintain long-term quiescence. We identified suppressors of G0 defects in cells lacking Dicer (dcr1Δ), which mapped to genes involved in chromosome segregation, RNA polymerase-associated factors, and heterochromatin formation. We propose a model in which RNAi promotes the release of RNA polymerase in cycling and quiescent cells: (i) RNA polymerase II release mediates heterochromatin formation at centromeres, allowing proper chromosome segregation during mitotic growth a...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
Fission yeast is a useful model for RNA interference because it has single-copy genes for components...
International audienceBackground: Cellular quiescence is a reversible differentiation state during w...
Quiescent cells play a predominant role in most organisms. Here, we identify RNA interference (RNAi)...
International audienceMost cells in nature are not actively dividing, yet are able to return to the ...
International audienceMost cells in nature are not actively dividing, yet are able to return to the ...
Most cells in nature are not actively dividing, yet are able to return to the cell cycle given the a...
Heterochromatin comprises tightly compacted repetitive regions of eukaryotic chromosomes. The inheri...
Heterochromatin comprises tightly compacted repetitive regions of eukaryotic chromosomes. The inheri...
International audienceHeterochromatin comprises tightly compacted repetitive regions of eukaryotic c...
Heterochromatin comprises tightly compacted repetitive regions of eukaryotic chromosomes. The inheri...
In plants, animals and fungi, active centromeres are associated with arrays of repetitive DNA sequen...
RNAi plays a central role in the regulation of eukaryotic genes. In Schizosaccharomyces pombe fissio...
In plants, animals and fungi, active centromeres are associated with arrays of repetitive DNA sequen...
RNAi plays a central role in the regulation of eukaryotic genes. In Schizosaccharomyces pombe fissio...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
Fission yeast is a useful model for RNA interference because it has single-copy genes for components...
International audienceBackground: Cellular quiescence is a reversible differentiation state during w...
Quiescent cells play a predominant role in most organisms. Here, we identify RNA interference (RNAi)...
International audienceMost cells in nature are not actively dividing, yet are able to return to the ...
International audienceMost cells in nature are not actively dividing, yet are able to return to the ...
Most cells in nature are not actively dividing, yet are able to return to the cell cycle given the a...
Heterochromatin comprises tightly compacted repetitive regions of eukaryotic chromosomes. The inheri...
Heterochromatin comprises tightly compacted repetitive regions of eukaryotic chromosomes. The inheri...
International audienceHeterochromatin comprises tightly compacted repetitive regions of eukaryotic c...
Heterochromatin comprises tightly compacted repetitive regions of eukaryotic chromosomes. The inheri...
In plants, animals and fungi, active centromeres are associated with arrays of repetitive DNA sequen...
RNAi plays a central role in the regulation of eukaryotic genes. In Schizosaccharomyces pombe fissio...
In plants, animals and fungi, active centromeres are associated with arrays of repetitive DNA sequen...
RNAi plays a central role in the regulation of eukaryotic genes. In Schizosaccharomyces pombe fissio...
All organisms have cells that are capable of exiting the normal cell cycle and entering a non-prolif...
Fission yeast is a useful model for RNA interference because it has single-copy genes for components...
International audienceBackground: Cellular quiescence is a reversible differentiation state during w...