Heterochromatic DNA domains play important roles in regulation of gene expression and maintenance of genome stability by silencing repetitive DNA elements and transposons. From fission yeast to mammals, heterochromatin assembly at DNA repeats involves the activity of small noncoding RNAs (sRNAs) associated with the RNA interference (RNAi) pathway1–9. Typically, sRNAs, originating from long noncoding RNAs, guide Argonaute-containing effector complexes to complementary nascent RNAs to initiate histone H3 lysine 9 di- and tri-methylation (H3K9me2 and H3K9me3, respectively) and heterochromatin formation10–17. H3K9me is in turn required for recruitment of RNAi to chromatin to promote sRNA amplification11,15,18. Yet, how heterochromatin formation...
Formation of centromeric heterochromatin in fission yeast requires the combined action of chromatin ...
SummaryIn fission yeast, RNAi directs heterochromatin formation at centromeres, telomeres, and the m...
In fission yeast, RNAi directs heterochromatin formation at centromeres, telomeres, and the mating t...
RNA interference (RNAi) is a conserved silencing mechanism whereby double-strand RNA induces specifi...
RNA interference (RNAi) is a conserved silencing mechanism whereby double-strand RNA induces specifi...
SummaryBackgroundHeterochromatin is chromosomal material that remains condensed throughout the cell ...
International audienceAssembly of heterochromatin at centromeric DNA regions in the fission yeast Sc...
International audienceAssembly of heterochromatin at centromeric DNA regions in the fission yeast Sc...
International audienceAssembly of heterochromatin at centromeric DNA regions in the fission yeast Sc...
Histone modification marks have an important role in many chromatin processes. During DNA replicatio...
In eukaryotes, 20-30 nt small RNAs (sRNAs) regulate many cellular processes by a process called RNA ...
The higher-order assembly of chromatin imposes structural organization on the genetic information of...
SummaryBackgroundHeterochromatin is chromosomal material that remains condensed throughout the cell ...
Histone modification marks have an important role in many chromatin processes(1,2). During DNA repli...
Histone modification marks have an important role in many chromatin processes. During DNA replicatio...
Formation of centromeric heterochromatin in fission yeast requires the combined action of chromatin ...
SummaryIn fission yeast, RNAi directs heterochromatin formation at centromeres, telomeres, and the m...
In fission yeast, RNAi directs heterochromatin formation at centromeres, telomeres, and the mating t...
RNA interference (RNAi) is a conserved silencing mechanism whereby double-strand RNA induces specifi...
RNA interference (RNAi) is a conserved silencing mechanism whereby double-strand RNA induces specifi...
SummaryBackgroundHeterochromatin is chromosomal material that remains condensed throughout the cell ...
International audienceAssembly of heterochromatin at centromeric DNA regions in the fission yeast Sc...
International audienceAssembly of heterochromatin at centromeric DNA regions in the fission yeast Sc...
International audienceAssembly of heterochromatin at centromeric DNA regions in the fission yeast Sc...
Histone modification marks have an important role in many chromatin processes. During DNA replicatio...
In eukaryotes, 20-30 nt small RNAs (sRNAs) regulate many cellular processes by a process called RNA ...
The higher-order assembly of chromatin imposes structural organization on the genetic information of...
SummaryBackgroundHeterochromatin is chromosomal material that remains condensed throughout the cell ...
Histone modification marks have an important role in many chromatin processes(1,2). During DNA repli...
Histone modification marks have an important role in many chromatin processes. During DNA replicatio...
Formation of centromeric heterochromatin in fission yeast requires the combined action of chromatin ...
SummaryIn fission yeast, RNAi directs heterochromatin formation at centromeres, telomeres, and the m...
In fission yeast, RNAi directs heterochromatin formation at centromeres, telomeres, and the mating t...