Unknown,Transcriptomics,Genomics,Proteomics

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R-loops are marks for histone H3 Ser10 phosphorylation and chromatin compaction


ABSTRACT: R-loops are transcription by-products that may constitute a threat to genome integrity. In addition to specific enzymes to remove them, eukaryotes rely on a number of mRNP biogenesis factors such as the THO complex, to prevent co-transcriptional R-loop formation. We show in Saccharomyces cerevisiae that R-loops are tightly and specifically linked with histone H3-Ser10 phosphorylation (H3S10P), a mark of chromatin condensation. Importantly, ChIP-chip analyses reveal a clear H3S10P accumulation at the pericentromeric chromatin during the G1-phase of the cell cycle only in R loop-accumulating yeast strains but not in those non-accumulating R-loops, and a significantly higher accumulation during S-phase. Such a difference can also be detected in a number of genes along the genome. ChIP-chip studies were perfomed with antibodies against Histone H3 and the phosphorylated Histone H3 at Serine10 in the yeast S. cerevisiae.

ORGANISM(S): Saccharomyces cerevisiae

SUBMITTER: AndrM-CM-)s Aguilera 

PROVIDER: E-GEOD-46627 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

R loops are linked to histone H3 S10 phosphorylation and chromatin condensation.

Castellano-Pozo Maikel M   Santos-Pereira José M JM   Rondón Ana G AG   Barroso Sonia S   Andújar Eloisa E   Pérez-Alegre Mónica M   García-Muse Tatiana T   Aguilera Andrés A  

Molecular cell 20131107 4


R loops are transcription byproducts that constitute a threat to genome integrity. Here we show that R loops are tightly linked to histone H3 S10 phosphorylation (H3S10P), a mark of chromatin condensation. Chromatin immunoprecipitation (ChIP)-on-chip (ChIP-chip) analyses reveal H3S10P accumulation at centromeres, pericentromeric chromatin, and a large number of active open reading frames (ORFs) in R-loop-accumulating yeast cells, better observed in G1. Histone H3S10 plays a key role in maintaini  ...[more]

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