The yeast and human FACT chromatin-reorganizing complexes solve R-loop-mediated transcription-replication conflicts.
FACT (facilitates chromatin transcription) is a chromatin-reorganizing complex that swaps nucleosomes around the RNA polymerase during transcription elongation and has a role in replication that is not fully understood yet. Here we show that recombination factors are required for the survival of yeast FACT mutants, consistent with an accumulation of ... DNA breaks that we detected by Rad52 foci and transcription-dependent hyperrecombination. Breaks also accumulate in FACT-depleted human cells, as shown by γH2AX foci and single-cell electrophoresis. Furthermore, FACT-deficient yeast and human cells show replication impairment, which in yeast we demonstrate by ChIP-chip (chromatin immunoprecipitation [ChIP] coupled with microarray analysis) of Rrm3 to occur genome-wide but preferentially at highly transcribed regions. Strikingly, in yeast FACT mutants, high levels of Rad52 foci are suppressed by RNH1 overexpression; R loops accumulate at high levels, and replication becomes normal when global RNA synthesis is inhibited in FACT-depleted human cells. The results demonstrate a key function of FACT in the resolution of R-loop-mediated transcription-replication conflicts, likely associated with a specific chromatin organization.
Mesh Terms:
Cell Survival, Chromatin, DNA Breaks, DNA Replication, DNA-Binding Proteins, Genomic Instability, High Mobility Group Proteins, Humans, Mutation, Ribonuclease H, S Phase, Saccharomyces cerevisiae, Saccharomyces cerevisiae Proteins, Transcription, Genetic, Transcriptional Elongation Factors
Cell Survival, Chromatin, DNA Breaks, DNA Replication, DNA-Binding Proteins, Genomic Instability, High Mobility Group Proteins, Humans, Mutation, Ribonuclease H, S Phase, Saccharomyces cerevisiae, Saccharomyces cerevisiae Proteins, Transcription, Genetic, Transcriptional Elongation Factors
Genes Dev.
Date: Apr. 01, 2014
PubMed ID: 24636987
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