Sort   by:  
 Page size 
DNA topoisomerases solve topological problems during chromosome metabolism. We investigated where and when Top1 and Top2 are recruited on replicating chromosomes and how their inactivation affects fork integrity and DNA damage checkpoint activation. We show that, in the context of replicating chroma...
ORGANISM(S): Saccharomyces cerevisiae 
Chromatin is dynamically reorganized when DNA replication forks are challenged. However, the process of epigenetic reorganization and its implication for fork stability is poorly understood. Here, we discover a checkpoint regulated cascade of chromatin signaling that activates 5 the histone methyl...
ORGANISM(S): Homo sapiens (Human) Mus musculus (Mouse) 
2023-05-12 | PXD041742 | Pride
Replication Fork-Associated RNA-DNA Hybrids Safeguard Genomic Stability in Transcriptionally Active Regions [EdU_seq]
Replication Fork-Associated RNA-DNA Hybrids Safeguard Genomic Stability in Transcriptionally Active Regions [EdUseq]
Replication Fork-Associated RNA-DNA Hybrids Safeguard Genomic Stability in Transcriptionally Active Regions [DNA2_MRE11_ChIPseq]
Replication Fork-Associated RNA-DNA Hybrids Safeguard Genomic Stability in Transcriptionally Active Regions [WGRS]
Replication Fork-Associated RNA-DNA Hybrids Safeguard Genomic Stability in Transcriptionally Active Regions [gH2AX_ChIPseq]
Replication Fork-Associated RNA-DNA Hybrids Safeguard Genomic Stability in Transcriptionally Active Regions [REFORC]
Replication Fork-Associated RNA-DNA Hybrids Safeguard Genomic Stability in Transcriptionally Active Regions [RNA_seq]
Replication Fork-Associated RNA-DNA Hybrids Safeguard Genomic Stability in Transcriptionally Active Regions [HeLa REFORC]
Sort   by:  
 Page size