Transcription-replication collisions (TRCs) are crucial determinants of genome instability. R-loops were linked to head-on TRCs and proposed to obstruct replication fork progression. The underlying mechanisms, however, remained elusive due to the lack of direct visualization and of non-ambiguous research tools. Here, we ascertained the stability of estrogen-induced R-loops on the human genome, visualized them directly by electron microscopy (EM), and measured R-loop frequency and size at the single-molecule level. Combining EM and immuno-labeling on locus-specific head-on TRCs in bacteria, we observed the frequent accumulation of DNA:RNA hybrids behind replication forks. These post-replicative structures are linked to fork slowing and rever...
Genome replication involves dealing with obstacles that can result from DNA damage but also from ch...
R-loops, consisting of an RNA-DNA hybrid and displaced single-stranded DNA, are physiological struct...
Each cell division requires the unwinding of millions of DNA base pairs to allow chromosome duplicat...
Transcription-replication collisions (TRCs) are crucial determinants of genome instability. R-loops ...
Transcription-replication collisions (TRCs) are crucial determinants of genome instability. R-loops ...
Transcription-replication collisions (TRCs) are crucial determinants of genome instability. R-loops ...
We show that the time required to transcribe human genes larger than 800 kb spans more than one comp...
R loops are an important source of genome instability, largely due to their negative impact on repli...
R-loops are a major source of genome instability associated with transcription-induced replication s...
Replication and transcription machinery can cause transcription-replication conflicts (TRCs), which ...
Identifying how R-loops are generated is crucial to know how transcription compromises genome integr...
Identifying how R-loops are generated is crucial to know how transcription compromises genome integr...
Identifying how R-loops are generated is crucial to know how transcription compromises genome integr...
To ensure accurate duplication of genetic material, the replication fork must overcome numerous natu...
The nascent RNA can reinvade the DNA double helix to form a structure termed the R-loop, where a sin...
Genome replication involves dealing with obstacles that can result from DNA damage but also from ch...
R-loops, consisting of an RNA-DNA hybrid and displaced single-stranded DNA, are physiological struct...
Each cell division requires the unwinding of millions of DNA base pairs to allow chromosome duplicat...
Transcription-replication collisions (TRCs) are crucial determinants of genome instability. R-loops ...
Transcription-replication collisions (TRCs) are crucial determinants of genome instability. R-loops ...
Transcription-replication collisions (TRCs) are crucial determinants of genome instability. R-loops ...
We show that the time required to transcribe human genes larger than 800 kb spans more than one comp...
R loops are an important source of genome instability, largely due to their negative impact on repli...
R-loops are a major source of genome instability associated with transcription-induced replication s...
Replication and transcription machinery can cause transcription-replication conflicts (TRCs), which ...
Identifying how R-loops are generated is crucial to know how transcription compromises genome integr...
Identifying how R-loops are generated is crucial to know how transcription compromises genome integr...
Identifying how R-loops are generated is crucial to know how transcription compromises genome integr...
To ensure accurate duplication of genetic material, the replication fork must overcome numerous natu...
The nascent RNA can reinvade the DNA double helix to form a structure termed the R-loop, where a sin...
Genome replication involves dealing with obstacles that can result from DNA damage but also from ch...
R-loops, consisting of an RNA-DNA hybrid and displaced single-stranded DNA, are physiological struct...
Each cell division requires the unwinding of millions of DNA base pairs to allow chromosome duplicat...