To ensure accurate duplication of genetic material, the replication fork must overcome numerous natural obstacles on its way, including transcription complexes engaged along the same template. Here we review the various levels of interdependence between transcription and replication processes and how different types of encounters between RNA-and DNA-polymerase complexes may result in clashes of those machineries on the DNA template and thus increase genomic instability. In addition, we summarize strategies evolved in bacteria and eukaryotes to minimize the consequences of collisions, including R-loop formation and topological stresses. © 2013 Nature America, Inc. All rights reserved
Nuclear DNA replication requires the concerted action of hundreds of proteins to efficiently unwind ...
Genome replication involves dealing with obstacles that can result from DNA damage but also from chr...
Duplication of the eukaryotic genome occurs in the context of a chromatin template that is actively ...
Transcription-replication interactions occur when DNA replication encounters genomic regions undergo...
Transcription-replication interactions occur when DNA replication encounters genomic regions undergo...
The frequent occurrence of transcription and DNA replication in cells results in many encounters, an...
DNA and RNA polymerases clash along the genome as they compete for the same DNA template. Cells have...
The frequent occurrence of transcription and DNA replication in cells results in many encounters, an...
DNA topological transitions occur when replication forks encounter other DNA transactions such as tr...
Abstract: Replication and transcription are key aspects of DNA metabolism that take place on the sam...
Transcription and replication are the two most essential processes that a cell does with its DNA: th...
Genome replication involves dealing with obstacles that can result from DNA damage but also from chr...
Genome replication involves dealing with obstacles that can result from DNA damage but also from ch...
Transcription-replication conflicts occur when the two critical cellular machineries responsible for...
Because DNA replication and transcription occur on the same DNA template, encounters between the two...
Nuclear DNA replication requires the concerted action of hundreds of proteins to efficiently unwind ...
Genome replication involves dealing with obstacles that can result from DNA damage but also from chr...
Duplication of the eukaryotic genome occurs in the context of a chromatin template that is actively ...
Transcription-replication interactions occur when DNA replication encounters genomic regions undergo...
Transcription-replication interactions occur when DNA replication encounters genomic regions undergo...
The frequent occurrence of transcription and DNA replication in cells results in many encounters, an...
DNA and RNA polymerases clash along the genome as they compete for the same DNA template. Cells have...
The frequent occurrence of transcription and DNA replication in cells results in many encounters, an...
DNA topological transitions occur when replication forks encounter other DNA transactions such as tr...
Abstract: Replication and transcription are key aspects of DNA metabolism that take place on the sam...
Transcription and replication are the two most essential processes that a cell does with its DNA: th...
Genome replication involves dealing with obstacles that can result from DNA damage but also from chr...
Genome replication involves dealing with obstacles that can result from DNA damage but also from ch...
Transcription-replication conflicts occur when the two critical cellular machineries responsible for...
Because DNA replication and transcription occur on the same DNA template, encounters between the two...
Nuclear DNA replication requires the concerted action of hundreds of proteins to efficiently unwind ...
Genome replication involves dealing with obstacles that can result from DNA damage but also from chr...
Duplication of the eukaryotic genome occurs in the context of a chromatin template that is actively ...