AbstractTranscription during S phase needs to be spatially and temporally regulated to prevent collisions between the transcription and replication machineries. Cells have evolved a number of mechanisms to make both processes compatible under normal growth conditions. When conflict management fails, the head-on encounter between RNA and DNA polymerases results in genomic instability unless conflict resolution mechanisms are activated. Nevertheless, there are specific situations in which cells need to dramatically change their transcriptional landscape to adapt to environmental challenges. Signal transduction pathways, such as stress-activated protein kinases (SAPKs), serve to regulate gene expression in response to environmental insults. Pr...
Coincident transcription and DNA replication causes replication stress and genome instability. Rapid...
DNA and RNA polymerases clash along the genome as they compete for the same DNA template. Cells have...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Transcription during S phase needs to be spatially and temporally regulated to prevent collisions be...
AbstractTranscription during S phase needs to be spatially and temporally regulated to prevent colli...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Resumen del póster presentado al 1st Joint Meeting of the French-Portuguese-Spanish Biochemical and ...
In response to multiple internal and external stresses, yeast cells activate a common transcriptiona...
Checkpoint activation during S phase modulates transcription. In response to replication arrest, the...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Checkpoint activation during S phase modulates transcription. In response to replication arrest, the...
Conflicts between replication and transcription machineries represent a major source of genomic inst...
Cells trigger massive changes in gene expression upon environmental fluctuations. The Hog1 stress-ac...
For efficient transcription, RNA PolII must overcome the presence of nucleosomes. The p38-related MA...
Cells are subjected to dramatic changes of gene expression upon environmental changes. Stress/ncause...
Coincident transcription and DNA replication causes replication stress and genome instability. Rapid...
DNA and RNA polymerases clash along the genome as they compete for the same DNA template. Cells have...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Transcription during S phase needs to be spatially and temporally regulated to prevent collisions be...
AbstractTranscription during S phase needs to be spatially and temporally regulated to prevent colli...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Resumen del póster presentado al 1st Joint Meeting of the French-Portuguese-Spanish Biochemical and ...
In response to multiple internal and external stresses, yeast cells activate a common transcriptiona...
Checkpoint activation during S phase modulates transcription. In response to replication arrest, the...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
Checkpoint activation during S phase modulates transcription. In response to replication arrest, the...
Conflicts between replication and transcription machineries represent a major source of genomic inst...
Cells trigger massive changes in gene expression upon environmental fluctuations. The Hog1 stress-ac...
For efficient transcription, RNA PolII must overcome the presence of nucleosomes. The p38-related MA...
Cells are subjected to dramatic changes of gene expression upon environmental changes. Stress/ncause...
Coincident transcription and DNA replication causes replication stress and genome instability. Rapid...
DNA and RNA polymerases clash along the genome as they compete for the same DNA template. Cells have...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...