The mechanisms that allow to circumvent replicative stress, and to resume DNA synthesis are poorly understand in Bacillus subtilis. To study the role of the diadenylate cyclase DisA and branch migration translocase (BMT) RadA/Sms in restarting a stalled replication fork, we nicked and broke the circular chromosome of an inert mature haploid spore, damaged the bases, and measured survival of reviving spores. During undisturbed ripening, nicks and breaks should repaired by pathways that do not invoke long-range end resection or genetic exchange by homologous recombination, after which DNA replication might be initiated. We found that DNA damage reduced the viability of spores that lacked DisA, BMT (RadA/Sms, RuvAB or RecG), the Hollid...
Spore formation in Bacillus subtilis is characterized by activation of RNA polymerase sigma factors,...
DNA replication is highly regulated and primarily controlled at the step of initiation. In bacteria,...
AbstractWe identified a signaling pathway that prevents initiation of sporulation in Bacillus subtil...
The mechanisms that allow to circumvent replicative stress, and to resume DNA synthesis are poorly ...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias, Departam...
Bacillus subtilis diadenylate cyclase DisA converts two ATPs into c-di-AMP, but this activity is sup...
The DNA damage checkpoint protein DisA and the branch migration translocase RecG are implicated in t...
Bacillus subtilis radA is epistatic to disA and recA genes in response to methyl methane sulfonate- ...
DNA lesions that impede fork progression cause replisome stalling and threaten genome stability. Bac...
SummaryIn response to DNA damage, cells activate checkpoint signaling cascades to control cell-cycle...
Bacterial replication, as the starting point of the cell cycle, enables the duplication of genomic ...
Oxidative stress-induced damage, including 8-oxo-guanine and apurinic/apyrimidinic (AP) DNA lesions,...
Bacterial RarA is thought to play crucial roles in the cellular response to blocked replication fork...
Bacillus subtilis RecA is important for spore resistance to DNA damage, even though spores contain a...
Coordination of DNA replication with cellular development is a crucial problem in most living organi...
Spore formation in Bacillus subtilis is characterized by activation of RNA polymerase sigma factors,...
DNA replication is highly regulated and primarily controlled at the step of initiation. In bacteria,...
AbstractWe identified a signaling pathway that prevents initiation of sporulation in Bacillus subtil...
The mechanisms that allow to circumvent replicative stress, and to resume DNA synthesis are poorly ...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias, Departam...
Bacillus subtilis diadenylate cyclase DisA converts two ATPs into c-di-AMP, but this activity is sup...
The DNA damage checkpoint protein DisA and the branch migration translocase RecG are implicated in t...
Bacillus subtilis radA is epistatic to disA and recA genes in response to methyl methane sulfonate- ...
DNA lesions that impede fork progression cause replisome stalling and threaten genome stability. Bac...
SummaryIn response to DNA damage, cells activate checkpoint signaling cascades to control cell-cycle...
Bacterial replication, as the starting point of the cell cycle, enables the duplication of genomic ...
Oxidative stress-induced damage, including 8-oxo-guanine and apurinic/apyrimidinic (AP) DNA lesions,...
Bacterial RarA is thought to play crucial roles in the cellular response to blocked replication fork...
Bacillus subtilis RecA is important for spore resistance to DNA damage, even though spores contain a...
Coordination of DNA replication with cellular development is a crucial problem in most living organi...
Spore formation in Bacillus subtilis is characterized by activation of RNA polymerase sigma factors,...
DNA replication is highly regulated and primarily controlled at the step of initiation. In bacteria,...
AbstractWe identified a signaling pathway that prevents initiation of sporulation in Bacillus subtil...