During natural transformation Bacillus subtilis RecA, polymerized onto the incoming single-stranded (ss) DNA, catalyses DNA strand invasion resulting in a displacement loop (D-loop) intermediate. A null radA mutation impairs chromosomal transformation, and RadA/Sms unwinds forked DNA in the 5′→3′ direction. We show that in the absence of RadA/Sms competent cells require the RecG translocase for natural chromosomal transformation. RadA/Sms tetracysteine motif (C13A and C13R) variants, which fail to interact with RecA, are also deficient in plasmid transformation, but this defect is suppressed by inactivating recA. The RadA/Sms C13A and C13R variants bind ssDNA, and this interaction stimulates their ATPase activity. Wild-type (wt) RadA/Sms in...
The efficiency of horizontal gene transfer, which contributes to acquisition and spread of antibioti...
The efficiency of horizontal gene transfer, which contributes to acquisition and spread of antibioti...
Bacillus subtilis diadenylate cyclase DisA converts two ATPs into c-di-AMP, but this activity is sup...
Bacillus subtilis radA is epistatic to disA and recA genes in response to methyl methane sulfonate- ...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias, Departam...
Genetic data have revealed that the absence of Bacillus subtilis RecO and one of the end-processing ...
Ubiquitous RarA AAA+ ATPases play crucial roles in the cellular response to blocked replication fork...
Natural chromosomal transformation is one of the primary driving forces of bacterial evolution. This...
Natural plasmid transformation plays an important role in the dissemination of antibiotic resistance...
Bacillus subtilis DprA and RecX proteins, which interact with RecA, are crucial for efficient chromo...
Natural chromosomal transformation (CT) plays a major role in prokaryote evolution, yet factors that...
Ubiquitous RarA AAA+ ATPases play crucial roles in the cellular response to blocked replication fork...
<p>Natural plasmid transformation plays an important role in the dissemination of antibiotic resista...
RecA plays a central role in DNA repair and is a main actor involved in homologous recombination (HR...
RecA plays a central role in DNA repair and is a main actor involved in homologous recombination (HR...
The efficiency of horizontal gene transfer, which contributes to acquisition and spread of antibioti...
The efficiency of horizontal gene transfer, which contributes to acquisition and spread of antibioti...
Bacillus subtilis diadenylate cyclase DisA converts two ATPs into c-di-AMP, but this activity is sup...
Bacillus subtilis radA is epistatic to disA and recA genes in response to methyl methane sulfonate- ...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias, Departam...
Genetic data have revealed that the absence of Bacillus subtilis RecO and one of the end-processing ...
Ubiquitous RarA AAA+ ATPases play crucial roles in the cellular response to blocked replication fork...
Natural chromosomal transformation is one of the primary driving forces of bacterial evolution. This...
Natural plasmid transformation plays an important role in the dissemination of antibiotic resistance...
Bacillus subtilis DprA and RecX proteins, which interact with RecA, are crucial for efficient chromo...
Natural chromosomal transformation (CT) plays a major role in prokaryote evolution, yet factors that...
Ubiquitous RarA AAA+ ATPases play crucial roles in the cellular response to blocked replication fork...
<p>Natural plasmid transformation plays an important role in the dissemination of antibiotic resista...
RecA plays a central role in DNA repair and is a main actor involved in homologous recombination (HR...
RecA plays a central role in DNA repair and is a main actor involved in homologous recombination (HR...
The efficiency of horizontal gene transfer, which contributes to acquisition and spread of antibioti...
The efficiency of horizontal gene transfer, which contributes to acquisition and spread of antibioti...
Bacillus subtilis diadenylate cyclase DisA converts two ATPs into c-di-AMP, but this activity is sup...