To properly segregate their chromosomes, organisms tightly regulate the organization and dynamics of their DNA. Aspects of the process by which DNA is translocated during sporulation are not yet fully understood, such as what factors indirectly influence the activity of the motor protein SpoIIIE. In this work, we have shown that a DNA-membrane tether mediated by RacA contributes to the activity of SpoIIIE. Loss of RacA nearly doubles the time of translocation, despite the physically distinct locations these proteins and their activities occupy within the cell. This is a rare example of an explicit effect that DNA-membrane connections can have on cell physiology and demonstrates that distant changes to the state of the chromosome can influen...
The SpoIIIE protein of Bacillus subtilis is required for chromosome segregation during spore formati...
The process by which Bacillus subtilis changes from vegetative growth into a distinct developmental ...
SummarySporulation in Bacillus subtilis requires asymmetric cell division, chromosome transfer into ...
ABSTRACT Chromosome segregation in sporulating Bacillus subtilis involves the tethering of sister ch...
SpoIIIE is a membrane-anchored DNA translocase that localizes to the septal midpoint to mediate chro...
AbstractSporulation in Bacillus subtilis is an attractive system in which to study the translocation...
SpoIIIE is a membrane-anchored DNA translocase that localizes to the septal midpoint to mediate chro...
AbstractSporulation in Bacillus subtilis is an attractive system in which to study the translocation...
Specialized mechanisms involved in chromosome segregation, septum placement, and chromosome dimer r...
SummaryThe FtsK/SpoIIIE family of ATP-dependent DNA transporters mediates proper chromosome segregat...
ATP-fuelled molecular motors are responsible for rapid and specific transfer of double-stranded DNA ...
<div><p></p><p>ATP-fuelled molecular motors are responsible for rapid and specific transfer of doubl...
Spore formation in Bacillus subtilis begins with an asymmetric cell division that superficially rese...
Spore formation in Bacillus subtilis begins with an asymmetric cell division that superficially rese...
SpoIIIE directionally pumps DNA across membranes during Bacillus subtilis sporulation and vegetative...
The SpoIIIE protein of Bacillus subtilis is required for chromosome segregation during spore formati...
The process by which Bacillus subtilis changes from vegetative growth into a distinct developmental ...
SummarySporulation in Bacillus subtilis requires asymmetric cell division, chromosome transfer into ...
ABSTRACT Chromosome segregation in sporulating Bacillus subtilis involves the tethering of sister ch...
SpoIIIE is a membrane-anchored DNA translocase that localizes to the septal midpoint to mediate chro...
AbstractSporulation in Bacillus subtilis is an attractive system in which to study the translocation...
SpoIIIE is a membrane-anchored DNA translocase that localizes to the septal midpoint to mediate chro...
AbstractSporulation in Bacillus subtilis is an attractive system in which to study the translocation...
Specialized mechanisms involved in chromosome segregation, septum placement, and chromosome dimer r...
SummaryThe FtsK/SpoIIIE family of ATP-dependent DNA transporters mediates proper chromosome segregat...
ATP-fuelled molecular motors are responsible for rapid and specific transfer of double-stranded DNA ...
<div><p></p><p>ATP-fuelled molecular motors are responsible for rapid and specific transfer of doubl...
Spore formation in Bacillus subtilis begins with an asymmetric cell division that superficially rese...
Spore formation in Bacillus subtilis begins with an asymmetric cell division that superficially rese...
SpoIIIE directionally pumps DNA across membranes during Bacillus subtilis sporulation and vegetative...
The SpoIIIE protein of Bacillus subtilis is required for chromosome segregation during spore formati...
The process by which Bacillus subtilis changes from vegetative growth into a distinct developmental ...
SummarySporulation in Bacillus subtilis requires asymmetric cell division, chromosome transfer into ...