SummaryDNA replication is highly regulated in most organisms. Although much research has focused on mechanisms that regulate initiation of replication, mechanisms that regulate elongation of replication are less well understood. We characterized a mechanism that regulates replication elongation in the bacterium Bacillus subtilis. Replication elongation was inhibited within minutes after amino acid starvation, regardless of where the replication forks were located on the chromosome. We found that small nucleotides ppGpp and pppGpp, which are induced upon starvation, appeared to inhibit replication directly by inhibiting primase, an essential component of the replication machinery. The replication forks arrested with (p)ppGpp did not recruit ...
International audienceDNA replication is coupled to growth by an unknown mechanism. Here, we investi...
Includes bibliographical references (pages 60-63)How organisms survive starvation is poorly understo...
<div><p>Bacteria can arrest their own growth and proliferation upon nutrient depletion and under var...
DNA replication is highly regulated in most organisms. Although much research has focused on mechani...
To survive bouts of starvation, cells must inhibit DNA replication. In bacteria, starvation triggers...
<div><p>In many bacteria the rate of DNA replication is linked with cellular physiology to ensure th...
The stringent response enables bacteria to respond to a variety of environmental stresses, especiall...
DNA replication is highly regulated and primarily controlled at the step of initiation. In bacteria,...
ABSTRACT The stringent response enables bacteria to respond to a variety of environmental stresses, ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2006."September 2006."Incl...
The bacterial signaling molecules ppGpp and pppGpp regulate transcription initiation in response to ...
Bacteria have adapted to diverse environments, which are often unpredictable and constantly changing...
Bacteria have adapted to diverse environments, which are often unpredictable and constantly changing...
The bacterial signaling molecules ppGpp and pppGpp regulate transcription initiation in response to ...
International audienceDNA replication is coupled to growth by an unknown mechanism. Here, we investi...
International audienceDNA replication is coupled to growth by an unknown mechanism. Here, we investi...
Includes bibliographical references (pages 60-63)How organisms survive starvation is poorly understo...
<div><p>Bacteria can arrest their own growth and proliferation upon nutrient depletion and under var...
DNA replication is highly regulated in most organisms. Although much research has focused on mechani...
To survive bouts of starvation, cells must inhibit DNA replication. In bacteria, starvation triggers...
<div><p>In many bacteria the rate of DNA replication is linked with cellular physiology to ensure th...
The stringent response enables bacteria to respond to a variety of environmental stresses, especiall...
DNA replication is highly regulated and primarily controlled at the step of initiation. In bacteria,...
ABSTRACT The stringent response enables bacteria to respond to a variety of environmental stresses, ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2006."September 2006."Incl...
The bacterial signaling molecules ppGpp and pppGpp regulate transcription initiation in response to ...
Bacteria have adapted to diverse environments, which are often unpredictable and constantly changing...
Bacteria have adapted to diverse environments, which are often unpredictable and constantly changing...
The bacterial signaling molecules ppGpp and pppGpp regulate transcription initiation in response to ...
International audienceDNA replication is coupled to growth by an unknown mechanism. Here, we investi...
International audienceDNA replication is coupled to growth by an unknown mechanism. Here, we investi...
Includes bibliographical references (pages 60-63)How organisms survive starvation is poorly understo...
<div><p>Bacteria can arrest their own growth and proliferation upon nutrient depletion and under var...