SummaryThe bacterial SMC (structural maintenance of chromosomes) complex binds nonspecifically to DNA in vitro and forms two discrete subcellular centers in vivo, one in each cell half. How this distribution is maintained is unclear. We show by time-lapse imaging of single molecules that the localization is achieved through limited, yet rapid movement of the SMC subunits through the nucleoid. Accessory ScpAB subunits mediate the arrest of 20% of SMC molecules at the center of a cell half and do not move together with the 80% mobile SMC molecules. Only free SMC, but not the preformed SMC/ScpAB complex, was able to bind to DNA in vitro, revealing distinct functions of SMC fractions. Thus, whereas SMC alone dynamically interacts with many site...
SummaryIn many bacteria, a homodimer of structural-maintenance-of-chromosomes proteins associates wi...
Structural maintenance of chromosomes (SMC) complexes play critical roles in chromosome dynamics in ...
Bacteria transcribe, duplicate and segregate their genomes all at once. Conflicts between DNA replic...
SummaryThe bacterial SMC (structural maintenance of chromosomes) complex binds nonspecifically to DN...
SMC complexes are widely conserved ATP-powered DNA-loop-extrusion motors indispensable for organizin...
Genome maintenance requires various nucleoid‐associated factors in prokaryotes. Among them, the SMC ...
SummarySmc/ScpAB promotes chromosome segregation in prokaryotes, presumably by compacting and resolv...
SMC complexes are widely conserved ATP-powered DNA-loop-extrusion motors indispensable for organizin...
Chromosome organization and dynamics is regulated in all domains of life by the Structural Maintenan...
SMC (structural maintenance of chromosomes) family members play essential roles in chromosome conden...
Smc/ScpAB promotes chromosome segregation in prokaryotes, presumably by compacting and resolving nas...
Structural Maintenance of Chromosomes (SMC) protein complexes are found in all three domains of life...
All living cells have to master the extraordinarily extended and tangly nature of genomic DNA molecu...
All living cells have to master the extraordinarily extended and tangly nature of genomic DNA molecu...
Chromosome cohesion and condensation are essential prerequisites of proper segregation of genomes du...
SummaryIn many bacteria, a homodimer of structural-maintenance-of-chromosomes proteins associates wi...
Structural maintenance of chromosomes (SMC) complexes play critical roles in chromosome dynamics in ...
Bacteria transcribe, duplicate and segregate their genomes all at once. Conflicts between DNA replic...
SummaryThe bacterial SMC (structural maintenance of chromosomes) complex binds nonspecifically to DN...
SMC complexes are widely conserved ATP-powered DNA-loop-extrusion motors indispensable for organizin...
Genome maintenance requires various nucleoid‐associated factors in prokaryotes. Among them, the SMC ...
SummarySmc/ScpAB promotes chromosome segregation in prokaryotes, presumably by compacting and resolv...
SMC complexes are widely conserved ATP-powered DNA-loop-extrusion motors indispensable for organizin...
Chromosome organization and dynamics is regulated in all domains of life by the Structural Maintenan...
SMC (structural maintenance of chromosomes) family members play essential roles in chromosome conden...
Smc/ScpAB promotes chromosome segregation in prokaryotes, presumably by compacting and resolving nas...
Structural Maintenance of Chromosomes (SMC) protein complexes are found in all three domains of life...
All living cells have to master the extraordinarily extended and tangly nature of genomic DNA molecu...
All living cells have to master the extraordinarily extended and tangly nature of genomic DNA molecu...
Chromosome cohesion and condensation are essential prerequisites of proper segregation of genomes du...
SummaryIn many bacteria, a homodimer of structural-maintenance-of-chromosomes proteins associates wi...
Structural maintenance of chromosomes (SMC) complexes play critical roles in chromosome dynamics in ...
Bacteria transcribe, duplicate and segregate their genomes all at once. Conflicts between DNA replic...