SummarySmc/ScpAB promotes chromosome segregation in prokaryotes, presumably by compacting and resolving nascent sister chromosomes. The underlying mechanisms, however, are poorly understood. Here, we investigate the role of the Smc ATPase activity in the recruitment of Smc/ScpAB to the Bacillus subtilis chromosome. We demonstrate that targeting of Smc/ScpAB to ParB/parS loading sites is strictly dependent on engagement of Smc head domains and relies on an open organization of the Smc coiled coils. We find that dimerization of the Smc hinge domain stabilizes closed Smc rods and hinders head engagement as well as chromosomal targeting. Conversely, the ScpAB sub-complex promotes head engagement and Smc rod opening and thereby facilitates recru...
SMC complexes are widely conserved ATP-powered DNA-loop-extrusion motors indispensable for organizin...
SummaryIn many bacteria, a homodimer of structural-maintenance-of-chromosomes proteins associates wi...
SMC complexes are widely conserved ATP-powered DNA-loop-extrusion motors indispensable for organizin...
Smc/ScpAB promotes chromosome segregation in prokaryotes, presumably by compacting and resolving nas...
SummarySmc/ScpAB promotes chromosome segregation in prokaryotes, presumably by compacting and resolv...
Multi-subunit SMC complexes control chromosome superstructure and promote chromosome disjunction, co...
Structural maintenance of chromosomes (SMC) proteins play fundamental roles in higher-order chromoso...
Multi-subunit SMC complexes control chromosome superstructure and promote chromosome disjunction, co...
Multi-subunit SMC ATPases control chromosome superstructure apparently by catalyzing a DNA-loop-extr...
Multi-subunit SMC ATPases control chromosome superstructure apparently by catalyzing a DNA-loop-extr...
Structural maintenance of chromosomes (SMC) proteins are central regulators of higher-order chromoso...
Multi-subunit SMC ATPases control chromosome superstructure and DNA topology, presumably by DNA tran...
Multi-subunit SMC ATPases control chromosome superstructure and DNA topology, presumably by DNA tran...
Smc–ScpAB forms elongated, annular structures that promote chromosome segrega- tion, presumably by c...
SMC proteins support vital cellular processes in all domains of life by organizing chromosomal DNA. ...
SMC complexes are widely conserved ATP-powered DNA-loop-extrusion motors indispensable for organizin...
SummaryIn many bacteria, a homodimer of structural-maintenance-of-chromosomes proteins associates wi...
SMC complexes are widely conserved ATP-powered DNA-loop-extrusion motors indispensable for organizin...
Smc/ScpAB promotes chromosome segregation in prokaryotes, presumably by compacting and resolving nas...
SummarySmc/ScpAB promotes chromosome segregation in prokaryotes, presumably by compacting and resolv...
Multi-subunit SMC complexes control chromosome superstructure and promote chromosome disjunction, co...
Structural maintenance of chromosomes (SMC) proteins play fundamental roles in higher-order chromoso...
Multi-subunit SMC complexes control chromosome superstructure and promote chromosome disjunction, co...
Multi-subunit SMC ATPases control chromosome superstructure apparently by catalyzing a DNA-loop-extr...
Multi-subunit SMC ATPases control chromosome superstructure apparently by catalyzing a DNA-loop-extr...
Structural maintenance of chromosomes (SMC) proteins are central regulators of higher-order chromoso...
Multi-subunit SMC ATPases control chromosome superstructure and DNA topology, presumably by DNA tran...
Multi-subunit SMC ATPases control chromosome superstructure and DNA topology, presumably by DNA tran...
Smc–ScpAB forms elongated, annular structures that promote chromosome segrega- tion, presumably by c...
SMC proteins support vital cellular processes in all domains of life by organizing chromosomal DNA. ...
SMC complexes are widely conserved ATP-powered DNA-loop-extrusion motors indispensable for organizin...
SummaryIn many bacteria, a homodimer of structural-maintenance-of-chromosomes proteins associates wi...
SMC complexes are widely conserved ATP-powered DNA-loop-extrusion motors indispensable for organizin...