Differential and Dynamic Localization of Topoisomerases in Bacillus subtilis
- 15 April 2006
- journal article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 188 (8), 3002-11
- https://doi.org/10.1128/jb.188.8.3002-3011.2006
Abstract
Visualization of topoisomerases in live Bacillus subtilis cells showed that Topo I, Topo IV, and DNA gyrase differentially localize on the nucleoids but are absent at cytosolic spaces surrounding the nucleoids, suggesting that these topoisomerases interact with many regions of the chromosome. While both subunits of Topo IV were uniformly distributed throughout the nucleoids, Topo I and gyrase formed discrete accumulations, or foci, on the nucleoids in a large fraction of the cells, which showed highly dynamic movements. Three-dimensional time lapse microscopy showed that gyrase foci accumulate and dissipate within a 1-min time scale, revealing dynamic assembly and disassembly of subcelluar topoisomerase centers. Gyrase centers frequently colocalized with the central DNA replication machinery, suggesting a major role for gyrase at the replication fork, while Topo I foci were frequently close to or colocalized with the structural maintenance of chromosomes (SMC) chromosome segregation complex. The findings suggest that different areas of supercoiling exist on the B. subtilis nucleoids, which are highly dynamic, with a high degree of positive supercoiling attracting gyrase to the replication machinery and areas of negative supercoiling at the bipolar SMC condensation centers recruiting Topo I.Keywords
This publication has 31 references indexed in Scilit:
- Genetic interaction of the SMC complex with topoisomerase IV in Bacillus subtilisMicrobiology, 2005
- Untangling intracellular DNA topologyMolecular Microbiology, 2004
- Bacterial mitosis: partitioning protein ParA oscillates in spiral‐shaped structures and positions plasmids at mid‐cellMolecular Microbiology, 2004
- An improved cyan fluorescent protein variant useful for FRETNature Biotechnology, 2004
- A Prokaryotic Condensin/Cohesin-Like Complex Can Actively Compact Chromosomes from a Single Position on the Nucleoid and Binds to DNA as a Ring-Like StructureMolecular and Cellular Biology, 2003
- Chromosomal Cohesin Forms a RingCell, 2003
- Structural Maintenance of Chromosomes Protein of Bacillus subtilis Affects Supercoiling In VivoJournal of Bacteriology, 2002
- A variant of yellow fluorescent protein with fast and efficient maturation for cell-biological applicationsNature Biotechnology, 2002
- 13S Condensin Actively Reconfigures DNA by Introducing Global Positive WritheCell, 1999
- Extensive unwinding of the plasmid template during staged enzymatic initiation of DNA replication from the origin of the Escherichia coli chromosomeCell, 1986