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1. Chromosome remodelling by SMC/Condensin in B. subtilis is regulated by monomeric Soj/ParA during growth and sporulation.

2. Nse5/6 inhibits the Smc5/6 ATPase and modulates DNA substrate binding

3. Phospho-regulation of the Shugoshin - Condensin interaction at the centromere in budding yeast.

4. Control of Smc Coiled Coil Architecture by the ATPase Heads Facilitates Targeting to Chromosomal ParB/parS and Release onto Flanking DNA

5. A joint-ParB interface promotes Smc DNA recruitment.

6. Kite Proteins: a Superfamily of SMC/Kleisin Partners Conserved Across Bacteria, Archaea, and Eukaryotes.

7. SMC condensin entraps chromosomal DNA by an ATP hydrolysis dependent loading mechanism in Bacillus subtilis.

8. Interlinked Sister Chromosomes Arise in the Absence of Condensin during Fast Replication in B. subtilis.

9. An asymmetric SMC-kleisin bridge in prokaryotic condensin.

10. Gradual opening of Smc arms in prokaryotic condensin.

11. Relief of ParB autoinhibition by parS DNA catalysis and recycling of ParB by CTP hydrolysis promote bacterial centromere assembly

12. Transient DNA Occupancy of the SMC Interarm Space in Prokaryotic Condensin.

13. Molecular Basis for SMC Rod Formation and Its Dissolution upon DNA Binding.

14. Structure of Full-Length SMC and Rearrangements Required for Chromosome Organization.

15. Tuned SMC Arms Drive Chromosomal Loading of Prokaryotic Condensin.

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