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Simultaneous orientation and 3D localization microscopy with a Vortex point spread function
Bridging-induced phase separation induced by cohesin SMC protein complexes
Author Correction: Testing pseudotopological and nontopological models for SMC-driven DNA loop extrusion against roadblock-traversal experiments (Scientific Reports, (2023), 13, 1, (8100), 10.1038/s41598-023-35359-2)
Intercalation-based single-molecule fluorescence assay to study DNA supercoil dynamics
CENP-A and H3 Nucleosomes Display a Similar Stability to Force-Mediated Disassembly
Condensin-driven loop extrusion on supercoiled DNA
Human centromeric CENP-A chromatin is a homotypic, octameric nucleosome at all cell cycle points
Real-time imaging of DNA loop extrusion by condensin
SMC complexes can traverse physical roadblocks bigger than their ring size
DNA-loop extruding condensin complexes can traverse one another
DNA sequence encodes the position of DNA supercoils
The supercoiling state of DNA determines the handedness of both H3 and CENP-A nucleosomes
Distinct Roles for Condensin's Two ATPase Sites in Chromosome Condensation
Testing pseudotopological and nontopological models for SMC-driven DNA loop extrusion against roadblock-traversal experiments
The emerging landscape of single-molecule protein sequencing technologies
Looping the Genome with SMC Complexes
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