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Molecular Biophysics
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- Molecular BiophysicsOpen Access
Cohesin SA2 is a sequence-independent DNA-binding protein that recognizes DNA replication and repair intermediates
Journal of Biological ChemistryVol. 293Issue 3p1054–1069Published online: November 24, 2017- Preston Countryman
- Yanlin Fan
- Aparna Gorthi
- Hai Pan
- Jack Strickland
- Parminder Kaur
- and others
Cited in Scopus: 22Proper chromosome alignment and segregation during mitosis depend on cohesion between sister chromatids, mediated by the cohesin protein complex, which also plays crucial roles in diverse genome maintenance pathways. Current models attribute DNA binding by cohesin to entrapment of dsDNA by the cohesin ring subunits (SMC1, SMC3, and RAD21 in humans). However, the biophysical properties and activities of the fourth core cohesin subunit SA2 (STAG2) are largely unknown. Here, using single-molecule atomic force and fluorescence microscopy imaging as well as fluorescence anisotropy measurements, we established that SA2 binds to both dsDNA and ssDNA, albeit with a higher binding affinity for ssDNA.