Abstract
DNA replication results in interlinked (catenated) sister duplex molecules as a consequence of the inter-twined helices that comprise duplex DNA. DNA topoisomerases play key roles in decatenation. We demonstrate a novel, efficient and directional decatenation process in vitro, which uses the combination of the Escherichia coli XerCD site-specific recombination system and a protein, FtsK, which facilitates simple synapsis of dif recombination sites during its translocation along DNA. We propose that the FtsK-XerCD recombination machinery, which converts chromosomal dimers to monomers, may also function in vivo in removing the final catenation links remaining upon completion of DNA replication.
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Ip, S. C. Y., Bregu, M., Barre, F. X., & Sherratt, D. J. (2003). Decatenation of DNA circles by FtsK-dependent Xer site-specific recombination. EMBO Journal, 22(23), 6399–6407. https://doi.org/10.1093/emboj/cdg589
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