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February 19, 2026Nature Communications2 citationsOpen Access

Supercoiled DNA recognition and cleavage control in topoisomerase VI

DRDaniel E. RichmanTWTimothy J. WendorffFRFahad Rashid

Key Points

  • The research aims to understand how Topoisomerase VI interacts with supercoiled DNA and regulates cleavage.
  • Utilized single-particle electron cryo-microscopy to determine the structures of Top6 and DNA bound states.
  • Analyzed the binding of Top6 to supercoiled minicircle DNA in both cleaved and uncleaved configurations.
  • Investigated the dynamic interactions between proteins and DNA and their effects on cleavage state.
  • Showed that Top6 binds a specific curved region of DNA and cuts at a deformability motif.
  • Highlighted that DNA plasticity influences the enzyme's preference for supercoiled substrates.
  • Identified an unexpected tension sensor that aids in recognizing bent DNA during cleavage.

Abstract

Abstract Type II topoisomerases modulate DNA supercoiling and resolve chromosome entanglements. Type IIB topoisomerases, exemplified by DNA topoisomerase VI (Top6), are used by plants and archaea to support endoreduplication and cell proliferation, respectively; homologs of Top6 further serve to initiate meiotic recombination in eukaryotes and constitute the nuclease portion of MksBEFG/Wadjet/Gabija bacterial defense systems. To understand how such factors act upon DNA, we determine structures of Top6 bound to supercoiled minicircles in cleaved and uncleaved states using single-particle electron cryo-microscopy. The structures show that Top6 binds a curved 74 bp region of the supercoiled minicircle DNA and that it cuts at a distinct deformability motif, explaining its preference for supercoiled substrates and highlighting the role of DNA plasticity in cleavage site selection. Dynamic protein-DNA interactions and an unanticipated tension sensor help recognize bent DNA and couple ATPase disposition to cleavage state activation. Our observations explain how DNA recognition and cleavage by type II topoisomerases are regulated by interdependent structural changes in DNA and the enzyme.

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Cite This Study

Richman et al. (2026) studied this question.

synapsesocial.com/papers/6996a7ffecb39a600b3ee495https://doi.org/10.1038/s41467-026-69491-0
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1BPS2026 – Sequence-dependent DNA conformational basis for sequence-specific cleavage by type II topoisomerases2026
  2. 2Structural insights into the assembly of type IIA topoisomerase DNA cleavage-religation center2024 · 2 citations
  3. 3Phylogenetic distribution of DNA topoisomerase VI and its distinction from SPO112024 · 3 citations
  4. 4Biochemical characterization of the meiosis-essential yet evolutionarily divergent topoisomerase VIB-like protein MTOPVIB from <i>Arabidopsis thaliana</i>2024 · 3 citations
  5. 5Inhibition of topoisomerase 2 catalytic activity impacts the integrity of heterochromatin and repetitive DNA and leads to interlinks between clustered repeats2024 · 22 citations