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May 13, 2026Nucleic Acids Research2 citationsOpen Access

Linker-mediated conformational coupling drives lesion recognition in MutY glycosylase

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HKHyeonjun KimMLManho LimYPYoungshang Pak

Key Points

  • This research aims to elucidate the mechanisms by which MutY glycosylase recognizes oxidative DNA lesions.
  • Utilized large-scale enhanced-sampling molecular dynamics simulations.
  • Mapped free energy landscapes of lesion recognition process.
  • Explored the dynamic steps connecting the encounter complex and lesion recognition complex.
  • Identified a dominant pathway for lesion recognition involving synchronized glycosidic rotations.
  • Revealed how a flexible interdomain linker coordinates adenine flipping and isomerization.
  • Demonstrated the linker’s role in stabilizing the catalytically competent lesion recognition complex.

Abstract

Maintaining genome stability requires accurate recognition of oxidative DNA damage. MutY glycosylase prevents mutagenic G:C→T:A transversions by excising adenine mispaired with 8-oxoguanine (8OG). While crystal structures have captured two endpoint states-the encounter complex (EC) and the lesion recognition complex (LRC)-the dynamic steps connecting these states have remained unresolved. Using large-scale enhanced-sampling molecular dynamics simulations, we mapped the free energy landscapes of lesion recognition and identified a dominant pathway in which adenine and 8OG undergo synchronized glycosidic rotations orchestrated by a flexible interdomain linker. This linker coordinates adenine flipping, dual base isomerization, and interdomain rearrangements into a unified, streamlined process that secures extrahelical adenine in a catalytically competent LRC state. These findings reveal a previously unrecognized mechanistic framework for MutY and related glycosylases with flexible linkers, highlighting how such linkers guide lesion interrogation and reinforce genome integrity.

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Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/6a03cb9d1c527af8f1ecf5b0https://doi.org/10.1093/nar/gkag483
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