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September 10, 2025Communications Chemistry1 citationsOpen Access

Infrared and ultraviolet spectroscopic characterization of a key intermediate during DNA repair by (6-4) photolyase

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DYDaichi YamadaAKAi KadonoTMTakashi Maéno

Key Points

  • The study identifies a long-lived oxetane intermediate that forms within 500 µs after the photolyase absorbs the first photon.
  • Time-resolved UV and infrared spectroscopy revealed details of the intermediate linked to the complex repair process of DNA.
  • These findings enhance the understanding of the mechanism underlying the action of (6-4) photolyases in DNA repair.
  • Understanding these processes could be crucial for insights into repairing genotoxic lesions from UV exposure.

Abstract

Ultraviolet (UV) irradiation of DNA causes genotoxic photolesions, such as carcinogenic pyrimidine(6-4)pyrimidone photoproducts ((6-4)PPs). In many organisms, (6-4)PPs are repaired by (6-4) photolyases, which contain a flavin chromophore and use blue light energy to initiate the catalytic reaction. Although (6-4)PP repair has been shown to require the input of two successive photons, details of the mechanism remain elusive. Here, we applied recently developed time-resolved UV and infrared (IR) spectroscopic techniques to capture a key intermediate that awaits the second photon in the repair reaction of Xenopus laevis (6-4) photolyase. The results indicate that the intermediate is formed within 500 μs following the initial absorption of a photon and contains a four-membered oxetane ring that bridges two adjacent pyrimidine bases. These findings shed light on the molecular basis of DNA repair involving two-photon activation. (6-4) photolyases repair carcinogenic pyrimidine(6-4)pyrimidone photoproducts, a process that requires two successive photons but whose mechanistic details remain elusive. Here, the authors use time-resolved ultraviolet and infrared spectroscopy to identify a long-lived oxetane intermediate formed within 500 µs after absorption of the first photon by Xenopus laevis (6-4) photolyase.

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Cite This Study

Yamada et al. (2025) studied this question.

synapsesocial.com/papers/68c1d60654b1d3bfb60f96a9https://doi.org/10.1038/s42004-025-01625-9
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Also Consider

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

  1. 1Kinetics of Electron Returns in Successive Two-Photon DNA Repair by (6-4) Photolyase2022 · 11 citations
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  5. 5Differential biologic effects of CPD and 6-4PP UV-induced DNA damage on the induction of apoptosis and cell-cycle arrest2005 · 159 citations