Kinetics of cyclobutane thymine dimer splitting by DNA photolyase directly monitored in the UV
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Summary
Monitoring cyclobutane thymine dimer repair in the main UV absorption band of intact thymine at 266 nm succeeded in monitoring the true repair kinetics and should serve as a benchmark for future efforts to model enzymatic photorepair.
- Type
- article
- Published
- 2011-05-23
- Cited by
- 85
- References
- 24
- Access
- Open access
- OpenAlex
- https://openalex.org/W2069849610
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:26337308
Keywords
Pyrimidine dimer, Photolyase, Thymine, Cyclobutane, Photochemistry
References
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- Use of ruthenium dyes for subnanosecond detector fidelity testing in real time transient absorption.
- DNA base repair--recognition and initiation of catalysis.
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- Proton Coupled Electron Transfer (PCET) in DNA on Formation of Radiation Produced Ion Radicals
- DNA Repair in Mammalian Cells
- Very Fast Product Release and Catalytic Turnover of DNA Photolyase
- Dissociative electron transfer to and from pyrimidine cyclobutane dimers: an electrochemical study.
- Accelerated deamination of cytosine residues in UV-induced cyclobutane pyrimidine dimers leads to CC-->TT transitions.
- Structure and function of DNA photolyase and cryptochrome blue-light photoreceptors.
- Dynamics and Mechanism of Repair of UV-induced (6-4) Photoproduct by Photolyase
- Model studies of DNA photorepair : energetic requirements for the radical anion mechanism determined by fluorescence quenching
- Cis-syn thymidine dimer repair by DNA photolyase in real time.
- Reaction mechanisms of DNA photolyase.
- Effect of base, pentose, and phosphodiester backbone structures on binding and repair of pyrimidine dimers by Escherichia coli DNA photolyase.
- DNA repair by photolyase: a novel substrate with low background absorption around 265 nm for transient absorption studies in the UV.
- Crystal Structure of a Photolyase Bound to a CPD-Like DNA Lesion After in Situ Repair
- A QM/MM investigation of thymine dimer radical anion splitting catalyzed by DNA photolyase.
Cited by
- Computational reference data for the photochemistry of cyclobutane pyrimidine dimers.
- Abiotic Stress - Plant Responses and Applications in Agriculture
- Photoinduced processes in nucleic acids.
- DNA damage and repair in plants – from models to crops
- Variable Electron Transfer Pathways in an Amphibian Cryptochrome
- [Ru(bpy)_3]^2+ as a reference in transient absorption spectroscopy: differential absorption coefficients for formation of the long-lived ^3MLCT excited state
- Dynamics and mechanisms of DNA repair by photolyase
- Reply to Brettel and Byrdin: On the efficiency of DNA repair by photolyase
- Structural and Evolutionary Aspects of Antenna Chromophore Usage by Class II Photolyases*
- Electron hopping through proteins
- DNA photolyases and SP lyase: structure and mechanism of light-dependent and independent DNA lyases.
- Searching for the mechanism of signalling by plant photoreceptor cryptochrome
- Femtosecond Stimulated Raman Spectroscopy of the Cyclobutane Thymine Dimer Repair Mechanism: A Computational Study
- Formation and Direct Repair of UV‐induced Dimeric DNA Pyrimidine Lesions
- Substituent effects on photosensitized splitting of thymine cyclobutane dimer by an attached indole.
- Repair of the (6-4) photoproduct by DNA photolyase requires two photons.
- New QM/MM implementation of the DFTB3 method in the gromacs package
- DNA repair by reversal of DNA damage.
- Electron transfer mechanisms of DNA repair by photolyase.
- DNA photolyase: Is the nonproductive back electron transfer really much slower than forward transfer?
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- PHOTOREACTIVATION OF CYCLOBUTANE DIMERS AND (6–4) PHOTOPRODUCTS IN THE EPIDERMIS OF THE MARSUPIAL, Monodelphis domestica
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