Journal of Biological Chemistry · 2002 · 67 citations · 32 references
DNA Photolyase is a flavoprotein that uses light to repair cyclobutylpyrimidine dimers in DNA. From considerations of the crystal structure of the protein, it has been hypothesized that the dimer lesion is flipped out of the DNA double helix into the substrate binding pocket. We have used a fluorescent adenine analog, 2-aminopurine (2-Ap), as a probe of local double helical structure upon binding of the substrate to the protein. Our results show that the local structure around the thymidine lesion changes dramatically upon binding to Photolyase. This is consistent with base flipping of the lesion into the protein binding cavity with concomitant destacking of the opposing complementary 2-Ap nucleotide.
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Sunburn and p53 in the onset of skin cancer
Annemarie Ziegler, Alan S. Jonason, David J. Leffellt et al. · Nature · 1994 · 1.5K citations
Fluorescence Studies of Nucleotides and Polynucleotides
David C. Ward, E. Reich, Lubert Stryer · Journal of Biological Chemistry · 1969 · 606 citations · Full text
Dna, Engineering, Molecular Biology +18
Crystal Structure of DNA Photolyase from <i>Escherichia coli</i>
Hee-Won Park, Sang‐Tae Kim, Aziz Sancar et al. · Science · 1995 · 576 citations