Communications Chemistry · 2018 · 21 citations · 42 references
Identical ChromophoresArtificial PhotosynthesisPhotochemistryBioenergeticsMechanistic PhotochemistryMolecular BiologyMolecular SwitchExcitation Energy TransferEnergy MigrationAbstract Energy MigrationBiophotonicsMedicinePhotosynthesisPhotophysical PropertySingle-molecule DetectionBiophysicsQuantitative EvaluationHealth Sciences
Abstract Energy migration between the identical chromophores is a necessary process in both natural and artificial photosynthesis. The distance and orientation dependence of energy migration have not been experimentally investigated in detail. Here we propose a method to investigate energy migration. Two fluorophores are introduced into one strand of a DNA duplex with a quencher placed opposite one of fluorophores. This design enables asymmetrization of identical fluorophores and allows one fluorophore to behave as an acceptor. The emission intensities and lifetimes decrease depending on the efficiency of energy migration. Distance and orientation dependence are successfully quantified, and the excitation energy migration efficiencies measured are in excellent agreement with those calculated based on Förster theory. We also demonstrate that multi-step energy migration among four fluorophores can be estimated from the theory. These results may provide a basis for design and preparation of efficient light-harvesting photonic devices and chemical probes.
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Structure of a B-DNA dodecamer
Horace R. Drew, Richard E. Dickerson · Journal of Molecular Biology · 1981 · 915 citations
Structure of a B-DNA dodecamer
Richard E. Dickerson, Horace R. Drew · Journal of Molecular Biology · 1981 · 892 citations
The Anatomy of A-, B-, and Z-DNA
Richard E. Dickerson, Horace R. Drew, Benjamin N. Conner et al. · Science · 1982 · 653 citations
Dna, Genetics, Dna Analysis +17