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Updated: Jun 26, 2026

Using Three-color Single-molecule FRET to Study the Correlation of Protein Interactions
Published on: January 30, 2018
Fragment molecular orbital calculations on red fluorescent proteins (DsRed and mFruits)
Naoki Taguchi1, Yuji Mochizuki, Tatsuya Nakano
1Department of Chemistry and Research Center for Smart Molecules, Rikkyo University, Toshima-ku, Tokyo 171-8501, Japan.
Abstract:
We have performed a series of fragment molecular orbital (FMO) calculations for a family of red fluorescent proteins, DsRed and mFruits. The electronic transition energies were evaluated by the method of configuration interaction singles with perturbative doubles [CIS(D)] including higher-order corrections. The calculated values were in good agreement with the corresponding experimental peak values of spectra. Additionally, the chromophore environment was systematically analyzed in terms of the interaction energies between the pigment moiety and neighboring residues. It was theoretically revealed that the electrostatic interactions play a dominant role in the DsRed chromophore, whereas the color tunings in mFruits are controlled in a more delicate fashion.
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