4.6 Article

Electrostatic spectral tuning mechanism of the green fluorescent protein

期刊

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
卷 15, 期 13, 页码 4491-4495

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c3cp00058c

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资金

  1. European Molecular Biology Organization (EMBO)
  2. National Institutes of Health, National Institute of Diabetes and Digestive and Kidney Diseases
  3. Academy of Finland
  4. Center for Functional Nanostructures (CFN) of the Deutsche Forschungsgemeinschaft (DFG) [C3.9]
  5. HPC-EUROPA2 project [228398]
  6. European Commission-Capacities Area-Research Infrastructures

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Understanding the mechanism of spectral tuning of biological chromophores is a major challenge in photobiology. We show here using large-scale full quantum chemical calculations of the green fluorescent protein that state-of-the-art coupled-cluster calculations provide accurate excitation energies and detailed insight about specific environmental effects. We obtain vertical excitation energies of 3.13 eV (396 nm) and 2.68 eV (463 nm), which are in quantitative agreement with the experimental absorption energies of 3.12 eV (397 nm) and 2.61 eV (475 nm) for the A-and B-forms of the protein. We find that the protein environment redshifts the absorption spectra by similar to 0.56 eV and similar to 0.22 eV for the two states, which can be attributed to similar to 80% electrostatic effects and similar to% steric effects.

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