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Time-dependent density-functional approach for biological chromophores: the case of the green fluorescent protein

M. Marques, X. López, D. Varsano, A. Castro, A. Rubio

Physical Review Letters, 90, 258101, (2003)

DOI: 10.1103/physrevlett.90.258101

Download: BibTEX

We performed first-principles calculations of the optical response of the green fluorescent protein (GFP) within a combined quantum-mechanical molecular-mechanics and time-dependent density-functional theory approach. The computed spectra are in excellent agreement with experiments assuming the presence of two, protonated and deprotonated, forms of the photoreceptor in a ∼4∶1 ratio, which supports the conformation model of photodynamics in GFP. Furthermore, we discuss charge transfer, isomerization, and environment effects. The present approach allows for systematic studies of excited-state electron-ion dynamics in biological systems.

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{"type":"article", "name":"m.marques20036", "author":"M. Marques and X. López and D. Varsano and A. Castro and A. Rubio", "title":"Timedependent densityfunctional approach for biological chromophores: the case of the green fluorescent protein", "journal":"Physical Review Letters", "volume":"90", "OPTnumber":"25", "OPTmonth":"6", "year":"2003", "OPTpages":"258101", "OPTnote":"", "OPTkey":"", "DOI":"10.1103/physrevlett.90.258101"}
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