We simulated the intrinsic reaction path of the Green Fluorescent Protein (GFP) proton shuttle in both the ground state (S0) and first singlet excited state (S1), accounting for the main energetic and steric effects of the protein in a convenient model including the chromophore, the crystallographic water, and the residues directly involved in the proton transfer event. We adopted density functional theory (DFT) and time-dependent density functional theory (TD-DFT) levels to define the potential energy surfaces of the two electronic states, and we compared results obtained by the Damped Velocity Verlet and the Hessian-based Predictor-Corrector integrators of the intrinsic reaction coordinate, which gave a comparable and consistent picture o...
Proton transfer plays an important role in the optical properties of green fluorescent protein (GFP)...
The neutral form of the chromophore in wild-type green fluorescent protein (wtGFP) undergoes excited...
The nature of the coupling of the photoexcited chromophore with the environment in a prototypical sy...
We simulated the intrinsic reaction path of the Green Fluorescent Protein (GFP) proton shuttle in bo...
We simulated an excited state proton transfer in green fluorescent protein by excited state ab initi...
We present the results of a systematic series of constrained minimum energy pathway calculations on ...
Green fluorescent protein variant S65T/H148D has been reported to host a photocycle involving the ph...
The Green Fluorescent Protein (GFP) is a widely studied chemical system both for its large amount of...
In this paper we perform high level complete active space self-consistent field (CASSCF) and multi-r...
We explore several models for the ground-state proton chain transfer pathway between the green fluor...
The availability of a gene encoding green fluorescence immediately stimulates interest in the puzzle...
The chemical locking of the central single bond in core chromophores of green fluorescent proteins (...
In this paper we report the results of extensive quantum chemical reaction pathway calculations for ...
The photophysical properties of the wild type green fluorescent protein (wtGFP), the isolated GFP ch...
Proton transfer is one of the most important elementary processes in biology. Green fluorescent prot...
Proton transfer plays an important role in the optical properties of green fluorescent protein (GFP)...
The neutral form of the chromophore in wild-type green fluorescent protein (wtGFP) undergoes excited...
The nature of the coupling of the photoexcited chromophore with the environment in a prototypical sy...
We simulated the intrinsic reaction path of the Green Fluorescent Protein (GFP) proton shuttle in bo...
We simulated an excited state proton transfer in green fluorescent protein by excited state ab initi...
We present the results of a systematic series of constrained minimum energy pathway calculations on ...
Green fluorescent protein variant S65T/H148D has been reported to host a photocycle involving the ph...
The Green Fluorescent Protein (GFP) is a widely studied chemical system both for its large amount of...
In this paper we perform high level complete active space self-consistent field (CASSCF) and multi-r...
We explore several models for the ground-state proton chain transfer pathway between the green fluor...
The availability of a gene encoding green fluorescence immediately stimulates interest in the puzzle...
The chemical locking of the central single bond in core chromophores of green fluorescent proteins (...
In this paper we report the results of extensive quantum chemical reaction pathway calculations for ...
The photophysical properties of the wild type green fluorescent protein (wtGFP), the isolated GFP ch...
Proton transfer is one of the most important elementary processes in biology. Green fluorescent prot...
Proton transfer plays an important role in the optical properties of green fluorescent protein (GFP)...
The neutral form of the chromophore in wild-type green fluorescent protein (wtGFP) undergoes excited...
The nature of the coupling of the photoexcited chromophore with the environment in a prototypical sy...