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Emission shaping in fluorescent proteins: role of electrostatics and pi-stacking SCIE SCOPUS

Title
Emission shaping in fluorescent proteins: role of electrostatics and pi-stacking
Authors
Park, Jae WooRhee, Young Min
Date Issued
2016-02-07
Publisher
ROYAL SOCIETY OF CHEMISTRY
Abstract
For many decades, simulating the excited state properties of complex systems has been an intriguing but daunting task due to its high computational cost. Here, we apply molecular dynamics based techniques with interpolated potential energy surfaces toward calculating fluorescence spectra of the green fluorescent protein (GFP) and its variants in a statistically meaningful manner. With the GFP, we show that the diverse electrostatic tuning can shape the emission features in many different ways. By computationally modulating the electrostatic interactions between the chromophore phenoxy oxygen and its nearby residues, we demonstrate that we indeed can shift the emission to the blue or to the red side in a predictable manner. We rationalize the shifting effects of individual residues in the GFP based on the responses of both the adiabatic and the diabatic electronic states of the chromophore. We next exhibit that the yellow emitting variant, the Thr203Tyr mutant, generates changes in the electrostatic interactions and an additional pi-stacking interaction. These combined effects indeed induce a red shift to emit the fluorescence into the yellow region. With the series of demonstrations, we suggest that our approach can provide sound rationales and useful insights in understanding different responses of various fluorescent complexes, which may be helpful in designing new light emitting proteins and other related systems in future studies.
URI
https://oasis.postech.ac.kr/handle/2014.oak/37991
DOI
10.1039/C5CP07535A
ISSN
1463-9076
Article Type
Article
Citation
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, vol. 18, no. 5, page. 3944 - 3955, 2016-02-07
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