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Full color modulation of firefly luciferase through engineering with unified stark effect

D. Cai, M. Marques, F. Nogueira

The Journal of Physical Chemistry B, 117, 13725–13730, (2013)

DOI: 10.1021/jp405665v

Download: BibTEX

The firefly luciferase has been a unique marking tool used in various bioimaging techniques. Extensive color modulation is strongly required to meet special marking demands; however, intentional and accurate wavelength tuning has yet to be achieved. Here, we demonstrate that the color shift of the firefly chromophore (OxyLH2-1) by internal and external fields can be described as a unified Stark shift. Electrostatic microenvironmental effects on fluorescent spectroscopy are modeled in vacuo through effective electric fields by using time-dependent density functional theory. A complete visible fluorescence spectrum of firefly chromophore is depicted, which enables one to control the emission in a specific color. As an application, the widely observed pH-correlated color shift is proved to be associated with the local Stark field generated by the trace water–ions (vicinal hydronium and hydroxide ions) at active sites close to the OxyLH2-1.

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{"type":"article", "name":"d.cai201310", "author":"D. Cai and M. Marques and F. Nogueira", "title":"Full color modulation of firefly luciferase through engineering with unified stark effect", "journal":"The Journal of Physical Chemistry B", "volume":"117", "OPTnumber":"44", "OPTmonth":"10", "year":"2013", "OPTpages":"13725–13730", "OPTnote":"", "OPTkey":"chromophores; color; electric fields; ions; molecules", "DOI":"10.1021/jp405665v"}
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