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HERO ID
4274846
Reference Type
Journal Article
Title
Ultraviolet fluorescence of coelenteramide and coelenteramide-containing fluorescent proteins. Experimental and theoretical study
Author(s)
Alieva, RR; Tomilin, FN; Kuzubov, AA; Ovchinnikov, SG; Kudryasheva, NS
Year
2016
Is Peer Reviewed?
1
Journal
Journal of Photochemistry and Photobiology B: Biology
ISSN:
1011-1344
EISSN:
1873-2682
Volume
162
Page Numbers
318-323
Language
English
PMID
27400455
DOI
10.1016/j.jphotobiol.2016.07.004
Web of Science Id
WOS:000383003800037
URL
https://www.proquest.com/docview/1836669165?accountid=171501&bdid=64576&_bd=VssWHcQXJ4a72OA0CUJyEn3irgg%3D
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Abstract
Coelenteramide-containing fluorescent proteins are products of bioluminescent reactions of marine coelenterates. They are called 'discharged photoproteins'. Their light-induced fluorescence spectra are variable, depending considerably on external conditions. Current work studies a dependence of light-induced fluorescence spectra of discharged photoproteins obelin, aequorin, and clytin on excitation energy. It was demonstrated that photoexcitation to the upper electron-excited states (260-300nm) of the discharged photoproteins initiates a fluorescence peak in the near UV region, in addition to the blue-green emission. To characterize the UV fluorescence, the light-induced fluorescence spectra of coelenteramide (CLM), fluorophore of the discharged photoproteins, were studied in methanol solution. Similar to photoproteins, the CLM spectra depended on photoexcitation energy; the additional peak (330nm) in the near UV region was observed in CLM fluorescence at higher excitation energy (260-300nm). Quantum chemical calculations by time depending method with B3LYP/cc-pVDZ showed that the conjugated pyrazine-phenolic fragment and benzene moiety of CLM molecule are responsible for the additional UV fluorescence peak. Quantum yields of CLM fluorescence in methanol were 0.028±0.005 at 270-340nm photoexcitation. A conclusion was made that the UV emission of CLM might contribute to the UV fluorescence of the discharged photoproteins. The study develops knowledge on internal energy transfer in biological structures - complexes of proteins with low-weight aromatic molecules.
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