Abstract
GFP chromophore analogs (7a-e, 8, and 10a,b) containing 2-thienyl-, 5-methyl-2-furyl-, 2-pyrryl, and 6-methyl-2-pyridyl-groups were synthesized and their fluorescence spectra recorded in the pH range 1-7. NMR studies showed that protonation of 8 (2-thienyl system) inhibited photoisomerization (Z-E) about the exocyclic double bond but that protonation of 7c (E + Z) (2-pyrryl system) gave only 7cE. Fluorescence studies revealed enhancement of fluorescence intensity of 7c and 7b,e (furyl system) below pH 2.5 and gave a similar result for 10a (pyridyl system) below pH 6. Quantum yields at pH 1 were low, probably due to excited state proton transfer (ESPT). © 2010 Elsevier Ltd. All rights reserved.
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Katritzky, A. R., Yoshioka-Tarver, M., El-Gendy, B. E. D. M., & Hall, C. D. (2011). Synthesis and photochemistry of pH-sensitive GFP chromophore analogs. Tetrahedron Letters, 52(17), 2224–2227. https://doi.org/10.1016/j.tetlet.2010.12.082
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