Rational Principles for Modulating Fluorescence Properties of Fluorescein
Top Cited Papers
- 12 October 2004
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 126 (43) , 14079-14085
- https://doi.org/10.1021/ja048241k
Abstract
Rational design strategies based on practical fluorescence modulation mechanisms would enable us to rapidly develop novel fluorescence probes for target molecules. Here, we present a practical and general principle for modulating the fluorescence properties of fluorescein. We hypothesized that (a) the fluorescein molecule can be divided into two moieties, i.e., the xanthene moiety as a fluorophore and the benzene moiety as a fluorescence-controlling moiety, even though there is no obvious linker structure between them, and (b) the fluorescence properties can be modulated via a photoinduced electron transfer (PeT) process from the excited fluorophore to a reducible benzene moiety (donor-excited PeT; d-PeT). To evaluate the relationship between the reduction potential of the benzene moiety and the fluorescence properties, we designed and synthesized various derivatives in which the reduction potential of the benzene moiety was fine tuned by introducing electron-withdrawing groups onto the benzene moiety. Our results clearly show that the fluorescence properties of fluorescein derivatives were indeed finely modulated depending upon the reduction potential of the benzene moiety. This information provides a basis for a practical strategy for rational design of novel functional fluorescence probes.Keywords
This publication has 18 references indexed in Scilit:
- A Novel Design Method of Ratiometric Fluorescent Probes Based on Fluorescence Resonance Energy Transfer Switching by Spectral Overlap IntegralChemistry – A European Journal, 2003
- Development of Novel Fluorescence Probes That Can Reliably Detect Reactive Oxygen Species and Distinguish Specific SpeciesJournal of Biological Chemistry, 2003
- Highly Zinc-Selective Fluorescent Sensor Molecules Suitable for Biological ApplicationsJournal of the American Chemical Society, 2000
- H2O2-Induced Tyrosine Phosphorylation of Protein Kinase Cδ by a Mechanism Independent of Inhibition of Protein-Tyrosine Phosphatase in CHO and COS-7 CellsBiochemical and Biophysical Research Communications, 2000
- A New Cell-Permeable Fluorescent Probe for Zn2+Journal of the American Chemical Society, 2000
- Ultrafast Charge Transfer in Amino-Substituted Boron Dipyrromethene Dyes and Its Inhibition by Cation Complexation: A New Design Concept for Highly Sensitive Fluorescent ProbesThe Journal of Physical Chemistry A, 1998
- Properties of Pervanadate and PermolybdateJournal of Biological Chemistry, 1998
- Roles of Protein-tyrosine Phosphatases in Stat1α-mediated Cell SignalingPublished by Elsevier ,1995
- A Glucose‐Selective Molecular Fluorescence SensorAngewandte Chemie International Edition in English, 1994
- Chemical sources of singlet oxygen. 3. Peroxidation of water-soluble singlet oxygen carriers with the hydrogen peroxide-molybdate systemThe Journal of Organic Chemistry, 1989