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Journal ArticleDOI

Protein-flavonol interaction: fluorescence spectroscopic study.

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TLDR
Analysis of relevant spectroscopic data leads to the conclusions that two binding sites are involved in BSA–3HF interaction, and the interaction is slightly positively cooperative in nature with a similar binding constant.
Abstract
Recent studies have shown that various synthetic as well as therapeutically active naturally occurring flavonols possess novel luminescence properties that can potentially serve as highly sensitive monitors of their microenvironments in biologically relevant systems. We report a study on the interactions of bovine serum albumin (BSA) with the model flavonol 3-hydroxyflavone (3HF), using the excited-state proton-transfer (ESPT) luminescence of 3HF as a probe. Upon addition of BSA to the flavonoid solutions, we observe remarkable changes in the absorption, ESPT fluorescence emission and excitation profiles as well as anisotropy (r) values. Complexation of 3HF with protein results in a pronounced shift (20 nm) of the ESPT emission maximum of the probe (from lambda(max)(em) = 513 nm to lambda(max)(em) = 533 nm) accompanied by a significant increase in fluorescence intensity. The spectral data also suggest that, in addition to ESPT, the protein environment induces proton abstraction from 3HF leading to formation of anionic species in the ground state. Fairly high values of anisotropy are observed in the presence of BSA for the tautomer (r = 0.25) as well as anion (r = 0.35) species of 3HF, implying that both the species are located in motion-restricted environments of BSA molecules. Analysis of relevant spectroscopic data leads to the conclusions that two binding sites are involved in BSA-3HF interaction, and the interaction is slightly positively cooperative in nature with a similar binding constant of 1.1 - 1.3 x 10(5) M(-1) for both these sites. Proteins 2001;43:75-81.

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Citations
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Journal ArticleDOI

Photophysics in motionally constrained bioenvironment: interaction of norharmane with bovine serum albumin.

TL;DR: The denaturation study suggests that the protein, in its native form, binds with NHM, suggesting that the neutral species is located in a motionally restricted environment of BSA, whereas the cationic species remains in the bulk aqueous phase.
Journal ArticleDOI

Fluorometric investigation of interaction of 3-acetyl-4-oxo-6,7-dihydro-12H indolo-[2,3-a] quinolizine with bovine serum albumin.

TL;DR: Interaction of 3-acetyl-4-oxo-6,7-dihydro-12H indolo-[2,3-a] quinolizine (AODIQ) with a model transport protein, bovine serum albumin (BSA), has been studied using steady state fluorescence and fluorescence anisotropy experiments.
Journal ArticleDOI

Characterization of the myricetin-human serum albumin complex by spectroscopic and molecular modeling approaches.

TL;DR: From the molecular modeling results, the drug-protein complex was stabilized by electrostatic force and hydrogen bonding with the amino acid residue in the binding pocket, which was consistent with the experimental results.
Journal ArticleDOI

Fluorometric investigation of the interaction between methylene blue and human serum albumin

TL;DR: It was proved that the fluorescence quenching of HSA by MB is a result of the formation of MB-HSA complex and electrostatic interactions play a major role in stabilizing the complex.
Journal ArticleDOI

Interactions of the plant flavonoid fisetin with macromolecular targets: insights from fluorescence spectroscopic studies.

TL;DR: Evidence for the occurrence of efficient Förster type fluorescence resonance energy transfer from tryptophan to fisetin is presented, indicating that both binding sites of f isetin in HSA are proximal to the unique tryptophile residue present in the interdomain (between IIA and IIIA domains) loop region of the protein.
References
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Book

Principles of fluorescence spectroscopy

TL;DR: This book describes the fundamental aspects of fluorescence, the biochemical applications of this methodology, and the instrumentation used in fluorescence spectroscopy.
Book

Chemistry and biochemistry of plant pigments

T. W. Goodwin
TL;DR: This book will help you to understand the chemistry and biochemistry of plant pigments book much better and the system of this book of course will be much easier.
Journal ArticleDOI

Flavonoids, a class of natural products of high pharmacological potency

TL;DR: The few existing reports on the careful pharmacodynamic, pharmacokinetic and clinical studies which have been made have been summarized to provide a basis for a full-scale investigation of the therapeutic potential of flavonoids.
Journal ArticleDOI

Excited state proton-transfer spectroscopy of 3-hydroxyflavone and quercetin

TL;DR: In this article, the double minimum hydrogen-bonding potential of 3-hydroxyflavone and quercetin at room temperature in solution has been used to explain the luminescence of these molecules at 77 K in 2-methylbutane rigid matrix.