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Spectrofluorimetric analysis of the binding of a target molecule to serum albumin: tricky aspects and tips

期刊

JOURNAL OF INORGANIC BIOCHEMISTRY
卷 216, 期 -, 页码 -

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jinorgbio.2020.111305

关键词

Quenching; Inner-filter effect; Titrations; Stern-Volmer plots; Thermodynamics; Enthalpy-entropy compensation

资金

  1. COST (European Cooperation in Science and Technology) [CA18202]
  2. National Research in Antarctica [PNRA18_00194, PNRA18_00216]

向作者/读者索取更多资源

Protein binding plays a crucial role in modulating drug activity, and it is essential to elucidate the binding characteristics when studying new molecules for drug development. This paper focuses on the experimental and data treatment aspects of analyzing the binding to a fluorescent protein, emphasizing the importance of a mechanistic approach for designing experiments and interpreting data accurately. Various techniques, including temperature dependence, synchronous spectra, and exchange experiments, are discussed for gaining insights into the binding behavior, showcasing the complexities involved in these valuable experiments.
Protein binding heavily modulates drug activity. Therefore, the binding features need to be elucidated when chemistry researchers study new molecules (metal complexes) to be used as drugs. This paper concerns the experimental and data treatment aspects of the mechanistic analysis of the binding to a fluorescent protein (the golden standard serum albumin) by using direct fluorescence titrations. Fluorescence data are not rarely only qualitatively used, neglecting further treatments which could offer a precious detailed picture of the behavior of the drug. We aim to spread a mechanistic approach, discussing the critical aspects for correctly designing the experiments and treating the data. The researcher may confirm adduct formation and evaluate binding constants (Stern-Volmer KSV or other types of K). Also, we discuss here, with the help of literature examples, the correct use of temperature dependence of K to extract thermodynamic parameters, comment on enthalpy-entropy compensation, together with the use of synchronous spectra and exchange experiments to gain information on the binding type and site. We think that this tutorial/critical synopsis can be of help for the increasing community dealing with these experiments, which are valuable but often much more tricky than it might appear at first sight.

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