6533b7d3fe1ef96bd1260a21
RESEARCH PRODUCT
Resolving Binding Events on the Multifunctional Human Serum Albumin
Till OpatzMichael WagnerLea WenskowskyHans MatterJohannes ReuschStefan PetryHerman Schreudersubject
Boron Compounds540 Chemistry and allied sciencesalbumin bindingIbuprofenSerum Albumin HumanMolecular Dynamics SimulationCrystallography X-Ray01 natural sciencesBiochemistryFluorescenceDrug DiscoverymedicineHumansSpatial localizationmulticolor assayskinetics investigationsGeneral Pharmacology Toxicology and PharmaceuticsBinding sitePharmacologychemistry.chemical_classificationBinding SitesMolecular Structure010405 organic chemistryBinding proteinBiomoleculeCommunicationOrganic ChemistryLauric AcidsTransporterdrug interactionsHuman serum albuminFluorescenceCommunications0104 chemical sciences010404 medicinal & biomolecular chemistry4-Chloro-7-nitrobenzofurazanchemistry540 ChemieBiophysicsMolecular MedicineDissociation kineticsswitchSENSE technologyWarfarinmedicine.drugdescription
Abstract Physiological processes rely on initial recognition events between cellular components and other molecules or modalities. Biomolecules can have multiple sites or mode of interaction with other molecular entities, so that a resolution of the individual binding events in terms of spatial localization as well as association and dissociation kinetics is required for a meaningful description. Here we describe a trichromatic fluorescent binding‐ and displacement assay for simultaneous monitoring of three individual binding sites in the important transporter and binding protein human serum albumin. Independent investigations of binding events by X‐ray crystallography and time‐resolved dynamics measurements (switchSENSE technology) confirm the validity of the assay, the localization of binding sites and furthermore reveal conformational changes associated with ligand binding. The described assay system allows for the detailed characterization of albumin‐binding drugs and is therefore well‐suited for prediction of drug‐drug and drug‐food interactions. Moreover, conformational changes, usually associated with binding events, can also be analyzed.
year | journal | country | edition | language |
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2020-03-01 | Chemmedchem |