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1.
Molecules ; 25(22)2020 Nov 19.
Artigo em Inglês | MEDLINE | ID: mdl-33228044

RESUMO

The interactions of small molecule drugs with plasma serum albumin are important because of the influence of such interactions on the pharmacokinetics of these therapeutic agents. 5-Aminoimidazole-4-carboxamide ribonucleoside (AICAR) is one such drug candidate that has recently gained attention for its promising clinical applications as an anti-cancer agent. This study sheds light upon key aspects of AICAR's pharmacokinetics, which are not well understood. We performed in-depth experimental and computational binding analyses of AICAR with human serum albumin (HSA) under simulated biochemical conditions, using ligand-dependent fluorescence sensitivity of HSA. This allowed us to characterize the strength and modes of binding, mechanism of fluorescence quenching, validation of FRET, and intermolecular interactions for the AICAR-HSA complexes. We determined that AICAR and HSA form two stable low-energy complexes, leading to conformational changes and quenching of protein fluorescence. Stern-Volmer analysis of the fluorescence data also revealed a collision-independent static mechanism for fluorescence quenching upon formation of the AICAR-HSA complex. Ligand-competitive displacement experiments, using known site-specific ligands for HSA's binding sites (I, II, and III) suggest that AICAR is capable of binding to both HSA site I (warfarin binding site, subdomain IIA) and site II (flufenamic acid binding site, subdomain IIIA). Computational molecular docking experiments corroborated these site-competitive experiments, revealing key hydrogen bonding interactions involved in stabilization of both AICAR-HSA complexes, reaffirming that AICAR binds to both site I and site II.


Assuntos
Aminoimidazol Carboxamida/análogos & derivados , Simulação de Acoplamento Molecular , Ribonucleotídeos/metabolismo , Albumina Sérica Humana/metabolismo , Análise Espectral , Aminoimidazol Carboxamida/química , Aminoimidazol Carboxamida/metabolismo , Transferência de Energia , Humanos , Cinética , Ligação Proteica , Ribonucleotídeos/química , Albumina Sérica Humana/química , Espectrometria de Fluorescência , Espectrofotometria Ultravioleta , Termodinâmica
2.
Artigo em Inglês | MEDLINE | ID: mdl-30931791

RESUMO

The purpose of this study was to explore an accurate characterization of the binding interaction of antibiotic drug cephalexin with calf thymus DNA (CT-DNA) as a relevant biological target by using UV absorption, fluorescence spectroscopy and circular dichroism (CD) in vitro under simulated physiological conditions (pH = 7.4) and also through a molecular modeling study. The results showed that the drug interacts with the DNA helix via a minor groove binding mode. The thermodynamic parameters were calculated and showed that the reaction between the drug and CT-DNA was exothermic. In addition, the drug enforced traceable changes in the viscosity of DNA. The molecular modeling results indicated that cephalexin forcefully binds to the minor groove of DNA with a relative binding energy of -21.02 kJ mol-1. The obtained theoretical results were in good agreement with those obtained from experimental studies.


Assuntos
Antibacterianos/química , Cefalexina/química , DNA/química , Simulação de Acoplamento Molecular , Animais , Sítios de Ligação , Bovinos , Dicroísmo Circular , Estrutura Molecular , Espectrometria de Fluorescência , Espectrofotometria Ultravioleta , Termodinâmica
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