Publication: Protein Binding of Lapatinib and Its N- and O-Dealkylated Metabolites Interrogated by Fluorescence, Ultrafast Spectroscopy and Molecular Dynamics Simulations.
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Identifiers
Date
2020-10-30
Authors
Andreu, Inmaculada
Lence, Emilio
Gonzalez-Bello, Concepcion
Mayorga, Cristobalina
Cuquerella, M Consuelo
Vaya, Ignacio
Miranda, Miguel A
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
Frontiers Research Foundation
Abstract
Lapatinib (LAP) is an anticancer drug generally used to treat breast and lung cancer. It exhibits hypersensitivity reactions in addition to dermatological adverse effects and photosensitivity. Moreover, LAP binds to serum proteins and is readily biotransformed in humans, giving rise to several metabolites, such as N- and O-dealkylated products (N-LAP and O-LAP, respectively). In this context, the aim of the present work is to obtain key information on drug@protein complexation, the first step involved in a number of hypersensitivity reactions, by a combination of fluorescence, femtosecond transient absorption spectroscopy and molecular dynamics (MD) simulations. Following this approach, the behavior of LAP and its metabolites has been investigated in the presence of serum proteins, such as albumins and α1-acid glycoproteins (SAs and AGs, respectively) from human and bovine origin. Fluorescence results pointed to a higher affinity of LAP and its metabolites to human proteins; the highest one was found for LAP@HSA. This is associated to the coplanar orientation adopted by the furan and quinazoline rings of LAP, which favors emission from long-lived (up to the ns time-scale) locally-excited (LE) states, disfavoring population of intramolecular charge transfer (ICT) states. Moreover, the highly constrained environment provided by subdomain IB of HSA resulted in a frozen conformation of the ligand, contributing to fluorescence enhancement. Computational studies were clearly in line with the experimental observations, providing valuable insight into the nature of the binding sites and the conformational arrangement of the ligands inside the protein cavities. Besides, a good correlation was found between the calculated binding energies for each ligand@protein complex and the relative affinities observed in competition experiments.
Description
MeSH Terms
Lapatinib
Quinazolines
Molecular Dynamics Simulation
Ligands
Lung Neoplasms
Antineoplastic Agents
Blood Proteins
Drug-Related Side Effects and Adverse Reactions
Quinazolines
Molecular Dynamics Simulation
Ligands
Lung Neoplasms
Antineoplastic Agents
Blood Proteins
Drug-Related Side Effects and Adverse Reactions
DeCS Terms
Proteínas
Fluorescencia
Ligandos
Proteínas sanguíneas
Preparaciones farmacéuticas
Hipersensibilidad
Fluorescencia
Ligandos
Proteínas sanguíneas
Preparaciones farmacéuticas
Hipersensibilidad
CIE Terms
Keywords
Femtosecond transient absorption, Fluorescence, Hypersensitivity reactions, Lapatinib, Metabolites, Molecular dynamics simulations, Protein binding
Citation
Andreu, I., Lence, E., González-Bello, C., Mayorga, C., Cuquerella, M. C., Vayá, I., et al. (2020). Protein Binding of Lapatinib and Its N- and O-Dealkylated Metabolites Interrogated by Fluorescence, Ultrafast Spectroscopy and Molecular Dynamics Simulations. Frontiers In Pharmacology, 11