Influence of Mg2+ ions on the interaction between 3,5-dicaffeoylquinic acid and HTLV-I integrase

Objective. Using molecular simulation, we studied the influence of Mg2+ ions on the binding mode of HTLV-I Integrase (IN) catalytic domain (modeled by homology) with the 3,5- Dicaffeoylquinic Acid (DCQA). HTLV-I Integrase homology model was built using template-like crystallographic data of the IN c...

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Autor Principal: Peña, Ángela; Laboratorio de biología molecular y patogénesis. Departamento de ciencias fisiológicas. Escuela de ciencias básicas. Departamento de Salud. Universidad del Valle. Sede San Fernando. Cali, Colombia.
Otros Autores: Yosa, Juvenal; Universidad Distrital Francisco José de Caldas. Facultad de ciencias ambientales. Ingeniería ambiental. Av. Circunvalar Venado de Oro., Bogotá, Colombia., Cuesta-Astroz, Yesid; Laboratorio de biología molecular y patogénesis. Departamento de ciencias fisiológicas. Escuela de ciencias básicas. Departamento de Salud. Universidad del Valle. Sede San Fernando. Cali, Colombia., Acevedo, Orlando; Laboratorio de bioquímica computacional y estructural y bioinformática. Departamento de nutrición y Bioquímica. Facultad de ciencias. Pontificia Universidad Javeriana. Bogotá, D,C. Colombia, Lareo, Leonardo; En Paz Descanse, Rest in Peace, García-Vallejo, Felipe; Laboratorio de biología molecular y patogénesis. Departamento de ciencias fisiológicas. Escuela de ciencias básicas. Departamento de Salud. Universidad del Valle. Sede San Fernando. Cali, Colombia.
Formato: info:eu-repo/semantics/article
Idioma: eng
Publicado: Pontificia Universidad Javeriana 2012
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Acceso en línea: http://revistas.javeriana.edu.co/index.php/scientarium/article/view/2477
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Sumario: Objective. Using molecular simulation, we studied the influence of Mg2+ ions on the binding mode of HTLV-I Integrase (IN) catalytic domain (modeled by homology) with the 3,5- Dicaffeoylquinic Acid (DCQA). HTLV-I Integrase homology model was built using template-like crystallographic data of the IN catalytic domain solved for Avian Sarcoma Virus (VSA, pdb: 1VSD). Materials and methods. In order to analyze the role of Mg2+ in the interaction or coupling between 3,5-DCQA and Integrase, three models were created: i) in the absence of Mg2+ ions, ii) with a Mg2+ ion coordinated at Asp15 and Asp72 and iii) model with two Mg2+ ions coordinated at Asp15-Asp72 and Asp72-Glu108. Coupling force and binding free energy between 3,5-DCQA and HTLV-I IN were assessed in the three models. Results. The lowest docking score and free energy binding were obtained for the second model. Mg2+ ion strongly affected the coupling of the inhibitor 3,5-DCQA with HTLV-I catalytic domain of Integrase, thus revealing a strong interaction in the ligand-protein complex regardless of the ligand-catalytic interaction sites for all three models. Conclusion. Altogether, these results strengthen the hypothesis that the presence of one Mg2+ ion could enhance the interaction in the complex by decreasing free energy, therefore increasing the affinity. Moreover, we propose 3, 5-DCQA as an important pharmacophore in the rational design of new antiretroviral drugs.Key words: 3,5 -Dicaffeoylquinic Acid, Human T-Lymphotropic Type I (HTLV-1), Integrase (IN), Homology Model, Molecular Docking, Binding Free Energy, Mg2+ Ions.