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Novel coumarin-based tyrosinase inhibitors discovered by OECD principles-validated QSAR approach from an enlarged, balanced database
Authors:Huong Le-Thi-Thu   Gerardo M. Casa?ola-Martín   Yovani Marrero-Ponce   Antonio Rescigno   Luciano Saso   Virinder S. Parmar   Francisco Torrens  Concepción Abad
Affiliation:(1) Unit of Computer-Aided Molecular ‘Biosilico’ Discovery and Bioinformatic Research (CAMD-BIR Unit), Faculty of Chemistry-Pharmacy, Central University of Las Villas, Santa Clara, Villa Clara, 54830, Cuba;(2) Departament de Bioqu?mica i Biologia Molecular, Universitat de Val?ncia, 46100 Burjassot, Spain;(3) Institut Universitari de Ci?ncia Molecular, Universitat de Val?ncia, Edifici d’Instituts de Paterna, Poligon la Coma s/n (detras de Canal Nou), P. O. Box 22085, 46071 Val?ncia, Spain;(4) Dipartimento di Scienze e Tecnologie Biomediche, Universit? di Cagliari, Cittadella Universitaria, Monserrato, 09042, CA, Italy;(5) Department of Physiology and Pharmacology, Sapienza University, Rome, Italy;(6) Department of Chemistry, University of Delhi, Delhi, India;
Abstract:The present work is devoted to the development and application of a multi-agent Quantitative Structure-Activity Relationship (QSAR) classification system for tyrosinase inhibitor identification, in which the individual QSAR outputs are the inputs of a fusion approach based on the voting mechanism. The individual models are based on TOMOCOMD-CARDD (TOpological Molecular COMputational Design-Computer Aided Rational Drug Design) atom-based bilinear descriptors and Linear Discriminant Analysis (LDA) on a novel enlarged, balanced database of 1,429 compounds within 701 greatly dissimilar molecules presenting anti-tyrosinase activity. A total of 21 adequate models are obtained taking into account the requirements of the Organization for Economic Cooperation and Development (OECD) principles for QSAR validation and present global accuracies (Q) above 84.50 and 79.27% in the training and test sets, respectively. The resulted fusion system is used for the in silico identification of synthesized coumarin derivatives as novel tyrosinase inhibitors. The 7-hydroxycoumarin (compound C07) shows potent activity for the inhibition of monophenolase activity of mushroom tyrosinase giving a value of inhibition percentage close to 100% in vitro assays, by means of spectrophotometric analysis. The current report could help to shed some clues in the identification of new chemicals that inhibit tyrosinase enzyme, for entering in the pipeline of drug discovery development.
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