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Antamanide Analogs as Potential Inhibitors of Tyrosinase
Authors:Claudia Honisch  Matteo Gazziero  Roberto Dallocchio  Alessandro Dessì  Davide Fabbri  Maria Antonietta Dettori  Giovanna Delogu  Paolo Ruzza
Affiliation:1.Institute of Biomolecular Chemistry of CNR, Padova Unit, Via F. Marzolo, 1, 35131 Padova, Italy; (C.H.); (M.G.);2.Institute of Biomolecular Chemistry of CNR, Sassari Unit, Traversa La Crucca, 3, 07100 Sassari, Italy; (R.D.); (A.D.); (D.F.); (M.A.D.); (G.D.)
Abstract:The tyrosinase enzyme, which catalyzes the hydroxylation of monophenols and the oxidation of o-diphenols, is typically involved in the synthesis of the dark product melanin starting from the amino acid tyrosine. Contributing to the browning of plant and fruit tissues and to the hyperpigmentation of the skin, leading to melasma or age spots, the research of possible tyrosinase inhibitors has attracted much interest in agri-food, cosmetic, and medicinal industries. In this study, we analyzed the capability of antamanide, a mushroom bioactive cyclic decapeptide, and some of its glycine derivatives, compared to that of pseudostellarin A, a known tyrosinase inhibitor, to hinder tyrosinase activity by using a spectrophotometric method. Additionally, computational docking studies were performed in order to elucidate the interactions occurring with the tyrosinase catalytic site. Our results show that antamanide did not exert any inhibitory activity. On the contrary, the three glycine derivatives AG9, AG6, and AOG9, which differ from each other by the position of a glycine that substitutes phenylalanine in the parent molecule, improving water solubility and flexibility, showed tyrosinase inhibition by spectrophotometric assays. Analytical data were confirmed by computational studies.
Keywords:tyrosinase inhibition  antamanide  bioactive peptides  UV-spectroscopy  computational docking
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