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Synthesis and Studies of the Inhibitory Effect of Hydroxylated Phenylpropanoids and Biphenols Derivatives on Tyrosinase and Laccase Enzymes

The impaired activity of tyrosinase and laccase can provoke serious concerns in the life cycles of mammals, insects and microorganisms. Investigation of inhibitors of these two enzymes may lead to the discovery of whitening agents, medicinal products, anti-browning substances and compounds for contr...

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Autores principales: Dettori, Maria Antonietta, Fabbri, Davide, Dessì, Alessandro, Dallocchio, Roberto, Carta, Paola, Honisch, Claudia, Ruzza, Paolo, Farina, Donatella, Migheli, Rossana, Serra, Pier Andrea, Pantaleoni, Roberto A., Fois, Xenia, Rocchitta, Gaia, Delogu, Giovanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7321210/
https://www.ncbi.nlm.nih.gov/pubmed/32545293
http://dx.doi.org/10.3390/molecules25112709
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author Dettori, Maria Antonietta
Fabbri, Davide
Dessì, Alessandro
Dallocchio, Roberto
Carta, Paola
Honisch, Claudia
Ruzza, Paolo
Farina, Donatella
Migheli, Rossana
Serra, Pier Andrea
Pantaleoni, Roberto A.
Fois, Xenia
Rocchitta, Gaia
Delogu, Giovanna
author_facet Dettori, Maria Antonietta
Fabbri, Davide
Dessì, Alessandro
Dallocchio, Roberto
Carta, Paola
Honisch, Claudia
Ruzza, Paolo
Farina, Donatella
Migheli, Rossana
Serra, Pier Andrea
Pantaleoni, Roberto A.
Fois, Xenia
Rocchitta, Gaia
Delogu, Giovanna
author_sort Dettori, Maria Antonietta
collection PubMed
description The impaired activity of tyrosinase and laccase can provoke serious concerns in the life cycles of mammals, insects and microorganisms. Investigation of inhibitors of these two enzymes may lead to the discovery of whitening agents, medicinal products, anti-browning substances and compounds for controlling harmful insects and bacteria. A small collection of novel reversible tyrosinase and laccase inhibitors with a phenylpropanoid and hydroxylated biphenyl core was prepared using naturally occurring compounds and their activity was measured by spectrophotometric and electrochemical assays. Biosensors based on tyrosinase and laccase enzymes were constructed and used to detect the type of protein-ligand interaction and half maximal inhibitory concentration (IC(50)). Most of the inhibitors showed an IC(50) in a range of 20–423 nM for tyrosinase and 23–2619 nM for laccase. Due to the safety concerns of conventional tyrosinase and laccase inhibitors, the viability of the new compounds was assayed on PC12 cells, four of which showed a viability of roughly 80% at 40 µM. In silico studies on the crystal structure of laccase enzyme identified a hydroxylated biphenyl bearing a prenylated chain as the lead structure, which activated strong and effective interactions at the active site of the enzyme. These data were confirmed by in vivo experiments performed on the insect model Tenebrio molitur.
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spelling pubmed-73212102020-07-06 Synthesis and Studies of the Inhibitory Effect of Hydroxylated Phenylpropanoids and Biphenols Derivatives on Tyrosinase and Laccase Enzymes Dettori, Maria Antonietta Fabbri, Davide Dessì, Alessandro Dallocchio, Roberto Carta, Paola Honisch, Claudia Ruzza, Paolo Farina, Donatella Migheli, Rossana Serra, Pier Andrea Pantaleoni, Roberto A. Fois, Xenia Rocchitta, Gaia Delogu, Giovanna Molecules Article The impaired activity of tyrosinase and laccase can provoke serious concerns in the life cycles of mammals, insects and microorganisms. Investigation of inhibitors of these two enzymes may lead to the discovery of whitening agents, medicinal products, anti-browning substances and compounds for controlling harmful insects and bacteria. A small collection of novel reversible tyrosinase and laccase inhibitors with a phenylpropanoid and hydroxylated biphenyl core was prepared using naturally occurring compounds and their activity was measured by spectrophotometric and electrochemical assays. Biosensors based on tyrosinase and laccase enzymes were constructed and used to detect the type of protein-ligand interaction and half maximal inhibitory concentration (IC(50)). Most of the inhibitors showed an IC(50) in a range of 20–423 nM for tyrosinase and 23–2619 nM for laccase. Due to the safety concerns of conventional tyrosinase and laccase inhibitors, the viability of the new compounds was assayed on PC12 cells, four of which showed a viability of roughly 80% at 40 µM. In silico studies on the crystal structure of laccase enzyme identified a hydroxylated biphenyl bearing a prenylated chain as the lead structure, which activated strong and effective interactions at the active site of the enzyme. These data were confirmed by in vivo experiments performed on the insect model Tenebrio molitur. MDPI 2020-06-11 /pmc/articles/PMC7321210/ /pubmed/32545293 http://dx.doi.org/10.3390/molecules25112709 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dettori, Maria Antonietta
Fabbri, Davide
Dessì, Alessandro
Dallocchio, Roberto
Carta, Paola
Honisch, Claudia
Ruzza, Paolo
Farina, Donatella
Migheli, Rossana
Serra, Pier Andrea
Pantaleoni, Roberto A.
Fois, Xenia
Rocchitta, Gaia
Delogu, Giovanna
Synthesis and Studies of the Inhibitory Effect of Hydroxylated Phenylpropanoids and Biphenols Derivatives on Tyrosinase and Laccase Enzymes
title Synthesis and Studies of the Inhibitory Effect of Hydroxylated Phenylpropanoids and Biphenols Derivatives on Tyrosinase and Laccase Enzymes
title_full Synthesis and Studies of the Inhibitory Effect of Hydroxylated Phenylpropanoids and Biphenols Derivatives on Tyrosinase and Laccase Enzymes
title_fullStr Synthesis and Studies of the Inhibitory Effect of Hydroxylated Phenylpropanoids and Biphenols Derivatives on Tyrosinase and Laccase Enzymes
title_full_unstemmed Synthesis and Studies of the Inhibitory Effect of Hydroxylated Phenylpropanoids and Biphenols Derivatives on Tyrosinase and Laccase Enzymes
title_short Synthesis and Studies of the Inhibitory Effect of Hydroxylated Phenylpropanoids and Biphenols Derivatives on Tyrosinase and Laccase Enzymes
title_sort synthesis and studies of the inhibitory effect of hydroxylated phenylpropanoids and biphenols derivatives on tyrosinase and laccase enzymes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7321210/
https://www.ncbi.nlm.nih.gov/pubmed/32545293
http://dx.doi.org/10.3390/molecules25112709
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