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Methoxy-Substituted Tyramine Derivatives Synthesis, Computational Studies and Tyrosinase Inhibitory Kinetics

Targeting tyrosinase for melanogenesis disorders is an established strategy. Hydroxyl-substituted benzoic and cinnamic acid scaffolds were incorporated into new chemotypes that displayed in vitro inhibitory effects against mushroom and human tyrosinase for the purpose of identifying anti-melanogenic...

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Autores principales: Nazir, Yasir, Rafique, Hummera, Kausar, Naghmana, Abbas, Qamar, Ashraf, Zaman, Rachtanapun, Pornchai, Jantanasakulwong, Kittisak, Ruksiriwanich, Warintorn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8122972/
https://www.ncbi.nlm.nih.gov/pubmed/33922836
http://dx.doi.org/10.3390/molecules26092477
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author Nazir, Yasir
Rafique, Hummera
Kausar, Naghmana
Abbas, Qamar
Ashraf, Zaman
Rachtanapun, Pornchai
Jantanasakulwong, Kittisak
Ruksiriwanich, Warintorn
author_facet Nazir, Yasir
Rafique, Hummera
Kausar, Naghmana
Abbas, Qamar
Ashraf, Zaman
Rachtanapun, Pornchai
Jantanasakulwong, Kittisak
Ruksiriwanich, Warintorn
author_sort Nazir, Yasir
collection PubMed
description Targeting tyrosinase for melanogenesis disorders is an established strategy. Hydroxyl-substituted benzoic and cinnamic acid scaffolds were incorporated into new chemotypes that displayed in vitro inhibitory effects against mushroom and human tyrosinase for the purpose of identifying anti-melanogenic ingredients. The most active compound 2-((4-methoxyphenethyl)amino)-2-oxoethyl (E)-3-(2,4-dihydroxyphenyl) acrylate (Ph9), inhibited mushroom tyrosinase with an IC(50) of 0.059 nM, while 2-((4-methoxyphenethyl)amino)-2-oxoethyl cinnamate (Ph6) had an IC(50) of 2.1 nM compared to the positive control, kojic acid IC(50) 16700 nM. Results of human tyrosinase inhibitory activity in A375 human melanoma cells showed that compound (Ph9) and Ph6 exhibited 94.6% and 92.2% inhibitory activity respectively while the positive control kojic acid showed 72.9% inhibition. Enzyme kinetics reflected a mixed type of inhibition for inhibitor Ph9 (K(i) 0.093 nM) and non-competitive inhibition for Ph6 (K(i) 2.3 nM) revealed from Lineweaver–Burk plots. In silico docking studies with mushroom tyrosinase (PDB ID:2Y9X) predicted possible binding modes in the catalytic site for these active compounds. Ph9 displayed no PAINS (pan-assay interference compounds) alerts. Our results showed that compound Ph9 is a potential candidate for further development of tyrosinase inhibitors.
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spelling pubmed-81229722021-05-16 Methoxy-Substituted Tyramine Derivatives Synthesis, Computational Studies and Tyrosinase Inhibitory Kinetics Nazir, Yasir Rafique, Hummera Kausar, Naghmana Abbas, Qamar Ashraf, Zaman Rachtanapun, Pornchai Jantanasakulwong, Kittisak Ruksiriwanich, Warintorn Molecules Article Targeting tyrosinase for melanogenesis disorders is an established strategy. Hydroxyl-substituted benzoic and cinnamic acid scaffolds were incorporated into new chemotypes that displayed in vitro inhibitory effects against mushroom and human tyrosinase for the purpose of identifying anti-melanogenic ingredients. The most active compound 2-((4-methoxyphenethyl)amino)-2-oxoethyl (E)-3-(2,4-dihydroxyphenyl) acrylate (Ph9), inhibited mushroom tyrosinase with an IC(50) of 0.059 nM, while 2-((4-methoxyphenethyl)amino)-2-oxoethyl cinnamate (Ph6) had an IC(50) of 2.1 nM compared to the positive control, kojic acid IC(50) 16700 nM. Results of human tyrosinase inhibitory activity in A375 human melanoma cells showed that compound (Ph9) and Ph6 exhibited 94.6% and 92.2% inhibitory activity respectively while the positive control kojic acid showed 72.9% inhibition. Enzyme kinetics reflected a mixed type of inhibition for inhibitor Ph9 (K(i) 0.093 nM) and non-competitive inhibition for Ph6 (K(i) 2.3 nM) revealed from Lineweaver–Burk plots. In silico docking studies with mushroom tyrosinase (PDB ID:2Y9X) predicted possible binding modes in the catalytic site for these active compounds. Ph9 displayed no PAINS (pan-assay interference compounds) alerts. Our results showed that compound Ph9 is a potential candidate for further development of tyrosinase inhibitors. MDPI 2021-04-23 /pmc/articles/PMC8122972/ /pubmed/33922836 http://dx.doi.org/10.3390/molecules26092477 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Nazir, Yasir
Rafique, Hummera
Kausar, Naghmana
Abbas, Qamar
Ashraf, Zaman
Rachtanapun, Pornchai
Jantanasakulwong, Kittisak
Ruksiriwanich, Warintorn
Methoxy-Substituted Tyramine Derivatives Synthesis, Computational Studies and Tyrosinase Inhibitory Kinetics
title Methoxy-Substituted Tyramine Derivatives Synthesis, Computational Studies and Tyrosinase Inhibitory Kinetics
title_full Methoxy-Substituted Tyramine Derivatives Synthesis, Computational Studies and Tyrosinase Inhibitory Kinetics
title_fullStr Methoxy-Substituted Tyramine Derivatives Synthesis, Computational Studies and Tyrosinase Inhibitory Kinetics
title_full_unstemmed Methoxy-Substituted Tyramine Derivatives Synthesis, Computational Studies and Tyrosinase Inhibitory Kinetics
title_short Methoxy-Substituted Tyramine Derivatives Synthesis, Computational Studies and Tyrosinase Inhibitory Kinetics
title_sort methoxy-substituted tyramine derivatives synthesis, computational studies and tyrosinase inhibitory kinetics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8122972/
https://www.ncbi.nlm.nih.gov/pubmed/33922836
http://dx.doi.org/10.3390/molecules26092477
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