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Molecular Docking, Synthesis, and Tyrosinase Inhibition Activity of Acetophenone Amide: Potential Inhibitor of Melanogenesis

Tyrosinase and its related proteins are responsible for pigmentation disorders, and inhibiting tyrosinase is an established strategy to treat hyperpigmentation. The carbonyl scaffolds can be effective inhibitors of tyrosinase activity, and the fact that both benzoic and cinnamic acids are safe natur...

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Autores principales: Nazir, Yasir, Rafique, Hummera, Roshan, Sadia, Shamas, Shazia, Ashraf, Zaman, Rafiq, Muhammad, Tahir, Tehreem, Qureshi, Zia-Ur-Rahman, Aslam, Alvina, Asad, Muhammad Hassham Hassan Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8766184/
https://www.ncbi.nlm.nih.gov/pubmed/35059457
http://dx.doi.org/10.1155/2022/1040693
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author Nazir, Yasir
Rafique, Hummera
Roshan, Sadia
Shamas, Shazia
Ashraf, Zaman
Rafiq, Muhammad
Tahir, Tehreem
Qureshi, Zia-Ur-Rahman
Aslam, Alvina
Asad, Muhammad Hassham Hassan Bin
author_facet Nazir, Yasir
Rafique, Hummera
Roshan, Sadia
Shamas, Shazia
Ashraf, Zaman
Rafiq, Muhammad
Tahir, Tehreem
Qureshi, Zia-Ur-Rahman
Aslam, Alvina
Asad, Muhammad Hassham Hassan Bin
author_sort Nazir, Yasir
collection PubMed
description Tyrosinase and its related proteins are responsible for pigmentation disorders, and inhibiting tyrosinase is an established strategy to treat hyperpigmentation. The carbonyl scaffolds can be effective inhibitors of tyrosinase activity, and the fact that both benzoic and cinnamic acids are safe natural substances with such a scaffolded structure, it was speculated that hydroxyl-substituted benzoic and cinnamic acid derivatives may exhibit potent tyrosinase inhibitory activity. These moieties were incorporated into new chemotypes that displayed in vitro inhibitory effect against mushroom tyrosinase with a view to explore antimelanogenic ingredients. The most active compound, 2-((3-acetylphenyl)amino)-2-oxoethyl(E)-3-(2,4-dihydroxyphenyl)acrylate (5c), inhibited mushroom tyrosinase with an IC(50) of 0.0020 ± 0.0002 μM, while 2-((3-acetylphenyl)amino)-2-oxoethyl 2,4-dihydroxybenzoate (3c) had an IC(50) of 27.35 ± 3.6 μM in comparison to the positive control arbutin and kojic acid with a tyrosinase inhibitory activity of IC(50) of 191.17 ± 5.5 μM and IC(50) of 16.69 ± 2.8 μM, respectively. Analysis of enzyme kinetics revealed that 5c is a competitive and reversible inhibitor with dissociation constant (Ki) value 0.0072 μM. In silico docking studies with mushroom tyrosinase (PDB ID 2Y9X) predicted possible binding modes in the enzymatic pocket for these compounds. The orthohydroxyl of the cinnamic acid moiety of 5c is predicted to form hydrogen bond with the active site side chain carbonyl of Asn 260 (2.16 Å) closer to the catalytic site Cu ions. The acetyl carbonyl is picking up another hydrogen bond with Asn 81 (1.90 Å). The inhibitor 5c passed the panassay interference (PAINS) alerts. This study presents the potential of hydroxyl-substituted benzoic and cinnamic acids and could be beneficial for various cosmetic formulations.
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spelling pubmed-87661842022-01-19 Molecular Docking, Synthesis, and Tyrosinase Inhibition Activity of Acetophenone Amide: Potential Inhibitor of Melanogenesis Nazir, Yasir Rafique, Hummera Roshan, Sadia Shamas, Shazia Ashraf, Zaman Rafiq, Muhammad Tahir, Tehreem Qureshi, Zia-Ur-Rahman Aslam, Alvina Asad, Muhammad Hassham Hassan Bin Biomed Res Int Research Article Tyrosinase and its related proteins are responsible for pigmentation disorders, and inhibiting tyrosinase is an established strategy to treat hyperpigmentation. The carbonyl scaffolds can be effective inhibitors of tyrosinase activity, and the fact that both benzoic and cinnamic acids are safe natural substances with such a scaffolded structure, it was speculated that hydroxyl-substituted benzoic and cinnamic acid derivatives may exhibit potent tyrosinase inhibitory activity. These moieties were incorporated into new chemotypes that displayed in vitro inhibitory effect against mushroom tyrosinase with a view to explore antimelanogenic ingredients. The most active compound, 2-((3-acetylphenyl)amino)-2-oxoethyl(E)-3-(2,4-dihydroxyphenyl)acrylate (5c), inhibited mushroom tyrosinase with an IC(50) of 0.0020 ± 0.0002 μM, while 2-((3-acetylphenyl)amino)-2-oxoethyl 2,4-dihydroxybenzoate (3c) had an IC(50) of 27.35 ± 3.6 μM in comparison to the positive control arbutin and kojic acid with a tyrosinase inhibitory activity of IC(50) of 191.17 ± 5.5 μM and IC(50) of 16.69 ± 2.8 μM, respectively. Analysis of enzyme kinetics revealed that 5c is a competitive and reversible inhibitor with dissociation constant (Ki) value 0.0072 μM. In silico docking studies with mushroom tyrosinase (PDB ID 2Y9X) predicted possible binding modes in the enzymatic pocket for these compounds. The orthohydroxyl of the cinnamic acid moiety of 5c is predicted to form hydrogen bond with the active site side chain carbonyl of Asn 260 (2.16 Å) closer to the catalytic site Cu ions. The acetyl carbonyl is picking up another hydrogen bond with Asn 81 (1.90 Å). The inhibitor 5c passed the panassay interference (PAINS) alerts. This study presents the potential of hydroxyl-substituted benzoic and cinnamic acids and could be beneficial for various cosmetic formulations. Hindawi 2022-01-11 /pmc/articles/PMC8766184/ /pubmed/35059457 http://dx.doi.org/10.1155/2022/1040693 Text en Copyright © 2022 Yasir Nazir et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Nazir, Yasir
Rafique, Hummera
Roshan, Sadia
Shamas, Shazia
Ashraf, Zaman
Rafiq, Muhammad
Tahir, Tehreem
Qureshi, Zia-Ur-Rahman
Aslam, Alvina
Asad, Muhammad Hassham Hassan Bin
Molecular Docking, Synthesis, and Tyrosinase Inhibition Activity of Acetophenone Amide: Potential Inhibitor of Melanogenesis
title Molecular Docking, Synthesis, and Tyrosinase Inhibition Activity of Acetophenone Amide: Potential Inhibitor of Melanogenesis
title_full Molecular Docking, Synthesis, and Tyrosinase Inhibition Activity of Acetophenone Amide: Potential Inhibitor of Melanogenesis
title_fullStr Molecular Docking, Synthesis, and Tyrosinase Inhibition Activity of Acetophenone Amide: Potential Inhibitor of Melanogenesis
title_full_unstemmed Molecular Docking, Synthesis, and Tyrosinase Inhibition Activity of Acetophenone Amide: Potential Inhibitor of Melanogenesis
title_short Molecular Docking, Synthesis, and Tyrosinase Inhibition Activity of Acetophenone Amide: Potential Inhibitor of Melanogenesis
title_sort molecular docking, synthesis, and tyrosinase inhibition activity of acetophenone amide: potential inhibitor of melanogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8766184/
https://www.ncbi.nlm.nih.gov/pubmed/35059457
http://dx.doi.org/10.1155/2022/1040693
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