Multifunctional Tyrosinase Inhibitor Peptides with Copper Chelating, UV-Absorption and Antioxidant Activities: Kinetic and Docking Studies

Nature-derived tyrosinase inhibitors are of great industrial interest. Three monophenolase inhibitor peptides (MIPs) and three diphenolase inhibitor peptides (DIPs) from a previous study were investigated for their in vitro tyrosinase inhibitory effects, mode of inhibition, copper-chelating activity...

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Main Authors: Pei-Gee Yap, Chee-Yuen Gan
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Foods
Subjects:
Online Access:https://www.mdpi.com/2304-8158/10/3/675
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spelling doaj-9f9f152ce05d4f28b458208364162b012021-03-23T00:04:24ZengMDPI AGFoods2304-81582021-03-011067567510.3390/foods10030675Multifunctional Tyrosinase Inhibitor Peptides with Copper Chelating, UV-Absorption and Antioxidant Activities: Kinetic and Docking StudiesPei-Gee Yap0Chee-Yuen Gan1Analytical Biochemistry Research Centre, University Innovation Incubator Building, Universiti Sains Malaysia, Lebuh Bukit Jambul, Bayan Lepas 11900, Penang, MalaysiaAnalytical Biochemistry Research Centre, University Innovation Incubator Building, Universiti Sains Malaysia, Lebuh Bukit Jambul, Bayan Lepas 11900, Penang, MalaysiaNature-derived tyrosinase inhibitors are of great industrial interest. Three monophenolase inhibitor peptides (MIPs) and three diphenolase inhibitor peptides (DIPs) from a previous study were investigated for their in vitro tyrosinase inhibitory effects, mode of inhibition, copper-chelating activity, sun protection factor (SPF) and antioxidant activities. DIP1 was found to be the most potent tyrosinase inhibitor (IC<sub>50</sub> = 3.04 ± 0.39 mM), which could be due to the binding interactions between its aromatic amino acid residues (Y2 and D7) with tyrosinase hotspots (H85, V248, H258, H263, F264, R268, V283 and E322) and its ability to chelate copper ion within the substrate-binding pocket. The conjugated planar rings of tyrosine and tryptophan may interact with histidine within the active site to provide stability upon enzyme-peptide binding. This postulation was later confirmed as the Lineweaver–Burk analysis had identified DIP1 as a competitive inhibitor and DIP1 also showed 36.27 ± 1.17% of copper chelating activity. In addition, DIP1 provided the highest SPF value (11.9 ± 0.04) as well as ferric reducing antioxidant power (FRAP) (5.09 ± 0.13 mM FeSO<sub>4</sub>), 2,2′–azinobis(3-ethylbenzothiazoline-6-sulphonic acid) diammonium salt (ABTS) (11.34 ± 0.90%) and 2,2-diphenyl-1-picrylhydrazyl (DPPH) (29.14 ± 1.36%) free radical scavenging activities compared to other peptides. These results demonstrated that DIP1 could be a multifunctional anti-tyrosinase agent with pharmaceutical and cosmeceutical applications.https://www.mdpi.com/2304-8158/10/3/675anti-pigmentation peptideanti-agingstructure–activity relationship analysismetal chelationsun protection factor
collection DOAJ
language English
format Article
sources DOAJ
author Pei-Gee Yap
Chee-Yuen Gan
spellingShingle Pei-Gee Yap
Chee-Yuen Gan
Multifunctional Tyrosinase Inhibitor Peptides with Copper Chelating, UV-Absorption and Antioxidant Activities: Kinetic and Docking Studies
Foods
anti-pigmentation peptide
anti-aging
structure–activity relationship analysis
metal chelation
sun protection factor
author_facet Pei-Gee Yap
Chee-Yuen Gan
author_sort Pei-Gee Yap
title Multifunctional Tyrosinase Inhibitor Peptides with Copper Chelating, UV-Absorption and Antioxidant Activities: Kinetic and Docking Studies
title_short Multifunctional Tyrosinase Inhibitor Peptides with Copper Chelating, UV-Absorption and Antioxidant Activities: Kinetic and Docking Studies
title_full Multifunctional Tyrosinase Inhibitor Peptides with Copper Chelating, UV-Absorption and Antioxidant Activities: Kinetic and Docking Studies
title_fullStr Multifunctional Tyrosinase Inhibitor Peptides with Copper Chelating, UV-Absorption and Antioxidant Activities: Kinetic and Docking Studies
title_full_unstemmed Multifunctional Tyrosinase Inhibitor Peptides with Copper Chelating, UV-Absorption and Antioxidant Activities: Kinetic and Docking Studies
title_sort multifunctional tyrosinase inhibitor peptides with copper chelating, uv-absorption and antioxidant activities: kinetic and docking studies
publisher MDPI AG
series Foods
issn 2304-8158
publishDate 2021-03-01
description Nature-derived tyrosinase inhibitors are of great industrial interest. Three monophenolase inhibitor peptides (MIPs) and three diphenolase inhibitor peptides (DIPs) from a previous study were investigated for their in vitro tyrosinase inhibitory effects, mode of inhibition, copper-chelating activity, sun protection factor (SPF) and antioxidant activities. DIP1 was found to be the most potent tyrosinase inhibitor (IC<sub>50</sub> = 3.04 ± 0.39 mM), which could be due to the binding interactions between its aromatic amino acid residues (Y2 and D7) with tyrosinase hotspots (H85, V248, H258, H263, F264, R268, V283 and E322) and its ability to chelate copper ion within the substrate-binding pocket. The conjugated planar rings of tyrosine and tryptophan may interact with histidine within the active site to provide stability upon enzyme-peptide binding. This postulation was later confirmed as the Lineweaver–Burk analysis had identified DIP1 as a competitive inhibitor and DIP1 also showed 36.27 ± 1.17% of copper chelating activity. In addition, DIP1 provided the highest SPF value (11.9 ± 0.04) as well as ferric reducing antioxidant power (FRAP) (5.09 ± 0.13 mM FeSO<sub>4</sub>), 2,2′–azinobis(3-ethylbenzothiazoline-6-sulphonic acid) diammonium salt (ABTS) (11.34 ± 0.90%) and 2,2-diphenyl-1-picrylhydrazyl (DPPH) (29.14 ± 1.36%) free radical scavenging activities compared to other peptides. These results demonstrated that DIP1 could be a multifunctional anti-tyrosinase agent with pharmaceutical and cosmeceutical applications.
topic anti-pigmentation peptide
anti-aging
structure–activity relationship analysis
metal chelation
sun protection factor
url https://www.mdpi.com/2304-8158/10/3/675
work_keys_str_mv AT peigeeyap multifunctionaltyrosinaseinhibitorpeptideswithcopperchelatinguvabsorptionandantioxidantactivitieskineticanddockingstudies
AT cheeyuengan multifunctionaltyrosinaseinhibitorpeptideswithcopperchelatinguvabsorptionandantioxidantactivitieskineticanddockingstudies
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