Guangdong Province Key Laboratory for Green Processing of Natural Products and Product Safety, College of Light Industry and Food Sciences, South China University of Technology, Guangzhou, Guangdong 510640, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2013 Apr 15;107:235-40. doi: 10.1016/j.saa.2013.01.058. Epub 2013 Feb 1.
Tricin was evaluated as a type of tyrosinase inhibitor with good efficacy compared to arbutin. Tricin functioned as a non-competitive inhibitor of tyrosinase, with an equilibrium constant of 2.30 mmol/L. The molecular mechanisms underlying the inhibition of tyrosinase by tricin were investigated by means of circular dichroism spectra, fluorescence quenching and molecular docking. These assays demonstrated that the interactions between tricin and tyrosinase did not change the secondary structure. The interaction of tricin with residues in the hydrophobic pocket of tyrosinase was revealed by fluorescence quenching; the complex was stabilized by hydrophobic associations and hydrogen bonding (with residues Asn80 and Arg267). Docking results implied that the possible inhibitory mechanisms may be attributed to the stereospecific blockade effects of tricin on substrates or products and flexible conformation alterations in the tyrosinase active center caused by weak interactions between tyrosinase and tricin. The application of this type of flavonoid as a tyrosinase inhibitor will lead to significant advances in the field of depigmentation.
tricetin 被评估为一种比熊果苷更有效的酪氨酸酶抑制剂。tricetin 作为一种非竞争性酪氨酸酶抑制剂,其平衡常数为 2.30mmol/L。通过圆二色光谱、荧光猝灭和分子对接研究了 tricin 抑制酪氨酸酶的分子机制。这些实验表明,tricetin 与酪氨酸酶之间的相互作用不会改变其二级结构。荧光猝灭揭示了 tricin 与酪氨酸酶疏水口袋中残基的相互作用;复合物通过疏水相互作用和氢键(与残基 Asn80 和 Arg267)稳定。对接结果表明,可能的抑制机制可能归因于 tricin 对底物或产物的立体特异性阻断作用,以及酪氨酸酶与 tricin 之间的弱相互作用导致酪氨酸酶活性中心构象的灵活改变。这种类黄酮作为酪氨酸酶抑制剂的应用将在脱色领域取得重大进展。