Highly potent tyrosinase inhibitor, neorauflavane from Campylotropis hirtella and inhibitory mechanism with molecular docking

  • Tan, Xuefei
  • Song, Yeong Hun
  • Park, Chanin
  • Lee, Ki-Won
  • Kim, Jeong Yoon
  • ... Kim, Kwang Dong
  • 외 4명
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초록

Tyrosinase inhibition may be a means to alleviate not only skin hyperpigmentation but also neurodegeneration associated with Parkinson's disease. In the course of metabolite analysis from tyrosinase inhibitory methanol extract (80% inhibition at 20 mu g/ml) of Campylotropis hirtella, we isolated fourteen phenolic compounds, among which neorauflavane 3 emerged as a lead structure for tyrosinase inhibition. Neorauflavane 3 inhibited tyrosinase monophenolase activity with an IC50 of 30 nM. Thus this compound is 400-fold more active than kojic acid. It also inhibited diphenolase (IC50 = 500 nM), significantly. Another potent inhibitor 1 (IC50 = 2.9 mu M) was found to be the most abundant metabolite in C. hirtella. In kinetic studies, compounds 3 showed competitive inhibitory behavior against both monophenolase and diphenolase. It manifested simple reversible slow-binding inhibition against monophenolase with the following kinetic parameters: K-i(app) = 1.48 nM, k(3) = 0.0033 nM (1) min (1) and k(4) = 0.0049 min (1). Neorauflavane 3 efficiently reduced melanin content in B16 melanoma cells with 12.95 mu M of IC50. To develop a pharmacophore model, we explored the binding mode of neuroflavane 3 in the active site of tyrosinase. Docking results show that resorcinol motif of B-ring and methoxy group in A-ring play crucial roles in the binding the enzyme. (C) 2015 Elsevier Ltd. All rights reserved.

키워드

TyrosinaseCampylotropis hirtellaNeorauflavaneCompetitive inhibitorMolecular dockingMUSHROOM TYROSINASEFLAVONOIDSROOTSMELANOCYTES
제목
Highly potent tyrosinase inhibitor, neorauflavane from Campylotropis hirtella and inhibitory mechanism with molecular docking
저자
Tan, XuefeiSong, Yeong HunPark, ChaninLee, Ki-WonKim, Jeong YoonKim, Dae WookKim, Kwang DongLee, Keun WooCurtis-Long, Marcus J.Park, Ki Hun
DOI
10.1016/j.bmc.2015.11.040
발행일
2016-01-15
유형
Article
저널명
Bioorganic and Medicinal Chemistry
24
2
페이지
153 ~ 159