4.7 Article

Tyrosinase Inhibitory Polyphenols from Roots of Morus Ihou

期刊

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
卷 57, 期 4, 页码 1195-1203

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jf8033286

关键词

Tyrosinase; slow-binding; flavonoid; phenylbenzofuran; Morus lhou

资金

  1. Korea Healthcare technology RD Project
  2. Ministry of Health Welfare [A080813]
  3. MOST/KOSEF [R152003-012-0200-0, 2007-00614]
  4. Korea Health Promotion Institute [A080813] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
  5. National Research Foundation of Korea [2007-00614, 과C6A2202, 2003-0041386] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Twelve polyphenols (1-12) possessing tyrosinase inhibitory properties were isolated from the methanol (95%) extract of Morus Ihou. The isolated compounds consisted of four flavanones (1-4), four flavones (5-8), and four phenylbenzofuranes (9-12). Moracin derivative 12 proved to be new a compound which was fully characterized. Compounds 1-12 were evaluated for both monophenolase and diphenolase (the two steps catalyzed by tyrosinase) inhibition to identify the structural characteristics required for mushroom tyrosinase inhibition. We observed that all parent compounds (1, 5, and 9) possessing an unsubstituted resorcinol group were highly effective inhibitors of monophenolase activity (IC50 values of 1.3, 1.2, and 7.4 mu M). The potency of the inhibitors diminished with alkyl substitution on either the aromatic ring or the hydroxyl functions. Interestingly, flavone 5 was shown to possess only monophenolase inhibitory activity, but flavanone 1 and phenylbenzofuran 9 inhibited diphenolase as well as monophenolase significantly. The inhibitory mode of these species was also dependent upon the skeleton: phenylbenzofuran 9 manifested a simple competitive inhibition mode for monophenolase and diphenolase; on the other hand flavanone 1 (monophenolase, k(3) = 0. 1966 min(-1) mu M-1, k(4) = 0.0082 min(-1), and K-i(app) = 0.0468 mu M; diphenolase, k(3) = 0.0014 min(-1) mu M-1, k(4) = 0.0013 min(-1), and K-i(app) = 0.8996 mu M) and flavone 5 both showed time-dependent inhibition against monophenolase. Compound 1 operated according to the simple reversible slow binding model whereas compound 5 operated under the enzyme isomerization model.

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