Ultraviolet (UV)-mediated melanogenesis is a complex process that remains to be elucidated. α-Melanocyte stimulating hormone (α-MSH)-induced cyclic AMP (cAMP)-signaling pathway is the major melanogenic signal transduction leading to upregulation of ...
Ultraviolet (UV)-mediated melanogenesis is a complex process that remains to be elucidated. α-Melanocyte stimulating hormone (α-MSH)-induced cyclic AMP (cAMP)-signaling pathway is the major melanogenic signal transduction leading to upregulation of tyrosinase. It is known that UV stimulates nitric oxide (NO) generation and that the NO-induced cyclic GMP (cGMP)-signaling pathway is also important in the expression of tyrosinase during melanogenesis. Because tyrosinase is a rate-limiting enzyme in melanin synthesis, it is an attractive target for research on the biochemistry of melanogenesis and management of hyperpigmentary disorders. In an attempt to find a novel anti-melanogenic agent, (Z)-5-(2,4-dihydroxybenzylidene)thiazolidine-2,4-dione (MHY498) was synthesized as a potential tyrosinase inhibitor. Current research is aimed to evaluate the inhibitory effects of MHY498 on melanogenesis and to elucidate its mechanism. First, MHY498 (IC50 = 3.55 μM) inhibited more potently mushroom tyrosinase activity than the well-known tyrosinase inhibitor, kojic acid (IC50 = 22.79 μM), in a concentration-dependent manner. Kinetic studies and docking simulation showed that MHY498 was a competitive inhibitor against tyrosinase with higher binding affinity than kojic acid. Second, MHY498 inhibited murine tyrosinase activity and decreased melanin production without cytotoxicity in B16F10 melanoma cells treated with α-MSH. Western blot analysis showed that MHY498 inhibited the expression of tyrosinase and its transcription factor, microphthalmia associated transcription factor (MITF), via cAMP-PKA-CREB signaling pathway. Third, MHY498 inhibited sodium nitroprusside (SNP)-induced NO levels, tyrosinase activity and melanin synthesis in B16F10 melanoma cells. The increased level of cGMP by SNP was reduced by pretreatment with MHY498 in a concentration-dependent manner. In Western blot analysis, MHY498 effectively suppressed the levels of pCREB, MITF, and tyrosinase in the SNP-stimulated melanogenesis. Collectively, MHY498 inhibited α-MSH-induced and NO-induced melanogenesis through the direct inhibition of tyrosinase activity and the suppression of the levels of MITF, CREB, and tyrosinase via the modulation of the two signaling pathways, cAMP-PKA and cGMP-PKG. These findings suggest that MHY498 can be a promising therapeutic agent for the prevention and treatment of skin hyperpigmentation.