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Tumor necrosis factor alpha-mediated inhibition of melanogenesis is dependent on nuclear factor kappa B activation
W Englaro1, P Bahadoran, C Bertolotto
1Institut National de la Sant'e et de la Recherche Médicale, U-385, Faculté de médecine, Nice. France.
Abstract:
Melanogenesis is a physiological process resulting in the synthesis of melanin pigments which play a crucial protective role against skin photocarcinogenesis. In vivo, solar ultraviolet light triggers the secretion of numerous keratinocyte-derived factors that are implicated in the regulation of melanogenesis. Among these, tumor necrosis factor alpha (TNFalpha), a cytokine implicated in the pro-inflammatory response, down-regulates pigment synthesis in vitro. In this report, we aimed to determine the molecular mechanisms by which this cytokine inhibits melanogenesis in B16 melanoma cells. First, we show that TNFalpha inhibits the activity and protein expression of tyrosinase which is the key enzyme of melanogenesis. Further, we demonstrate that this effect is subsequent to a down-regulation of the tyrosinase promoter activity in both basal and cAMP-induced melanogenesis. Finally, we present evidence indicating that the inhibitory effect of TNFalpha on melanogenesis is dependent on nuclear factor kappa B (NFkappaB) activation. Indeed, overexpression of this transcription factor in B16 cells is sufficient to inhibit tyrosinase promoter activity. Furthermore, a mutant of inhibitory kappa B (IkappaB), that prevents NFkappaB activation, is able to revert the effect of TNFalpha on the tyrosinase promoter activity. Taken together, our results clarify the mechanisms by which TNFalpha inhibits pigmentation and point out the key role of NFkappaB in the regulation of melanogenesis.
Insights
Tumor necrosis factor alpha (TNFα) inhibits skin pigmentation by reducing tyrosinase activity and expression in melanoma cells. This process is mediated by nuclear factor kappa B (NFκB) activation, highlighting its role in regulating melanogenesis.
Area of Science:
- Molecular biology
- Dermatology
- Biochemistry
Background:
- Melanogenesis is vital for skin protection against UV radiation.
- Keratinocyte-derived factors, including TNFα, regulate melanogenesis.
- TNFα is known to inhibit pigment synthesis in vitro.
Purpose of the Study:
- To elucidate the molecular mechanisms by which TNFα inhibits melanogenesis.
- To investigate the role of tyrosinase and NFκB in TNFα-mediated inhibition of pigmentation.
Main Methods:
- Assessing tyrosinase activity and protein expression in B16 melanoma cells.
- Analyzing tyrosinase promoter activity under basal and cAMP-induced conditions.
- Investigating the involvement of NFκB and IκB in TNFα signaling.
Main Results:
- TNFα significantly inhibits tyrosinase activity and protein expression.
- TNFα down-regulates tyrosinase promoter activity, independent of cAMP induction.
- NFκB activation is essential for TNFα's inhibitory effect on melanogenesis, as demonstrated by overexpression and IκB mutant studies.
Conclusions:
- TNFα inhibits melanogenesis by suppressing tyrosinase expression and activity.
- NFκB signaling pathway plays a critical role in mediating TNFα's inhibitory effects on pigmentation.
- These findings clarify the molecular basis of TNFα-induced hypopigmentation.