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Anthocyanins from Hibiscus syriacus L. Inhibit Melanogenesis by Activating the ERK Signaling Pathway

机译:芙蓉花青素通过激活ERK信号通路抑制黑素生成。

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摘要

L. exhibited promising potential as a new source of food and colorants containing various anthocyanins. However, the function of anthocyanins from L. has not been investigated. In the current study, we evaluated whether anthocyanins from the L. varieties Pulsae and Paektanshim (PS and PTS) inhibit melanin biogenesis. B16F10 cells and zebrafish larvae were exposed to PS and PTS in the presence or absence of α-melanocyte-stimulating hormone (α-MSH), and melanin contents accompanied by its regulating genes and proteins were analyzed. PS and PTS moderately downregulated mushroom tyrosinase activity , but significantly decreased extracellular and intracellular melanin production in B16F10 cells, and inhibited α-MSH-induced expression of microphthalmia-associated transcription factor (MITF) and tyrosinase. PS and PTS also attenuated pigmentation in α-MSH-stimulated zebrafish larvae. Furthermore, PS and PTS activated the phosphorylation of extracellular signal-regulated kinase (ERK), whereas PD98059, a specific ERK inhibitor, completely reversed PS- and PTS-mediated anti-melanogenic activity in B16F10 cells and zebrafish larvae, which indicates that PS- and PTS-mediated anti-melanogenic activity is due to ERK activation. Moreover, chromatography data showed that PS and PTS possessed 17 identical anthocyanins as a negative regulator of ERK. These findings suggested that anthocyanins from PS and PTS inhibited melanogenesis and by activating the ERK signaling pathway.
机译:L.作为含有各种花色苷的食品和着色剂的新来源,具有广阔的发展潜力。但是,尚未研究来自L.的花色苷的功能。在当前的研究中,我们评估了来自L.品种Pulsae和Paektanshim(PS和PTS)的花色苷是否抑制黑色素的生物发生。在有或没有α-黑素细胞刺激激素(α-MSH)的情况下,将B16F10细胞和斑马鱼幼虫暴露于PS和PTS,并分析其黑色素含量及其调节基因和蛋白质。 PS和PTS适度下调了蘑菇酪氨酸酶活性,但显着降低了B16F10细胞的细胞外和细胞内黑色素生成,并抑制了α-MSH诱导的小眼相关转录因子(MITF)和酪氨酸酶的表达。 PS和PTS也会减弱α-MSH刺激的斑马鱼幼虫的色素沉着。此外,PS和PTS激活了细胞外信号调节激酶(ERK)的磷酸化,而特定的ERK抑制剂PD98059则完全逆转了B16F10细胞和斑马鱼幼虫中PS和PTS介导的抗黑色素生成活性,这表明PS- PTS介导的抗黑色素生成活性归因于ERK活化。此外,色谱数据表明PS和PTS具有17个相同的花色苷作为ERK的负调节剂。这些发现表明,来自PS和PTS的花色苷可通过激活ERK信号通路抑制黑色素生成。

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