Anti-Melanogenic Effects of Takifugu flavidus Muscle Hydrolysate in B16F10 Melanoma Cells and Zebrafish

Author:

Hu Jinjin12,Chen Bei2ORCID,Qu Shuaijie3,Liu Shuji2ORCID,Yang Xiaoyu3,Qiao Kun2ORCID,Su Yongchang2,Liu Zhihui4,Chen Xiaoe1,Liu Zhiyu2,Wang Qin3ORCID

Affiliation:

1. College of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, China

2. Key Laboratory of Cultivation and High-Value Utilization of Marine Organisms in Fujian Province, Fisheries Research Institute of Fujian, Xiamen 361000, China

3. School of Life Sciences, Xiamen University, Xiamen 361100, China

4. College of Food Sciences & Technology, Shanghai Ocean University, Shanghai 201306, China

Abstract

Abnormal melanogenesis can lead to hyperpigmentation. Tyrosinase (TYR), a key rate-limiting enzyme in melanin production, is an important therapeutic target for these disorders. We investigated the TYR inhibitory activity of hydrolysates extracted from the muscle tissue of Takifugu flavidus (TFMH). We used computer-aided virtual screening to identify a novel peptide that potently inhibited melanin synthesis, simulated its binding mode to TYR, and evaluated functional efficacy in vitro and in vivo. TFMH inhibited the diphenolase activities of mTYR, reducing TYR substrate binding activity and effectively inhibiting melanin synthesis. TFMH indirectly reduced cAMP response element-binding protein phosphorylation in vitro by downregulating melanocortin 1 receptor expression, thereby inhibiting expression of the microphthalmia-associated transcription factor, further decreasing TYR, tyrosinase related protein 1, and dopachrome tautomerase expression and ultimately impeding melanin synthesis. In zebrafish, TFMH significantly reduced black spot formation. TFMH (200 μg/mL) decreased zebrafish TYR activity by 43% and melanin content by 52%. Molecular dynamics simulations over 100 ns revealed that the FGFRSP (T-6) peptide stably binds mushroom TYR via hydrogen bonds and ionic interactions. T-6 (400 μmol/L) reduced melanin content in B16F10 melanoma cells by 71% and TYR activity by 79%. In zebrafish, T-6 (200 μmol/L) inhibited melanin production by 64%. TFMH and T-6 exhibit good potential for the development of natural skin-whitening cosmetic products.

Funder

Zhejiang Provincial Natural Science Foundation of China

Youth Science and Technology Innovation Program of Xiamen Marine and Fishery Development Special Funds

Science and Technology Leadership Program of the Fisheries Research Institute of Fujian

Province-Owned Public Scientific Research Institutes in Fujian Province

Special Funds Program for Promoting High-Quality Development of Marine and Fishery Industry in Fujian Province

Xiamen Southern Oceanographic Center

Publisher

MDPI AG

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