Newly identified peptide Nigrocin-OA27 inhibits UVB induced melanin production via the MITF/TYR pathway

IF 2.8 4区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Jiayi Li , Saige Yin , Ziqi Wei , Zhaoxun Xiao , Zijian Kang , Yutong Wu , Yubing Huang , Qiuye Jia , Ying Peng , Zeqiong Ru , Xiaohan Sun , Yuliu Yang , Qian Yang , Junyuan Wang , Chengxing Liu , Meifeng Yang , Ying Wang , Xinwang Yang
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Abstract

Melasma is a common skin disease induced by an increase in the content of melanin in the skin, which also causes serious physical and mental harm to patients. In this research, a novel peptide (Nigrocin-OA27) from Odorrana andersonii is shown to exert a whitening effect on C57 mice pigmentation model. The peptide also demonstrated non-toxic and antioxidant capacity, and can significantly reduce melanin content in B16 cells. Topical application effectively delivered Nigrocin-OA27 to skin's epidermal and dermal layers and exhibited significant preventive and whitening effects on the UVB-induced ear pigmentation model in C57 mice. The whitening mechanism of Nigrocin-OA27 may be related to reduced levels of the microphthalmia-associated transcription factor and the key enzyme for melanogenesis-tyrosinase (TYR). Nigrocin-OA27 also inhibited the catalytic activity by adhering to the active core of TYR, thereby reducing melanin formation and deposition. In conclusion, Nigrocin-OA27 may be a potentially effective external agent to treat melasma by inhibiting aberrant skin melanin synthesis.

新发现的肽 Nigrocin-OA27 通过 MITF/TYR 途径抑制紫外线诱导的黑色素生成
黄褐斑是一种常见的皮肤病,由皮肤中黑色素含量增加诱发,对患者的身心造成严重伤害。在这项研究中,一种来自Odorrana andersonii的新型多肽(Nigrocin-OA27)被证明对C57小鼠色素沉着模型具有美白作用。该肽还具有无毒性和抗氧化能力,能显著降低 B16 细胞中的黑色素含量。外用 Nigrocin-OA27 能有效地将其输送到皮肤的表皮层和真皮层,对紫外线诱导的 C57 小鼠耳部色素沉着模型有明显的预防和美白效果。Nigrocin-OA27 的美白机制可能与小眼病相关转录因子和黑色素生成的关键酶--酪氨酸酶(TYR)水平的降低有关。Nigrocin-OA27还通过粘附TYR的活性核心抑制其催化活性,从而减少黑色素的形成和沉积。总之,Nigrocin-OA27 可抑制皮肤黑色素的异常合成,是一种治疗黄褐斑的潜在有效外用药物。
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来源期刊
Peptides
Peptides 医学-生化与分子生物学
CiteScore
6.40
自引率
6.70%
发文量
130
审稿时长
28 days
期刊介绍: Peptides is an international journal presenting original contributions on the biochemistry, physiology and pharmacology of biological active peptides, as well as their functions that relate to gastroenterology, endocrinology, and behavioral effects. Peptides emphasizes all aspects of high profile peptide research in mammals and non-mammalian vertebrates. Special consideration can be given to plants and invertebrates. Submission of articles with clinical relevance is particularly encouraged.
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