Screening of novel bovine‐elastin‐derived peptides with elastase inhibition and photoprotective potential: a combined in silico and in vitro study

Author:

Wu Jing1,Li Qinglan1,Cui Chun1ORCID,Xu Jucai2

Affiliation:

1. School of Food Science and Technology, South China University of Technology Guangzhou China

2. School of Biotechnology and Health Sciences & International Healthcare Innovation Institute (Jiangmen), Wuyi University Jiangmen China

Abstract

AbstractBACKGROUNDThe demand for food‐based anti‐photoaging products is surging because of the rising recognition of health and beauty, as well as enhanced comprehension of the detrimental impact of ultraviolet (UV) radiation. This study aimed to investigate the potential of bioactive peptides derived from bovine elastin, specifically focusing on identifying novel elastase inhibitory peptides and assessing their photoprotective properties using bioinformatics techniques.RESULTSA total of 48 bioactive peptides were screened in bovine elastin hydrolysate (EH) utilizing Peptide Ranker analysis. Three novel elastase inhibitory peptides, GAGQPFPI, FFPGAG and FPGIG (in descending order of activity), exhibited potent inhibitory effects on elastase in vitro, surpassing the inhibitory effect of EH by a factor of 1–2 and reaching significantly lower concentrations (8–15 times lower) than EH. The cumulative inhibitory effect of GAGQPFPI, FFPGAG, and FPGIG reached 91.5%. Further analysis revealed that FFPGAG and FPGIG exhibited mixed inhibition, whereas GAGQPFPI displayed non‐competitive inhibition. Molecular simulations showed that these peptides interacted effectively with the elastase active site through hydrogen bonding and hydrophobic interactions. Furthermore, GAGQPFPI, FFPGAG, and FPGIG demonstrated high stability in gastrointestinal digestion, demonstrated transcellular permeability across Caco‐2 cell monolayers, and exhibited remarkable photoprotective properties against UVB‐irradiated HaCaT cells.CONCLUSIONGAGQPFPI showed the most promising potential as a functional food with photoprotective effects against UVB damage and inhibitory properties against elastase. © 2023 Society of Chemical Industry.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Nutrition and Dietetics,Agronomy and Crop Science,Food Science,Biotechnology

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