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Enhanced protective effect of selenium-biofortified peptide RYNA(Se)MNDYT compared with its native peptide RYNAMNDYT in lipopolysaccharide-injured murine gut microbiota

摘要Selenopeptides may be a valuable bioactive compound to promote gut microbiota-targeted therapeutic methods for intestinal disease and hepatopathy.However,limited information is available on the utilization of selenopeptides by gut microbiota,especially Selenium(Se)function.For this purpose,the present study aimed to investigate the protective effect of selenopeptide(RYNA(Se)MNDYT,Se-P2,purity of ≥ 95%)and its original peptide(RYNAMNDYT,P2,purity of ≥ 95%)in vivo by the microbiota-metabolite axis and further analyze the potential contribution of Se biofortification to Se-P2 bioactivity.The results showed that Se-P2 exhibits a higher protective effect on lipopolysaccharide(LPS)-induced inflammation than P2,including pathology of the colon and liver,which suggested that the bioactivity of P2 was promoted by the organic combination of Se.Notably,gut microbiota composition tended to be a healthy structure by Se-P2 pretreatment in LPS-injured mice,which had a positive effect on LPS-induced gut microbiota dysbacteriosis.Additionally,only Se-P2 promoted an increase in the relative abundance of Lactobacillus,Alistipes,and Roseburia and a decrease in the relative abundance of Akkermansia,Erysipelatoclostridium,and Bacteroides in LPS-injured mice.The changes in gut microbiota were obviously correlated with the changes in metabolites and affected the metabolic pathways of valine,leucine,isoleucine,phenylalanine,tyrosine,and tryptophan biosynthesis and phenylalanine metabolism.This may be one of the key reasons for Se-P2 to exert bioactivity through the microbiota-metabolite axis.Furthermore,Se-biofortification in Se-enriched Cordyceps militaris affected the parental proteins of Se-P2 to modulate mitogen-activated protein kinase,GPI anchored protein,and carbohydrate metabolism,translation,folding,sorting and degradation,which may contribute to the bioactivity of Se-P2.Our study provides information on the effect of Se on selenopeptides in vivo,which further promotes the prospective applications of selenopeptides as dietary supplements.

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作者 Shujian Wu [1] Zhenjun Zhu [2] Mengfei Chen [1] Aohuan Huang [1] Yizhen Xie [3] Jiaming Chen [2] Liang Xue [4] Moutong Chen [4] Jumei Zhang [4] Juan Wang [5] Qingping Wu [4] Yu Ding [2] 学术成果认领
作者单位 Key Laboratory of Agricultural Microbiomics and Precision Application,Ministry of Agriculture and Rural Affairs,Guangdong Provincial Key Laboratory of Microbial Safety and Health,State Key Laboratory of Applied Microbiology Southern China,Institute of Microbiology,Guangdong Academy of Sciences,Guangzhou 510070,China;Department of Food Science and Engineering,Institute of Food Safety and Nutrition,College of Science & Engineering,College of Life Science and Technology,Jinan University,Guangzhou 510632,China [1] Department of Food Science and Engineering,Institute of Food Safety and Nutrition,College of Science & Engineering,College of Life Science and Technology,Jinan University,Guangzhou 510632,China [2] Guangdong Yuewei Edible Mushroom Technology Co.,Ltd.,Guangzhou 510530,China [3] Key Laboratory of Agricultural Microbiomics and Precision Application,Ministry of Agriculture and Rural Affairs,Guangdong Provincial Key Laboratory of Microbial Safety and Health,State Key Laboratory of Applied Microbiology Southern China,Institute of Microbiology,Guangdong Academy of Sciences,Guangzhou 510070,China [4] College of Food Science,South China Agricultural University,Guangzhou 510070,China [5]
DOI 10.26599/FSHW.2023.9250024
发布时间 2025-01-06(万方平台首次上网日期,不代表论文的发表时间)
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食品科学与人类健康(英文)

食品科学与人类健康(英文)

2024年13卷6期

3391-3402页

SCIMEDLINEISTICCSCDCA

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