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Identification of a Novel Peptide with Alcohol Dehydrogenase Activating Ability from Ethanol-Induced Lactococcus lactis: A Combined In Silico Prediction and In Vivo Validation

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논문

Identification of a Novel Peptide with Alcohol Dehydrogenase Activating Ability from Ethanol-Induced Lactococcus lactis: A Combined In Silico Prediction and In Vivo Validation

학술지

Journal of agricultural and food chemistry

저자명

Chen, Sisi; Yi, Juanjuan; Kang, Qiaozhen; Song, Mo; Raubenheimer, David; Lu, Jike

초록

<P>Alcohol dehydrogenase (ADH) is a crucial rate-limiting enzyme in alcohol metabolism. Our previous research found that ethanol-induced intracellular extracts of <I>Lactococcus lactis</I> (<I>L. lactis</I>) could enhance alcohol metabolism in mice, but the responsible compounds remain unidentified. The study aimed to screen potential ADH-activating peptides from ethanol-induced <I>L. lactis</I> using virtual screening and molecular docking calculation. Among them, the pentapeptide FAPEG might bind to ADH through hydrophobic interaction and hydrogen bonds, then enhancing ADH activity. Spectroscopy analysis further investigated the peptide-enzyme interaction between FAPEG and ADH, including changes in the amino acid residue microenvironment and secondary structural alterations. Furthermore, FAPEG could protect against alcoholic liver injury (ALI) in mice by reducing blood alcohol concentration, enhancing the activity of antioxidant and alcohol metabolism enzymes, and attenuating alcohol-induced hepatotoxicity, which was related to the activation of the Nrf2/keap1/HO-1 signaling pathway. The study provided preliminary evidence that the generation of ADH-activating peptides in ethanol-induced <I>L. lactis</I> has the potential in preventing ALI in mice using in silico prediction and in vivo validation approaches.</P><BR>[FIG OMISSION]</BR>

발행연도

2024

발행기관

American Chemical Society

ISSN

0021-8561

ISSN

1520-5118

72

11

페이지

pp.5746-5756

주제어

in silico prediction; molecular docking; ADH-activating peptides; alcoholic liver injury; Nrf2/Keap1/HO-1 signaling pathway

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1 2023-12-11

논문; 2024-03-20

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