4.7 Article

Antioxidant and anti-aging effects of a sea cucumber protein hydrolyzate and bioinformatic characterization of its composing peptides

期刊

FOOD & FUNCTION
卷 11, 期 6, 页码 5004-5016

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d0fo00560f

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资金

  1. 111 Project [B17018]
  2. Special Funds of the Central Finance to Support the Development of Local Universities and Colleges
  3. Guangdong Yangfan Innovative & Entepreneurial Research Team Program

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Sea cucumbers have been used as food delicacies and traditional medicine for centuries, and their health benefits are partly attributed to their repertoire of proteins. Peptides prepared from the sea cucumberApostichopus japonicusare reported to havein vitroantioxidant activities. Here, we investigated thein vivoantioxidant capacity of AjPH, a peptide-richA. japonicusprotein hydrolyzate, and found that AjPH is capable of increasing the survival rate and reducing the reactive oxygen species (ROS) level in the animal modelCaenorhabditis elegansunder increased oxidative stress induced by paraquat. AjPH is also shown to enhance the antioxidant defense system in paraquat-exposed nematodes, including upregulation of superoxide dismutase and catalase activities and reduction of malondialdehyde contents. To explore underpinning antioxidant mechanisms, cellular and chemical assays were used to demonstrate that AjPH not only reduces ROS accumulation in cells but also directly scavenges DPPH free radicals. Further studies indicate that AjPH can decrease age pigments and extend lifespan but does not reduce food intake, body length and brood size of the nematodes, demonstrating its capacity to delay physiological aging. Using activity-guided fractionation by ultrafiltration and gel filtration, we then isolated antioxidant fractions from AjPH and identified the sequences of their composing peptides, which were subjected toin silicoanalysis for prospective motifs, physicochemical properties and antioxidant potential. Taken together, our results provide an insight into the nutraceutical potential of the sea cucumber protein hydrolyzate for aging and related conditions and also a basis for future mechanistic studies of individual antioxidant peptides.

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