Joint technique “parallel peptide synthesis & de novo sequencing” development for the structure verification and high-throughput activity screening of biological peptides from sea cucumber (Stichopus japonicus) intestinal hydrolysate

peer-reviewed · Food Research International · 2025

peer-reviewed · Food Research International · 2025. Yimeng Li et al. This study introduces a novel joint technique combining “parallel peptide synthesis” and “de novo…
Date 2025-07-01
Type peer-reviewed
Venue Food Research International
Publisher Elsevier BV
Contribution downstream-application
DOI 10.1016/j.foodres.2025.116475
Citations (OpenAlex) 2

Abstract

This study introduces a novel joint technique combining “parallel peptide synthesis” and “de novo sequencing”, which facilitates the high-throughput screening and structure validation of biological peptides derived from food and traditional Chinese medicine (TCM). Sea cucumber (Stichopus japonicus) was used as a model organism, undergoing simulated gastrointestinal digestion followed by de novo sequencing to predict potential peptides. Subsequently, cost-effective filter pipette tips were innovatively employed as parallel reaction vessels, enabling efficient peptide synthesis through the microfluidic flow of amino acid solutions over the loaded resin. After high-throughput biological activity screening, peptide YPGQLT was identified as the most potent antioxidant and acetylcholinesterase (AChE) inhibitor. It was then subjected to a molecular docking study to further explore its potential ligand-receptor interactions. This synergistic effect highlights peptide YPGQLT as a promising candidate for Alzheimer’s disease (AD) treatment, thereby enhancing the potential biomedical application of sea cucumber. Notably, de novo predicted sequences can be further verified by comparing their characteristics, such as retention time and MS/MS spectrum, with those from the standard reference synthesized using this parallel synthesis protocol.

Authors

  1. Yimeng Li · Beijing University of Chinese Medicine
  2. Shengfang Gao · Beijing University of Chinese Medicine
  3. Xiaohui Zhang · Beijing University of Chinese Medicine
  4. Zhuo Cao · Beijing University of Chinese Medicine
  5. Youyou Guo · Beijing University of Chinese Medicine
  6. Runkun Zhao · Beijing University of Chinese Medicine
  7. Yonggang Liu · Beijing University of Chinese Medicine
  8. Xinxin Li · Beijing University of Chinese Medicine
  9. Hongying Lin · Beijing University of Chinese Medicine
  10. Qi Qin · Capital Medical University, Xuan Wu Hospital of the Capital Medical University
  11. Bingqing Yi · Beijing University of Chinese Medicine
  12. Guodong Zhao · Beijing University of Chinese Medicine

Methods and tools

  • Parallel synthesis + de novo peptide screening: Joint technique pairing de novo sequencing of a simulated-digestion hydrolysate with parallel peptide synthesis, so each predicted sequence is synthesised, screened for activity and checked against the standard’s retention time and MS/MS spectrum. Applied to sea cucumber and seahorse.

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