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◆ Food chemistry2026-08-18

A multi-modal workflow identifies non-γ-glutamyl kokumi peptides in plant proteins.

Christina M Reumiller, Raise Ahmad, Stephen R Haines, Jihan Kim, Ancy Thomas, David O Hooks, Debashree Roy, Harjinder Singh, Evelyne Maes

原始摘要(英文原文)· Original abstract
Plant proteins are increasingly incorporated into sustainable foods, yet their sensory performance falls short of consumer expectations. Kokumi sensation is typically associated with γ-glutamyl peptides, which enhance mouthfulness and flavour continuity via activation of the calcium-sensing receptor (CaSR). This study develops a multi-modal workflow to discover plant-derived CaSR-active peptides beyond γ-glutamyl motifs. Hemp, quinoa, and black gram were profiled using untargeted proteomics and in silico cryptide prediction. Black gram protein concentrate demonstrated the highest kokumi-generating potential and was subjected to protease A hydrolysis, followed by γ-glutamination, or fermentation with Lactococcus lactis strains. Peptidomics identified >8900 peptides across treatments, their kokumi relevance was predicted through molecular docking, and validated using a CaSR assay. While γ-glutamination generated potent CaSR allosteric agonists, multi-modal screening revealed novel non-γ-glutamyl peptides, including Tyr-Phe-Tyr, capable of activating CaSR. These findings expand the diversity of plant-derived kokumi relevant peptides and support flavour optimisation of plant-based foods.
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A multi-modal workflow identifies non-γ-glutamyl kokumi peptides in plant proteins. — 科研速览 Science Skim