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npj Science of Food· 2026Q1

Unraveling umami and kokumi: taste characteristics and molecular mechanisms of milk-derived peptides

Yanmei Xi, Fei Pan, Akerke Kulaipbekova, Zhanar Nabiyeva et al.

Short summary

Milk-derived peptides LSFD, LKPTPEGD (LD8), and TMKGLDIQ (TQ8) exhibit the lowest umami detection thresholds, while EDIKQME shows the strongest kokumi enhancement, with identified peptides demonstrating stability in mildly acidic to neutral conditions and at thermal processing temperatures.

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Abstract

Although taste-active peptides have been isolated from enzymatic hydrolysates of defatted high-protein milk powder, their sensory properties, processing stability, and receptor-binding mechanisms remain largely unexplored. In this study, we synthesized milk-derived taste- active peptides in vitro and systematically characterized their taste profiles and underlying molecular mechanisms Eight key taste-activate peptides were identified from milk-derived protein hydrolysates. LSFD, LKPTPEGD (LD8), and TMKGLDIQ (TQ8) exhibited the lowest umami detection thresholds among all tested peptides. At a concentration of 1 mg/mL, the glutathione equivalent values of these peptides ranged from 0.66 to 1.48 mg/mL, with EDIKQME exhibiting the strongest kokumi-enhancing activity. All identified peptides remained stable under mildly acidic to near-neutral conditions (pH 4–6), and some exhibited high thermal stability at 75–85 °C, indicating their suitability for thermally processed foods. Furthermore, LSFD interacts with both CaSR and T1R1/T1R3 receptors via hydrogen bonds and hydrophobic interactions. Molecular dynamics simulations revealed conformational changes induced by LSFD binding to these receptors, providing novel insights into the dynamic mechanisms underlying peptide-receptor recognition. Collectively, these milk-derived taste-active peptides show considerable potential as natural flavor enhancers in food applications.

The authors' abstract, as published at the source. npj Science of Food, 2026 · DOI ↗

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