Evidence map›Paper›PMID 42196022›Full record

ArticleFoods (Basel, Switzerland)2026

Discovery and Validation of Novel Umami Peptides from Traditional Broad Bean Paste (Doubanjiang).

Dandan Song, Yashuai Wu, Yanfei Feng, Liang Yang

Abstract read
In one paragraph

Article in Foods (Basel, Switzerland), 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 · Who and what money

Authors and funding

4 authors.

Dandan SongSchool of Brewing Engineering, Moutai Institute, Renhuai 564501, China.
Yashuai WuSchool of Food Science and Engineering, South China University of Technology, Guangzhou 510640, China.
Yanfei FengSchool of Resources and Environment, Moutai Institute, Renhuai 564501, China.
Liang YangSchool of Brewing Engineering, Moutai Institute, Renhuai 564501, China.ORCID 0000-0002-2025-2067

Funding

Guizhou Key Laboratory of Microbial Resources Exploration in Fermentation industry Qiankehe Platform Talent-ZDSYS [2023] 007Moutai Institute & Guangdong Li'er'an Chemical Industry Group Co., Ltd. XYNJ20240104Moutai Institute & Guizhou Guiding distillery XYNJ20240374 & XYNJ20250032The Science and Technology Innovation Team of Moutai Institute MTXYTD202501
6 · The paper itself

Abstract

Traditional doubanjiang was investigated to identify endogenous peptides that may contribute to taste maintenance under salt-reduction conditions. Peptidomics identified 1230 peptides at -10logP ≥ 15. UMPred-FRL predicted 161 potential umami peptides, and molecular docking showed that 141 of these peptides could enter the binding site of the T1R1/T1R3 receptor. The successfully docked sequences were mainly short oligopeptides containing three to five amino acid residues. Based on docking scores, six representative candidate peptides were screened, namely EESP, SCPH, SSSGF, PDTE, SYH, and DYDS. Docking and MM-GBSA analyses suggested that these peptides mainly bound within the VFT cavity of T1R1/T1R3, and the interacting residues were dominated by polar residues such as Ser, Asn, Gln, and His and hydrophobic residues such as Tyr, Ile, Leu, and Val. MM-GBSA further suggested that vdW was the major favorable contributor, while Lipo supported complex stability. The umami thresholds of the six peptides ranged from 0.14 to 1.09 mmol/L. Experimental validation by threshold determination and sensory addition showed that all six peptides significantly increased saltiness, whereas their effects on umami differed. PDTE showed the strongest umami-enhancing effect, while SSSGF, SYH, and SCPH exhibited more pronounced saltiness synergy. These results suggest that the screened peptides do not necessarily amplify umami in complex food systems, but may contribute to taste maintenance under salt-reduction conditions through umami support, saltiness synergy, and taste-structure remodeling.

Indexed as

molecular dockingsalt reduction and umami enhancementT1R1/T1R3 receptortraditional doubanjiangumami peptides

Identifiers

PMID42196022
PMCPMC13205413

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