Novel umami peptide from Hypsizygus marmoreus hydrolysate and molecular docking to the taste receptor T1R1/T1R3

被引:57
作者
Chang, Jincui [1 ]
Li, Xue [2 ]
Liang, Yi [1 ]
Feng, Tao [1 ]
Sun, Min [1 ]
Song, Shiqing [1 ]
Yao, Lingyun [1 ]
Wang, Huatian [1 ]
Hou, Feina [1 ]
机构
[1] Shanghai Inst Technol, Sch Perfume & Aroma Technol, Shanghai 201418, Peoples R China
[2] Univ Shanghai Sci & Technol, Sch Hlth Sci & Engn, Shanghai 200093, Peoples R China
关键词
Hypsizygus marmoreus; Umami peptide; Sensory evaluation; Molecular docking; CONSECUTIVE CHROMATOGRAPHY; ENHANCING PEPTIDES; IDENTIFICATION; MUSHROOM;
D O I
10.1016/j.foodchem.2022.134163
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Hypsizygus marmoreus is an edible variety of mushroom with a distinct umami taste, which might be contributed by amino acids and umami peptides. Umami peptides have been widely studied, except for those from Hypsizygus marmoreus. Therefore, the main purpose of this study was to find new umami peptides in it. After the mushrooms were enzymatically hydrolyzed, they were separated and characterized by UF, GFC, RP-HPLC, UPLC-Q-TOF MS/ MS and the umami peptide EGTAG was obtained. Sensory evaluation found that EGTAG had distinct umami taste with thresholds of 8.26 mmol/L and 10.04 mmol/L in water and chicken consomme ', respectively. Molecular docking results showed that Glu120, Ser142, Asp162 and Gln361 of T1R1/T1R3 may play critical roles. Hydrogen and hydrophobic interactions were the main binding forces between T1R1/T1R3 and the umami peptide. We proposed umami peptide from Hypsizygus marmoreus may be used as savory enhancer in the saltreducing foods in the future. Hypotheses: Edible fungi generally have umami taste and umami peptides from edible fungi had been reported in the literature. Hypsizygus marmoreus belongs to edible fungi and has umami characteristics, so it can be inferred that Hypsizygus marmoreus contains umami peptides.
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页数:9
相关论文
共 43 条
[1]   Identification of a novel umami peptide in tempeh (Indonesian fermented and its mechanism to the umami T1R [J].
Amin, Muhamad Nur Ghoyatul ;
Kusnadi, Joni ;
Hsu, Jue-Liang ;
Doerksen, Robert J. ;
Huang, Tzou-Chi .
FOOD CHEMISTRY, 2020, 333
[2]   Sensory and structural characterization of umami peptides derived from sunflower seed [J].
Bao, Xiaolan ;
Ma, Sarina ;
Fu, Yanan ;
Wu, Jiale ;
Zhang, Meili .
CYTA-JOURNAL OF FOOD, 2020, 18 (01) :485-492
[3]  
Bu Y, 2021, FOOD FUNCT, V12, P5027, DOI [10.1039/D0FO03326J, 10.1039/d0fo03326j]
[4]  
Chauhan G., 2017, Food Biol, V6, P1, DOI [10.19071/fbiol.2017.v6.3139, DOI 10.19071/FBIOL.2017.V6.3139]
[5]   Taste characteristics and umami mechanism of novel umami peptides and umami-enhancing peptides isolated from the hydrolysates of Sanhuang Chicken [J].
Chen, Mengdi ;
Gao, Xinchang ;
Pan, Daodong ;
Xu, Shenlu ;
Zhang, Haihua ;
Sun, Yangying ;
He, Jun ;
Dang, Yali .
EUROPEAN FOOD RESEARCH AND TECHNOLOGY, 2021, 247 (07) :1633-1644
[6]   Molecular docking and simulation of the synergistic effect between umami peptides, monosodium glutamate and taste receptor T1R1/T1R3 [J].
Dang, Yali ;
Hao, Li ;
Cao, Jinxuan ;
Sun, Yangying ;
Zeng, Xiaoqun ;
Wu, Zhen ;
Pan, Daodong .
FOOD CHEMISTRY, 2019, 271 :697-706
[7]   Interaction Between Umami Peptide and Taste Receptor T1R1/T1R3 [J].
Dang, Yali ;
Gao, Xinchang ;
Xie, Aiying ;
Wu, Xueqian ;
Ma, Fumin .
CELL BIOCHEMISTRY AND BIOPHYSICS, 2014, 70 (03) :1841-1848
[8]   Characterization of an intense bitter-tasting 1H,4H-quinolizinium-7-olate by application of the taste dilution analysis, a novel bioassay for the screening and identification of taste-active compounds in foods [J].
Frank, O ;
Ottinger, H ;
Hofmann, T .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2001, 49 (01) :231-238
[9]   Interactions between umami and other flavor characteristics [J].
Fuke, S ;
Ueda, Y .
TRENDS IN FOOD SCIENCE & TECHNOLOGY, 1996, 7 (12) :407-411
[10]   Isolation and screening of umami peptides from preserved egg yolk by nano-HPLC-MS/MS and molecular docking [J].
Gao, Binghong ;
Hu, Xiaobo ;
Xue, Hui ;
Li, Ruiling ;
Liu, Huilan ;
Han, Tianfeng ;
Ruan, Dandan ;
Tu, Yonggang ;
Zhao, Yan .
FOOD CHEMISTRY, 2022, 377