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List of peptide properties
DFBP ID - DFBPDPIV0025(DPP IV-inhibitory peptide)
DFBP ID DFBPDPIV0025
Peptide sequence VAGTWY
Type Native peptide
Peptide/Function name DPP-IV inhibitory peptide, Anti-diabetic peptide
Function-activity relationship
Main bioactivity DPP-IV inhibitory activity
Otheir bioactivity ACE-inhibitory activity [D1], Antioxidative activity [D2], Antimicrobial activity [D3], Multifunctional activity [D4]
Calculated physicochemical properties
Three-letter amino acid Val-Ala-Gly-Thr-Trp-Tyr
Single-letter amino acid VAGTWY
Peptide length 6
Peptide mass
Experimental mass Theoretical mass
N.D 695.77 Da c
Net charge 0.00 c
Isoelectric point (pI) 5.92 c
IC50 N.D
pIC50 N.D
GRAVY 0.4500 c
Hydrophilic residue ratio 66.67% c
Peptide calculator
To calculate the physicochemical properties of bioactive peptide.
Peptide source & Food-borne protein(s) search
Classification Milk proteins
Organism/Source Bovine, Whey protein
Precursor protein β-Lactoglobulin
Residue position

f(15-20)

Precursor protein(s) search
Link-research
There are no literature reports on the discovery of this sequence in other food-source proteins.
Biological/Functional activity & target protein
DPP IV-inhibitory activity

(1) Inhibitor of Dipeptidyl-peptidase IV (EC 3.4.14.5). The peptide VAGTWY showed notable inhibitory activity with IC50 values of 174.0 μM.
(2) The IC50 value was 74.9 ± 4.4 μM [1].

Specific target protein(s) Specific Target Protein(s):
Dipeptidyl peptidase 4
Taste properties & Structure
Bitterness
Literature report N.D
Bitter prediction tools Bitter taste prediction
SMILES N[C@@]([H])(C(C)C)C(=O)N[C@@]([H])(C)C(=O)NCC(=O)N[C@@]([H])([C@]([H])(O)C)C(=O)N[C@@]([H])(CC(=CN2)C1=C2C=CC=C1)C(=O)N[C@@]([H])(Cc1ccc(O)cc1)C(=O)O
Preparation method
Mode of preparation

Enzymatic hydrolysis

Enzyme(s)/starter culture

The whey protein concentrate rich in β-lactoglobulin was hydrolysed with trypsin and the trypsin was added at an enzyme-to-substrate ratio of 1:20 (w/w) and hydrolysis was carried out at 37 ℃ for 3 h with constant agitation.

Stability & Cytotoxicity
Peptide stability
Literature report: N.D
EHP-Tool: Enzymatic Hydrolysis Prediction Tool (EHP-Tool)
Peptide cytotoxicity
Literature report: N.D
Prediction: ToxinPred
Additional information
Additional information

β-Lactoglobulin derived peptides may form part of a functional food based dietary strategy for the management of CVD and T2DM [1].

Database cross-references
DFBP
[D1] DFBPACEI0361
[D2] DFBPANOX0699
[D3] DFBPAMIC0336
[D4] DFBPMUFU0111
BIOPEP-UWM [D5] 3509, 4014, 8498, 8523, 9435
APD [D6] -
BioPepDB [D7] -
MBPDB [D8] -
Reference(s)
Primary literature Silveira ST, Martínez-Maqueda D, Recio I, Hernández-Ledesma B. Dipeptidyl peptidase-IV inhibitory peptides generated by tryptic hydrolysis of a whey protein concentrate rich in β-lactoglobulin. Food Chem. 2013 Nov 15;141(2):1072-7.
PMID: 23790888
Other literature(s)

[1] Power O, Fernández A, Norris R, et al. Selective enrichment of bioactive properties during ultrafiltration of a tryptic digest of β-lactoglobulin[J]. Journal of Functional Foods, 2014, 9:38-47.
[2] Uchida M, Ohshiba Y, Mogami O. Novel dipeptidyl peptidase-4-inhibiting peptide derived from β-lactoglobulin[J]. Journal of Pharmacological Sciences, 2011, 117(1):63.
[3] Pellegrini A, Dettling C, Thomas U, et al. Isolation and characterization of four bactericidal domains in the bovine β-lactoglobulin[J]. Biochimica Et Biophysica Acta General Subjects, 2001, 1526(2):131-140.
[4] Lacroix I M E, Li-Chan E C Y. Evaluation of the potential of dietary proteins as precursors of dipeptidyl peptidase (DPP)-IV inhibitors by an in silico, approach[J]. Journal of Functional Foods, 2012, 4(2):403-422.

PubDate 2013
Copyright © 2020. Record / license number: Chongqing ICP No. 2000214