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List of peptide properties
DFBP ID - DFBPANHY0988(Antihypertensive peptide)
DFBP ID DFBPANHY0988
Peptide sequence PPLLFAAL
Type Native peptide
Peptide/Function name Antihypertensive peptide
Function-activity relationship
Main bioactivity Antihypertensive activity
Otheir bioactivity ACE-inhibitory activity [D1], Multifunctional activity [D2]
Calculated physicochemical properties
Three-letter amino acid Pro-Pro-Leu-Leu-Phe-Ala-Ala-Leu
Single-letter amino acid PPLLFAAL
Peptide length 8
Peptide mass
Experimental mass Theoretical mass
841.05 Da 841.03 Da c
Net charge 0.00 c
Isoelectric point (pI) 5.97 c
IC50 N.D
pIC50 N.D
GRAVY 1.8250 c
Hydrophilic residue ratio 100% c
Peptide calculator
To calculate the physicochemical properties of bioactive peptide.
Peptide source & Food-borne protein(s) search
Classification Animal, Marine, Fish
Organism/Source Takifugu flavidus
Precursor protein Skin protein of Takifugu flavidus
Residue position N.D
Precursor protein(s) search
No matching precursor protein found
Link-research
There are no literature reports on the discovery of this sequence in other food-source proteins.
Biological/Functional activity & target protein
Antihypertensive activity

As shown in Figure 1A, Captopril- and PPLLFAAL-treated SHRs exhibited a significant decrease in SBP. Captopril significantly reduced the SBP (from 190 to 151 mmHg at 4h, p < 0.05), which then increased to 161 mmHg at 24 h. The SBP reduction curve that was obtained for PPLLFAAL was similar to that obtained with captopril. It was notable that the PPLLFAAL could maintain lower SBP levels for a longer period compared with the captopril group after intravenous administration. The results indicated that PPLLFAAL substantially reduced the SBP between 2 and 4 h (p < 0.05), with the largest decrease in SBP from 193 to 145 mmHg occurring at 4 h. The SBP then began to recover and maineained a level of 154 mmHg at 24 h. In addition, PPLLFAAL could also affect the DBP (Figure 1B). PPLLFAAL could significantly reduce the DBP of SHRs from 135 to 107 mmHg at 4 h (p < 0.05), which was then restored to a level of 113 mmHg at 24 h.

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Figure 1. Changes in spontaneously hypertensive rat's blood pressure after the intravenous administration of PPLLFAAL; (A) SBP changes and (B) DBP changes. Different letters indicate statistically significant differences, as demonstrated using multiple one-way analysis of variance tests (p < 0.05).

Specific target protein(s) N.D
Taste properties & Structure
Bitterness
Literature report N.D
Bitter prediction tools Bitter taste prediction
SMILES N.D
Preparation method
Mode of preparation

Enzymatic hydrolysis

Enzyme(s)/starter culture

The skins of T. flavidus were hydrolyzed using different enzymes under the corresponding optimal temperature and pH conditions (alcalase, pH 8.0, 55 ℃; neutral protease, pH 7.0, 55 ℃; pepsin, pH 2.0, 37 ℃), with the same enzyme/substrate ratio of 2000 U/g and hydrolysis time of 5 h. Alcalase was indicated that the low-MW peptides were generally more active than high-MW peptides, selected for the generation of ACE-inhibitory peptides from T. flavidus.

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

The results suggested that PPLLFAAL may have potential applications in functional foods or pharmaceuticals as an antihypertensive agent.

Database cross-references
DFBP
[D1] DFBPACEI2230
[D2] DFBPMUFU0640
BIOPEP-UWM [D3] -
APD [D4] -
BioPepDB [D5] -
MBPDB [D6] -
Reference(s)
Primary literature Su Y, Chen S, Cai S, Liu S, Pan N, Su J, Qiao K, Xu M, Chen B, Yang S, Liu Z. A Novel Angiotensin-I-Converting Enzyme (ACE) Inhibitory Peptide from Takifugu flavidus. Mar Drugs. 2021 Nov 23;19(12):651.
Other literature(s) N.D
PubDate 2021
Copyright © 2020. Record / license number: Chongqing ICP No. 2000214