Abstract
The soft-shelled turtle yolk (SSTY) protein hydrolysate contains a potential source of bioactive peptides. Our previous study found that five SSTY peptides (WLQL, LPSW, LPLF, VPGLAL and LVGLPL) showed moderate to high dipeptidyl peptidase IV (DPP-IV) inhibitory activities. This study further investigated their angiotensin-I-converting enzyme (ACE) inhibitory activity. Consequently, WLQL was identified as the most potent ACE inhibitory peptide with a remarkably low IC50 value (16.87 ± 0.54 µM). The Lineweaver–Burk plot analysis was performed for the characterization of the peptide’s inhibition mode and the inhibition kinetics was rationalized using the molecular docking simulation. The result revealed that WLQL would dock into the S1 pockets of ACE, while LPSW interacted with ACE’s secondary binding site. Further evaluation of the peptides’ stability against ACE involved a pre-incubation experiment. After 3 h of pre-incubation with ACE, the four peptides were hydrolyzed into smaller fragments with varying degrees, suggesting that they are substrate-type inhibitors. In contrast, LVGLPL can tolerate hydrolysis by ACE and act as a true inhibitor.
Funder
NPUST-KMU Joint Research Project
Ministry of Science and Technology
Animal Biologics Research of the Featured Area Research Center
Subject
Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science
Reference47 articles.
1. Molecular targets of antihypertensive peptides: Understanding the mechanisms of action based on the pathophysiology of hypertension;Majumder;Int. J. Mol. Sci.,2015
2. Ahmad, M.I., Mendys, P.M., Kelly, S.P., Chen, L.Y., and Soliman, E.Z. (2022). Relationship between high blood pressure, atrial cardiopathy, and mortality in the general population. Am. J. Hypertens.
3. Isolation of novel ACE-inhibitory peptide from naked oat globulin hydrolysates in silico approach: Molecular docking, in vivo antihypertension and effects on renin and intracellular endothelin-1;Zheng;J. Food Sci.,2020
4. Mechanisms of food protein-derived antihypertensive peptides other than ACE inhibition;Udenigwe;J. Funct. Foods,2014
5. In vitro antioxidant and angiotensin-converting enzyme inhibitory activity of fermented milk with different culture combinations;Li;J. Dairy Sci.,2020
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