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Purification and Molecular Docking Study on the Angiotensin I-Converting Enzyme (ACE)-Inhibitory Peptide Isolated from Hydrolysates of the Deep-Sea Mussel <i>Gigantidas vrijenhoeki</i>open access

Authors
Heo, Seong-YeongKang, NalaeKim, Eun-AKim, JunseongLee, Seung-HongAhn, GinnaeOh, Je HyeokShin, A. YoungKim, DongsungHeo, Soo-Jin
Issue Date
Aug-2023
Publisher
MDPI
Keywords
hydrothermal vent mussel; Gigantidas vrijenhoeki; angiotensin I-converting enzyme; molecular docking; bioactive peptide
Citation
MARINE DRUGS, v.21, no.8
Journal Title
MARINE DRUGS
Volume
21
Number
8
URI
https://scholarworks.bwise.kr/sch/handle/2021.sw.sch/25565
DOI
10.3390/md21080458
ISSN
1660-3397
1660-3397
Abstract
The objective of this study was to prepare an angiotensin I-converting enzyme (ACE)-inhibitory peptide from the hydrothermal vent mussel, Gigantidas vrijenhoeki. The G. vrijenhoeki protein was hydrolyzed by various hydrolytic enzymes. The peptic hydrolysate exhibited the highest ACE-inhibitory activity and was fractionated into four molecular weight ranges by ultrafiltration. The <1 kDa fraction exhibited the highest ACE inhibitory activity and was found to have 11 peptide sequences. Among the analyzed peptides, KLLWNGKM exhibited stronger ACE inhibitory activity and an IC50 value of 0.007 mu M. To investigate the ACE-inhibitory activity of the analyzed peptides, a molecular docking study was performed. KLLWNGKM exhibited the highest binding energy (-1317.01 kcal/mol), which was mainly attributed to the formation of hydrogen bonds with the ACE active pockets, zinc-binding motif, and zinc ion. These results indicate that G. vrijenhoeki-derived peptides can serve as nutritional and pharmacological candidates for controlling blood pressure.
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