Cargando…

Two novel potent ACEI peptides isolated from Pinctada fucata meat hydrolysates using in silico analysis: identification, screening and inhibitory mechanisms

The aim of this study was to discover potent angiotensin-converting enzyme (ACE) inhibitory (ACEI) peptides from Pinctada fucata (P. fucata) for treating hypertension and to characterize them using in silico analysis. The P. fucata proteins were hydrolyzed by Alcalase®, a serine endopeptidase with b...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Jiao, Su, Jilei, Chen, Min, Chen, Jiao, Ding, Wenping, Li, Yanqun, Yin, Hao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8696521/
https://www.ncbi.nlm.nih.gov/pubmed/35423777
http://dx.doi.org/10.1039/d0ra10476k
_version_ 1784619832594923520
author Li, Jiao
Su, Jilei
Chen, Min
Chen, Jiao
Ding, Wenping
Li, Yanqun
Yin, Hao
author_facet Li, Jiao
Su, Jilei
Chen, Min
Chen, Jiao
Ding, Wenping
Li, Yanqun
Yin, Hao
author_sort Li, Jiao
collection PubMed
description The aim of this study was to discover potent angiotensin-converting enzyme (ACE) inhibitory (ACEI) peptides from Pinctada fucata (P. fucata) for treating hypertension and to characterize them using in silico analysis. The P. fucata proteins were hydrolyzed by Alcalase®, a serine endopeptidase with broad selectivity, at various times (0, 2, 4, 6, 8, 10 h). The degree of hydrolysis (DH) and ACEI activity of the different hydrolysates were measured. Considering the molecular weight and ACEI activity, the 10 h hydrolysate was purified by a series of traditional separation methods, including ultrafiltration, gel G-25 chromatography, and reversed-phase high-performance liquid chromatography (RP-HPLC), with ACEI activity as a guide. The results showed two fractions, C17 and C18, eluted by means of semi-preparative RP-HPLC, and showed the highest ACEI activities of 80.33 ± 2.70% and 81.66 ± 0.29%, respectively, at 1 mg mL(−1). The two fractions were then identified using liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS) and their MS/MS spectra data were subjected to de novo sequencing. Subsequently, the potential ACEI peptides were screened by in silico methods, namely, to analyze the average local confidence (ALC) value obtained from the sequencing software and the P-value from the Pepsite 2. In total, 13 potential ACEI peptide sequences were obtained and identified from the two fractions by LC-ESI-MS/MS, and two novel tetrapeptides, FRVW (607.3314 Da) and LPYY (555.2881 Da), were screened for synthesis according to the in silico analysis. The in vitro ACEI tests indicated that FRVW and LPYY had IC(50) values of 18.34 and 116.26 μM, respectively. The Lineweaver–Burk plot showed that FRVW was a noncompetitive inhibitor, and LPYY was shown to be a mixed-mode type inhibitor. A stability study against ACE indicated that both peptides were hydrolyzed by ACE to some extent, the higher ACEI activity following incubation with ACE indicating that they should be classified as pro-drug substrates. Molecular docking results showed that hydrophobic amino acids (HAAs) within peptides formed vital interactions including hydrogen bonds, electrostatic forces, van der Waals forces and Pi–Pi interactions with ACE residues, which stabilized the enzyme–peptide complex. Furthermore, the docking results accorded with the inhibition kinetic mode. Our study demonstrated that FRVW and LPYY isolated from P. fucata have potential applications as antihypertensive agents.
format Online
Article
Text
id pubmed-8696521
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-86965212022-04-13 Two novel potent ACEI peptides isolated from Pinctada fucata meat hydrolysates using in silico analysis: identification, screening and inhibitory mechanisms Li, Jiao Su, Jilei Chen, Min Chen, Jiao Ding, Wenping Li, Yanqun Yin, Hao RSC Adv Chemistry The aim of this study was to discover potent angiotensin-converting enzyme (ACE) inhibitory (ACEI) peptides from Pinctada fucata (P. fucata) for treating hypertension and to characterize them using in silico analysis. The P. fucata proteins were hydrolyzed by Alcalase®, a serine endopeptidase with broad selectivity, at various times (0, 2, 4, 6, 8, 10 h). The degree of hydrolysis (DH) and ACEI activity of the different hydrolysates were measured. Considering the molecular weight and ACEI activity, the 10 h hydrolysate was purified by a series of traditional separation methods, including ultrafiltration, gel G-25 chromatography, and reversed-phase high-performance liquid chromatography (RP-HPLC), with ACEI activity as a guide. The results showed two fractions, C17 and C18, eluted by means of semi-preparative RP-HPLC, and showed the highest ACEI activities of 80.33 ± 2.70% and 81.66 ± 0.29%, respectively, at 1 mg mL(−1). The two fractions were then identified using liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS) and their MS/MS spectra data were subjected to de novo sequencing. Subsequently, the potential ACEI peptides were screened by in silico methods, namely, to analyze the average local confidence (ALC) value obtained from the sequencing software and the P-value from the Pepsite 2. In total, 13 potential ACEI peptide sequences were obtained and identified from the two fractions by LC-ESI-MS/MS, and two novel tetrapeptides, FRVW (607.3314 Da) and LPYY (555.2881 Da), were screened for synthesis according to the in silico analysis. The in vitro ACEI tests indicated that FRVW and LPYY had IC(50) values of 18.34 and 116.26 μM, respectively. The Lineweaver–Burk plot showed that FRVW was a noncompetitive inhibitor, and LPYY was shown to be a mixed-mode type inhibitor. A stability study against ACE indicated that both peptides were hydrolyzed by ACE to some extent, the higher ACEI activity following incubation with ACE indicating that they should be classified as pro-drug substrates. Molecular docking results showed that hydrophobic amino acids (HAAs) within peptides formed vital interactions including hydrogen bonds, electrostatic forces, van der Waals forces and Pi–Pi interactions with ACE residues, which stabilized the enzyme–peptide complex. Furthermore, the docking results accorded with the inhibition kinetic mode. Our study demonstrated that FRVW and LPYY isolated from P. fucata have potential applications as antihypertensive agents. The Royal Society of Chemistry 2021-03-25 /pmc/articles/PMC8696521/ /pubmed/35423777 http://dx.doi.org/10.1039/d0ra10476k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Jiao
Su, Jilei
Chen, Min
Chen, Jiao
Ding, Wenping
Li, Yanqun
Yin, Hao
Two novel potent ACEI peptides isolated from Pinctada fucata meat hydrolysates using in silico analysis: identification, screening and inhibitory mechanisms
title Two novel potent ACEI peptides isolated from Pinctada fucata meat hydrolysates using in silico analysis: identification, screening and inhibitory mechanisms
title_full Two novel potent ACEI peptides isolated from Pinctada fucata meat hydrolysates using in silico analysis: identification, screening and inhibitory mechanisms
title_fullStr Two novel potent ACEI peptides isolated from Pinctada fucata meat hydrolysates using in silico analysis: identification, screening and inhibitory mechanisms
title_full_unstemmed Two novel potent ACEI peptides isolated from Pinctada fucata meat hydrolysates using in silico analysis: identification, screening and inhibitory mechanisms
title_short Two novel potent ACEI peptides isolated from Pinctada fucata meat hydrolysates using in silico analysis: identification, screening and inhibitory mechanisms
title_sort two novel potent acei peptides isolated from pinctada fucata meat hydrolysates using in silico analysis: identification, screening and inhibitory mechanisms
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8696521/
https://www.ncbi.nlm.nih.gov/pubmed/35423777
http://dx.doi.org/10.1039/d0ra10476k
work_keys_str_mv AT lijiao twonovelpotentaceipeptidesisolatedfrompinctadafucatameathydrolysatesusinginsilicoanalysisidentificationscreeningandinhibitorymechanisms
AT sujilei twonovelpotentaceipeptidesisolatedfrompinctadafucatameathydrolysatesusinginsilicoanalysisidentificationscreeningandinhibitorymechanisms
AT chenmin twonovelpotentaceipeptidesisolatedfrompinctadafucatameathydrolysatesusinginsilicoanalysisidentificationscreeningandinhibitorymechanisms
AT chenjiao twonovelpotentaceipeptidesisolatedfrompinctadafucatameathydrolysatesusinginsilicoanalysisidentificationscreeningandinhibitorymechanisms
AT dingwenping twonovelpotentaceipeptidesisolatedfrompinctadafucatameathydrolysatesusinginsilicoanalysisidentificationscreeningandinhibitorymechanisms
AT liyanqun twonovelpotentaceipeptidesisolatedfrompinctadafucatameathydrolysatesusinginsilicoanalysisidentificationscreeningandinhibitorymechanisms
AT yinhao twonovelpotentaceipeptidesisolatedfrompinctadafucatameathydrolysatesusinginsilicoanalysisidentificationscreeningandinhibitorymechanisms