Cargando…

Rapid identification of α-glucosidase inhibitors from Poria using spectrum-effect, component knock-out, and molecular docking technique

INSTRUCTION: Poria (Poria cocos) is known for its health-promoting effects and is consumed as a food due to its potential hypoglycemic activity. However, the composition of Poria is complex, and the bioactive compounds that inhibit α-glucosidase are not clear. METHODS: In this study, the fingerprint...

Descripción completa

Detalles Bibliográficos
Autores principales: Ma, Changyang, Lu, Jie, Ren, Mengjie, Wang, Qiuyi, Li, Changqin, Xi, Xuefeng, Liu, Zhenhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10448901/
https://www.ncbi.nlm.nih.gov/pubmed/37637945
http://dx.doi.org/10.3389/fnut.2023.1089829
_version_ 1785094832395386880
author Ma, Changyang
Lu, Jie
Ren, Mengjie
Wang, Qiuyi
Li, Changqin
Xi, Xuefeng
Liu, Zhenhua
author_facet Ma, Changyang
Lu, Jie
Ren, Mengjie
Wang, Qiuyi
Li, Changqin
Xi, Xuefeng
Liu, Zhenhua
author_sort Ma, Changyang
collection PubMed
description INSTRUCTION: Poria (Poria cocos) is known for its health-promoting effects and is consumed as a food due to its potential hypoglycemic activity. However, the composition of Poria is complex, and the bioactive compounds that inhibit α-glucosidase are not clear. METHODS: In this study, the fingerprint of the Poria methanol extract characterized by high-performance liquid chromatography (HPLC) and the model of the corresponding spectrum-effect relationship for α-glucosidase was first established to screen the active compounds from Poria. Then, the predicted bioactive compounds were knocked out and identified using mass spectrometry. Finally, the potential binding sites and main bonds of each compound with α-glucosidase were studied using molecular docking. RESULTS: The results have shown that at least 11 compounds from Poria could inhibit α-glucosidase effectively. Moreover, eight individual compounds, i.e., poricoic acid B (P8), dehydrotumulosic acid (P9), poricoic acid A (P10), polyporenic acid C (P12), 3- epidehydrotumulosic acid (P13), dehydropachymic acid (P14), 3-O-acetyl-16α-hydroxytrametenolic acid (P21), and pachymic acid (P22), were identified, and they exhibited effective inhibitory activity against α-glucosidase. DISCUSSION: The possible inhibitory mechanism of them based on molecular docking showed that the binding sites are mainly found in the rings A, B, and C of these compounds, and C-3 C-16 and side chains of C-17, with the phenylalanine, arginine, tyrosine, histidine, and valine of α-glucosidase. The main interactions among them might be alkyl and hydrogen bonds, which theoretically verified the inhibitory activity of these compounds on α-glucosidase. The achievements of this study provided useful references for discovering bioactive compounds with hypoglycemic effects from Poria.
format Online
Article
Text
id pubmed-10448901
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-104489012023-08-25 Rapid identification of α-glucosidase inhibitors from Poria using spectrum-effect, component knock-out, and molecular docking technique Ma, Changyang Lu, Jie Ren, Mengjie Wang, Qiuyi Li, Changqin Xi, Xuefeng Liu, Zhenhua Front Nutr Nutrition INSTRUCTION: Poria (Poria cocos) is known for its health-promoting effects and is consumed as a food due to its potential hypoglycemic activity. However, the composition of Poria is complex, and the bioactive compounds that inhibit α-glucosidase are not clear. METHODS: In this study, the fingerprint of the Poria methanol extract characterized by high-performance liquid chromatography (HPLC) and the model of the corresponding spectrum-effect relationship for α-glucosidase was first established to screen the active compounds from Poria. Then, the predicted bioactive compounds were knocked out and identified using mass spectrometry. Finally, the potential binding sites and main bonds of each compound with α-glucosidase were studied using molecular docking. RESULTS: The results have shown that at least 11 compounds from Poria could inhibit α-glucosidase effectively. Moreover, eight individual compounds, i.e., poricoic acid B (P8), dehydrotumulosic acid (P9), poricoic acid A (P10), polyporenic acid C (P12), 3- epidehydrotumulosic acid (P13), dehydropachymic acid (P14), 3-O-acetyl-16α-hydroxytrametenolic acid (P21), and pachymic acid (P22), were identified, and they exhibited effective inhibitory activity against α-glucosidase. DISCUSSION: The possible inhibitory mechanism of them based on molecular docking showed that the binding sites are mainly found in the rings A, B, and C of these compounds, and C-3 C-16 and side chains of C-17, with the phenylalanine, arginine, tyrosine, histidine, and valine of α-glucosidase. The main interactions among them might be alkyl and hydrogen bonds, which theoretically verified the inhibitory activity of these compounds on α-glucosidase. The achievements of this study provided useful references for discovering bioactive compounds with hypoglycemic effects from Poria. Frontiers Media S.A. 2023-08-10 /pmc/articles/PMC10448901/ /pubmed/37637945 http://dx.doi.org/10.3389/fnut.2023.1089829 Text en Copyright © 2023 Ma, Lu, Ren, Wang, Li, Xi and Liu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Nutrition
Ma, Changyang
Lu, Jie
Ren, Mengjie
Wang, Qiuyi
Li, Changqin
Xi, Xuefeng
Liu, Zhenhua
Rapid identification of α-glucosidase inhibitors from Poria using spectrum-effect, component knock-out, and molecular docking technique
title Rapid identification of α-glucosidase inhibitors from Poria using spectrum-effect, component knock-out, and molecular docking technique
title_full Rapid identification of α-glucosidase inhibitors from Poria using spectrum-effect, component knock-out, and molecular docking technique
title_fullStr Rapid identification of α-glucosidase inhibitors from Poria using spectrum-effect, component knock-out, and molecular docking technique
title_full_unstemmed Rapid identification of α-glucosidase inhibitors from Poria using spectrum-effect, component knock-out, and molecular docking technique
title_short Rapid identification of α-glucosidase inhibitors from Poria using spectrum-effect, component knock-out, and molecular docking technique
title_sort rapid identification of α-glucosidase inhibitors from poria using spectrum-effect, component knock-out, and molecular docking technique
topic Nutrition
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10448901/
https://www.ncbi.nlm.nih.gov/pubmed/37637945
http://dx.doi.org/10.3389/fnut.2023.1089829
work_keys_str_mv AT machangyang rapididentificationofaglucosidaseinhibitorsfromporiausingspectrumeffectcomponentknockoutandmoleculardockingtechnique
AT lujie rapididentificationofaglucosidaseinhibitorsfromporiausingspectrumeffectcomponentknockoutandmoleculardockingtechnique
AT renmengjie rapididentificationofaglucosidaseinhibitorsfromporiausingspectrumeffectcomponentknockoutandmoleculardockingtechnique
AT wangqiuyi rapididentificationofaglucosidaseinhibitorsfromporiausingspectrumeffectcomponentknockoutandmoleculardockingtechnique
AT lichangqin rapididentificationofaglucosidaseinhibitorsfromporiausingspectrumeffectcomponentknockoutandmoleculardockingtechnique
AT xixuefeng rapididentificationofaglucosidaseinhibitorsfromporiausingspectrumeffectcomponentknockoutandmoleculardockingtechnique
AT liuzhenhua rapididentificationofaglucosidaseinhibitorsfromporiausingspectrumeffectcomponentknockoutandmoleculardockingtechnique