Monoamine oxidase inhibition by major tanshinones from salvia miltiorrhiza and selective muscarinic acetylcholine m4 receptor antagonism by tanshinone i

Monoamine oxidases (MAOs) and muscarinic acetylcholine receptors (mAChRs) are considered important therapeutic targets for Parkinson’s disease (PD). Lipophilic tanshinones are major phytoconstituents in the dried roots of Salvia miltiorrhiza that have demonstrated neuroprotective effects against dop...

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Published in:Biomolecules
Main Author: Prajapati R.; Park S.E.; Seong S.H.; Paudel P.; Fauzi F.M.; Jung H.A.; Choi J.S.
Format: Article
Language:English
Published: MDPI 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85114064426&doi=10.3390%2fbiom11071001&partnerID=40&md5=6d1bea356e2188c5d7aaf4e8187173bf
id 2-s2.0-85114064426
spelling 2-s2.0-85114064426
Prajapati R.; Park S.E.; Seong S.H.; Paudel P.; Fauzi F.M.; Jung H.A.; Choi J.S.
Monoamine oxidase inhibition by major tanshinones from salvia miltiorrhiza and selective muscarinic acetylcholine m4 receptor antagonism by tanshinone i
2021
Biomolecules
11
7
10.3390/biom11071001
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85114064426&doi=10.3390%2fbiom11071001&partnerID=40&md5=6d1bea356e2188c5d7aaf4e8187173bf
Monoamine oxidases (MAOs) and muscarinic acetylcholine receptors (mAChRs) are considered important therapeutic targets for Parkinson’s disease (PD). Lipophilic tanshinones are major phytoconstituents in the dried roots of Salvia miltiorrhiza that have demonstrated neuroprotective effects against dopaminergic neurotoxins and the inhibition of MAO-A. Since MAO-B inhibition is considered an effective therapeutic strategy for PD, we tested the inhibitory activities of three abundant tanshinone congeners against recombinant human MAO (hMAO) isoenzymes through in vitro experiments. In our study, tanshinone I (1) exhibited the highest potency against hMAO-A, followed by tanshinone IIA and cryptotanshinone, with an IC50 less than 10 µM. They also sup-pressed hMAO-B activity, with an IC50 below 25 µM. Although tanshinones are known to inhibit hMAO-A, their enzyme inhibition mechanism and binding sites have yet to be investigated. Enzyme kinetics and molecular docking studies have revealed the mode of inhibition and interactions of tanshinones during enzyme inhibition. Proteochemometric modeling predicted mAChRs as possible pharmacological targets of 1, and in vitro functional assays confirmed the selective M4 antagonist nature of 1 (56.1% ± 2.40% inhibition of control agonist response at 100 µM). These findings indicate that 1 is a potential therapeutic molecule for managing the motor dysfunction and depression associated with PD. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
MDPI
2218273X
English
Article
All Open Access; Gold Open Access
author Prajapati R.; Park S.E.; Seong S.H.; Paudel P.; Fauzi F.M.; Jung H.A.; Choi J.S.
spellingShingle Prajapati R.; Park S.E.; Seong S.H.; Paudel P.; Fauzi F.M.; Jung H.A.; Choi J.S.
Monoamine oxidase inhibition by major tanshinones from salvia miltiorrhiza and selective muscarinic acetylcholine m4 receptor antagonism by tanshinone i
author_facet Prajapati R.; Park S.E.; Seong S.H.; Paudel P.; Fauzi F.M.; Jung H.A.; Choi J.S.
author_sort Prajapati R.; Park S.E.; Seong S.H.; Paudel P.; Fauzi F.M.; Jung H.A.; Choi J.S.
title Monoamine oxidase inhibition by major tanshinones from salvia miltiorrhiza and selective muscarinic acetylcholine m4 receptor antagonism by tanshinone i
title_short Monoamine oxidase inhibition by major tanshinones from salvia miltiorrhiza and selective muscarinic acetylcholine m4 receptor antagonism by tanshinone i
title_full Monoamine oxidase inhibition by major tanshinones from salvia miltiorrhiza and selective muscarinic acetylcholine m4 receptor antagonism by tanshinone i
title_fullStr Monoamine oxidase inhibition by major tanshinones from salvia miltiorrhiza and selective muscarinic acetylcholine m4 receptor antagonism by tanshinone i
title_full_unstemmed Monoamine oxidase inhibition by major tanshinones from salvia miltiorrhiza and selective muscarinic acetylcholine m4 receptor antagonism by tanshinone i
title_sort Monoamine oxidase inhibition by major tanshinones from salvia miltiorrhiza and selective muscarinic acetylcholine m4 receptor antagonism by tanshinone i
publishDate 2021
container_title Biomolecules
container_volume 11
container_issue 7
doi_str_mv 10.3390/biom11071001
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85114064426&doi=10.3390%2fbiom11071001&partnerID=40&md5=6d1bea356e2188c5d7aaf4e8187173bf
description Monoamine oxidases (MAOs) and muscarinic acetylcholine receptors (mAChRs) are considered important therapeutic targets for Parkinson’s disease (PD). Lipophilic tanshinones are major phytoconstituents in the dried roots of Salvia miltiorrhiza that have demonstrated neuroprotective effects against dopaminergic neurotoxins and the inhibition of MAO-A. Since MAO-B inhibition is considered an effective therapeutic strategy for PD, we tested the inhibitory activities of three abundant tanshinone congeners against recombinant human MAO (hMAO) isoenzymes through in vitro experiments. In our study, tanshinone I (1) exhibited the highest potency against hMAO-A, followed by tanshinone IIA and cryptotanshinone, with an IC50 less than 10 µM. They also sup-pressed hMAO-B activity, with an IC50 below 25 µM. Although tanshinones are known to inhibit hMAO-A, their enzyme inhibition mechanism and binding sites have yet to be investigated. Enzyme kinetics and molecular docking studies have revealed the mode of inhibition and interactions of tanshinones during enzyme inhibition. Proteochemometric modeling predicted mAChRs as possible pharmacological targets of 1, and in vitro functional assays confirmed the selective M4 antagonist nature of 1 (56.1% ± 2.40% inhibition of control agonist response at 100 µM). These findings indicate that 1 is a potential therapeutic molecule for managing the motor dysfunction and depression associated with PD. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
publisher MDPI
issn 2218273X
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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