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Natural Potent NAAA Inhibitor Atractylodin Counteracts LPS-Induced Microglial Activation

N-acylethanolamine-hydrolyzing acid amidase (NAAA) is a lysosomal enzyme that inhibits the degradation of palmitoylethanolamide (PEA), an endogenous lipid that induces analgesic, anti-inflammation, and anti-multiple sclerosis through PPARα activation. Only a few potent NAAA inhibitors have been repo...

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Autores principales: Yang, Longhe, Ji, Chunyan, Li, Yitian, Hu, Fan, Zhang, Fang, Zhang, Haiping, Li, Long, Ren, Jie, Wang, Zhaokai, Qiu, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7565389/
https://www.ncbi.nlm.nih.gov/pubmed/33117168
http://dx.doi.org/10.3389/fphar.2020.577319
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author Yang, Longhe
Ji, Chunyan
Li, Yitian
Hu, Fan
Zhang, Fang
Zhang, Haiping
Li, Long
Ren, Jie
Wang, Zhaokai
Qiu, Yan
author_facet Yang, Longhe
Ji, Chunyan
Li, Yitian
Hu, Fan
Zhang, Fang
Zhang, Haiping
Li, Long
Ren, Jie
Wang, Zhaokai
Qiu, Yan
author_sort Yang, Longhe
collection PubMed
description N-acylethanolamine-hydrolyzing acid amidase (NAAA) is a lysosomal enzyme that inhibits the degradation of palmitoylethanolamide (PEA), an endogenous lipid that induces analgesic, anti-inflammation, and anti-multiple sclerosis through PPARα activation. Only a few potent NAAA inhibitors have been reported to date, which is mainly due to the restricted substrate-binding site of NAAA. Here, we established a high-throughput fluorescence-based assay for NAAA inhibitor screening. Several new classes of NAAA inhibitors were discovered from a small library of natural products. One of these is atractylodin, a polyethylene alkyne compound from the root of Atractylodes lancea (Thunb) DC., which significantly inhibits NAAA activity and has an IC(50) of 2.81 µM. Kinetic analyses and dialysis assays suggested that atractylodin engages in competitive inhibition via reversible reaction to the enzyme. Docking assays revealed that atractylodin occupies the catalytic cavity of NAAA, where the atractylodin furan head group has a hydrophobic-related interaction with the backbone of the Trp181 and Leu152 residues of human NAAA. Further investigation indicated that atractylodin significantly increases PEA and OEA levels and dose-dependently inhibits LPS-induced nitrate, TNF-α, IL-1β, and IL-6 pro-inflammatory cytokine release in BV-2 microglia. Our results show that atractylodin elevates cellular PEA levels and inhibits microglial activation by inhibiting NAAA activity, which in turn could contribute to NAAA functional research.
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spelling pubmed-75653892020-10-27 Natural Potent NAAA Inhibitor Atractylodin Counteracts LPS-Induced Microglial Activation Yang, Longhe Ji, Chunyan Li, Yitian Hu, Fan Zhang, Fang Zhang, Haiping Li, Long Ren, Jie Wang, Zhaokai Qiu, Yan Front Pharmacol Pharmacology N-acylethanolamine-hydrolyzing acid amidase (NAAA) is a lysosomal enzyme that inhibits the degradation of palmitoylethanolamide (PEA), an endogenous lipid that induces analgesic, anti-inflammation, and anti-multiple sclerosis through PPARα activation. Only a few potent NAAA inhibitors have been reported to date, which is mainly due to the restricted substrate-binding site of NAAA. Here, we established a high-throughput fluorescence-based assay for NAAA inhibitor screening. Several new classes of NAAA inhibitors were discovered from a small library of natural products. One of these is atractylodin, a polyethylene alkyne compound from the root of Atractylodes lancea (Thunb) DC., which significantly inhibits NAAA activity and has an IC(50) of 2.81 µM. Kinetic analyses and dialysis assays suggested that atractylodin engages in competitive inhibition via reversible reaction to the enzyme. Docking assays revealed that atractylodin occupies the catalytic cavity of NAAA, where the atractylodin furan head group has a hydrophobic-related interaction with the backbone of the Trp181 and Leu152 residues of human NAAA. Further investigation indicated that atractylodin significantly increases PEA and OEA levels and dose-dependently inhibits LPS-induced nitrate, TNF-α, IL-1β, and IL-6 pro-inflammatory cytokine release in BV-2 microglia. Our results show that atractylodin elevates cellular PEA levels and inhibits microglial activation by inhibiting NAAA activity, which in turn could contribute to NAAA functional research. Frontiers Media S.A. 2020-10-02 /pmc/articles/PMC7565389/ /pubmed/33117168 http://dx.doi.org/10.3389/fphar.2020.577319 Text en Copyright © 2020 Yang, Ji, Li, Hu, Zhang, Zhang, Li, Ren, Wang and Qiu http://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 Pharmacology
Yang, Longhe
Ji, Chunyan
Li, Yitian
Hu, Fan
Zhang, Fang
Zhang, Haiping
Li, Long
Ren, Jie
Wang, Zhaokai
Qiu, Yan
Natural Potent NAAA Inhibitor Atractylodin Counteracts LPS-Induced Microglial Activation
title Natural Potent NAAA Inhibitor Atractylodin Counteracts LPS-Induced Microglial Activation
title_full Natural Potent NAAA Inhibitor Atractylodin Counteracts LPS-Induced Microglial Activation
title_fullStr Natural Potent NAAA Inhibitor Atractylodin Counteracts LPS-Induced Microglial Activation
title_full_unstemmed Natural Potent NAAA Inhibitor Atractylodin Counteracts LPS-Induced Microglial Activation
title_short Natural Potent NAAA Inhibitor Atractylodin Counteracts LPS-Induced Microglial Activation
title_sort natural potent naaa inhibitor atractylodin counteracts lps-induced microglial activation
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7565389/
https://www.ncbi.nlm.nih.gov/pubmed/33117168
http://dx.doi.org/10.3389/fphar.2020.577319
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