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Selective potentiation of 2-APB-induced activation of TRPV1–3 channels by acid

Temperature-sensitive TRP channels are important for responses to pain and inflammation, to both of which tissue acidosis is a major contributing factor. However, except for TRPV1, acid-sensing by other ThermoTRP channels remains mysterious. We show here that unique among TRPV1–3 channels, TRPV3 is...

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Autores principales: Gao, Luna, Yang, Pu, Qin, Peizhong, Lu, Yungang, Li, Xinxin, Tian, Quan, Li, Yang, Xie, Chang, Tian, Jin-bin, Zhang, Chengwei, Tian, Changlin, Zhu, Michael X., Yao, Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4753485/
https://www.ncbi.nlm.nih.gov/pubmed/26876731
http://dx.doi.org/10.1038/srep20791
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author Gao, Luna
Yang, Pu
Qin, Peizhong
Lu, Yungang
Li, Xinxin
Tian, Quan
Li, Yang
Xie, Chang
Tian, Jin-bin
Zhang, Chengwei
Tian, Changlin
Zhu, Michael X.
Yao, Jing
author_facet Gao, Luna
Yang, Pu
Qin, Peizhong
Lu, Yungang
Li, Xinxin
Tian, Quan
Li, Yang
Xie, Chang
Tian, Jin-bin
Zhang, Chengwei
Tian, Changlin
Zhu, Michael X.
Yao, Jing
author_sort Gao, Luna
collection PubMed
description Temperature-sensitive TRP channels are important for responses to pain and inflammation, to both of which tissue acidosis is a major contributing factor. However, except for TRPV1, acid-sensing by other ThermoTRP channels remains mysterious. We show here that unique among TRPV1–3 channels, TRPV3 is directly activated by protons from cytoplasmic side. This effect is very weak and involves key cytoplasmic residues L508, D512, S518, or A520. However, mutations of these residues did not affect a strong proton induced potentiation of TRPV3 currents elicited by the TRPV1–3 common agonist, 2-aminoethoxydiphenyl borate (2-APB), no matter if the ligand was applied from extracellular or cytoplasmic side. The acid potentiation was common among TRPV1–3 and only seen with 2-APB-related ligands. Using (1)H-nuclear magnetic resonance to examine the solution structures of 2-APB and its analogs, we observed striking structural differences of the boron-containing compounds at neutral/basic as compared to acidic pH, suggesting that a pH-dependent configuration switch of 2-APB-based drugs may underlie their functionality. Supporting this notion, protons also enhanced the inhibitory action of 2-APB on TRPM8. Collectively, our findings reveal novel insights into 2-APB action on TRP channels, which should facilitate the design of new drugs for these channels.
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spelling pubmed-47534852016-02-23 Selective potentiation of 2-APB-induced activation of TRPV1–3 channels by acid Gao, Luna Yang, Pu Qin, Peizhong Lu, Yungang Li, Xinxin Tian, Quan Li, Yang Xie, Chang Tian, Jin-bin Zhang, Chengwei Tian, Changlin Zhu, Michael X. Yao, Jing Sci Rep Article Temperature-sensitive TRP channels are important for responses to pain and inflammation, to both of which tissue acidosis is a major contributing factor. However, except for TRPV1, acid-sensing by other ThermoTRP channels remains mysterious. We show here that unique among TRPV1–3 channels, TRPV3 is directly activated by protons from cytoplasmic side. This effect is very weak and involves key cytoplasmic residues L508, D512, S518, or A520. However, mutations of these residues did not affect a strong proton induced potentiation of TRPV3 currents elicited by the TRPV1–3 common agonist, 2-aminoethoxydiphenyl borate (2-APB), no matter if the ligand was applied from extracellular or cytoplasmic side. The acid potentiation was common among TRPV1–3 and only seen with 2-APB-related ligands. Using (1)H-nuclear magnetic resonance to examine the solution structures of 2-APB and its analogs, we observed striking structural differences of the boron-containing compounds at neutral/basic as compared to acidic pH, suggesting that a pH-dependent configuration switch of 2-APB-based drugs may underlie their functionality. Supporting this notion, protons also enhanced the inhibitory action of 2-APB on TRPM8. Collectively, our findings reveal novel insights into 2-APB action on TRP channels, which should facilitate the design of new drugs for these channels. Nature Publishing Group 2016-02-15 /pmc/articles/PMC4753485/ /pubmed/26876731 http://dx.doi.org/10.1038/srep20791 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Gao, Luna
Yang, Pu
Qin, Peizhong
Lu, Yungang
Li, Xinxin
Tian, Quan
Li, Yang
Xie, Chang
Tian, Jin-bin
Zhang, Chengwei
Tian, Changlin
Zhu, Michael X.
Yao, Jing
Selective potentiation of 2-APB-induced activation of TRPV1–3 channels by acid
title Selective potentiation of 2-APB-induced activation of TRPV1–3 channels by acid
title_full Selective potentiation of 2-APB-induced activation of TRPV1–3 channels by acid
title_fullStr Selective potentiation of 2-APB-induced activation of TRPV1–3 channels by acid
title_full_unstemmed Selective potentiation of 2-APB-induced activation of TRPV1–3 channels by acid
title_short Selective potentiation of 2-APB-induced activation of TRPV1–3 channels by acid
title_sort selective potentiation of 2-apb-induced activation of trpv1–3 channels by acid
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4753485/
https://www.ncbi.nlm.nih.gov/pubmed/26876731
http://dx.doi.org/10.1038/srep20791
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