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A human TRPV1 genetic variant within the channel gating domain regulates pain sensitivity in rodents

Pain signals are relayed to the brain via a nociceptive system, and in rare cases, this nociceptive system contains genetic variants that can limit the pain response. Here, we questioned whether a human transient receptor potential vanilloid 1 (TRPV1) missense variant causes a resistance to noxious...

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Autores principales: He, Shufang, Zambelli, Vanessa O., Sinharoy, Pritam, Brabenec, Laura, Bian, Yang, Rwere, Freeborn, Hell, Rafaela C.R., Stein Neto, Beatriz, Hung, Barbara, Yu, Xuan, Zhao, Meng, Luo, Zhaofei, Wu, Chao, Xu, Lijun, Svensson, Katrin J., McAllister, Stacy L., Stary, Creed M., Wagner, Nana-Maria, Zhang, Ye, Gross, Eric R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9888391/
https://www.ncbi.nlm.nih.gov/pubmed/36472910
http://dx.doi.org/10.1172/JCI163735
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author He, Shufang
Zambelli, Vanessa O.
Sinharoy, Pritam
Brabenec, Laura
Bian, Yang
Rwere, Freeborn
Hell, Rafaela C.R.
Stein Neto, Beatriz
Hung, Barbara
Yu, Xuan
Zhao, Meng
Luo, Zhaofei
Wu, Chao
Xu, Lijun
Svensson, Katrin J.
McAllister, Stacy L.
Stary, Creed M.
Wagner, Nana-Maria
Zhang, Ye
Gross, Eric R.
author_facet He, Shufang
Zambelli, Vanessa O.
Sinharoy, Pritam
Brabenec, Laura
Bian, Yang
Rwere, Freeborn
Hell, Rafaela C.R.
Stein Neto, Beatriz
Hung, Barbara
Yu, Xuan
Zhao, Meng
Luo, Zhaofei
Wu, Chao
Xu, Lijun
Svensson, Katrin J.
McAllister, Stacy L.
Stary, Creed M.
Wagner, Nana-Maria
Zhang, Ye
Gross, Eric R.
author_sort He, Shufang
collection PubMed
description Pain signals are relayed to the brain via a nociceptive system, and in rare cases, this nociceptive system contains genetic variants that can limit the pain response. Here, we questioned whether a human transient receptor potential vanilloid 1 (TRPV1) missense variant causes a resistance to noxious stimuli and, further, whether we could target this region with a cell-permeable peptide as a pain therapeutic. Initially using a computational approach, we identified a human K710N TRPV1 missense variant in an otherwise highly conserved region of mammalian TRPV1. After generating a TRPV1(K710N)-knockin mouse using CRISPR/Cas9, we discovered that the K710N variant reduced capsaicin-induced calcium influx in dorsal root ganglion neurons. The TRPV1(K710N) rodents also had less acute behavioral responses to noxious chemical stimuli and less hypersensitivity to nerve injury, while their response to noxious heat remained intact. Furthermore, blocking this K710 region in WT rodents using a cell-penetrating peptide limited acute behavioral responses to noxious stimuli and returned pain hypersensitivity induced by nerve injury to baseline levels. These findings identify K710 TRPV1 as a discrete site that is crucial for the control of nociception and provide insights into how to leverage rare genetic variants in humans to uncover fresh strategies for developing pain therapeutics.
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spelling pubmed-98883912023-02-06 A human TRPV1 genetic variant within the channel gating domain regulates pain sensitivity in rodents He, Shufang Zambelli, Vanessa O. Sinharoy, Pritam Brabenec, Laura Bian, Yang Rwere, Freeborn Hell, Rafaela C.R. Stein Neto, Beatriz Hung, Barbara Yu, Xuan Zhao, Meng Luo, Zhaofei Wu, Chao Xu, Lijun Svensson, Katrin J. McAllister, Stacy L. Stary, Creed M. Wagner, Nana-Maria Zhang, Ye Gross, Eric R. J Clin Invest Research Article Pain signals are relayed to the brain via a nociceptive system, and in rare cases, this nociceptive system contains genetic variants that can limit the pain response. Here, we questioned whether a human transient receptor potential vanilloid 1 (TRPV1) missense variant causes a resistance to noxious stimuli and, further, whether we could target this region with a cell-permeable peptide as a pain therapeutic. Initially using a computational approach, we identified a human K710N TRPV1 missense variant in an otherwise highly conserved region of mammalian TRPV1. After generating a TRPV1(K710N)-knockin mouse using CRISPR/Cas9, we discovered that the K710N variant reduced capsaicin-induced calcium influx in dorsal root ganglion neurons. The TRPV1(K710N) rodents also had less acute behavioral responses to noxious chemical stimuli and less hypersensitivity to nerve injury, while their response to noxious heat remained intact. Furthermore, blocking this K710 region in WT rodents using a cell-penetrating peptide limited acute behavioral responses to noxious stimuli and returned pain hypersensitivity induced by nerve injury to baseline levels. These findings identify K710 TRPV1 as a discrete site that is crucial for the control of nociception and provide insights into how to leverage rare genetic variants in humans to uncover fresh strategies for developing pain therapeutics. American Society for Clinical Investigation 2023-02-01 /pmc/articles/PMC9888391/ /pubmed/36472910 http://dx.doi.org/10.1172/JCI163735 Text en © 2023 He et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
He, Shufang
Zambelli, Vanessa O.
Sinharoy, Pritam
Brabenec, Laura
Bian, Yang
Rwere, Freeborn
Hell, Rafaela C.R.
Stein Neto, Beatriz
Hung, Barbara
Yu, Xuan
Zhao, Meng
Luo, Zhaofei
Wu, Chao
Xu, Lijun
Svensson, Katrin J.
McAllister, Stacy L.
Stary, Creed M.
Wagner, Nana-Maria
Zhang, Ye
Gross, Eric R.
A human TRPV1 genetic variant within the channel gating domain regulates pain sensitivity in rodents
title A human TRPV1 genetic variant within the channel gating domain regulates pain sensitivity in rodents
title_full A human TRPV1 genetic variant within the channel gating domain regulates pain sensitivity in rodents
title_fullStr A human TRPV1 genetic variant within the channel gating domain regulates pain sensitivity in rodents
title_full_unstemmed A human TRPV1 genetic variant within the channel gating domain regulates pain sensitivity in rodents
title_short A human TRPV1 genetic variant within the channel gating domain regulates pain sensitivity in rodents
title_sort human trpv1 genetic variant within the channel gating domain regulates pain sensitivity in rodents
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9888391/
https://www.ncbi.nlm.nih.gov/pubmed/36472910
http://dx.doi.org/10.1172/JCI163735
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