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Characterisation of C101248: A novel selective THIK-1 channel inhibitor for the modulation of microglial NLRP3-inflammasome

Neuroinflammation, specifically the NLRP3 inflammasome cascade, is a common underlying pathological feature of many neurodegenerative diseases. Evidence suggests that NLRP3 activation involves changes in intracellular K(+). Nuclear Enriched Transcript Sort Sequencing (NETSseq), which allows for deep...

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Autores principales: Ossola, Bernardino, Rifat, Ali, Rowland, Anna, Hunter, Helen, Drinkall, Samuel, Bender, Clare, Hamlischer, Mayida, Teall, Martin, Burley, Russell, Barker, Daneil F., Cadwalladr, David, Dickson, Louise, Lawrence, Jason M.K., Harvey, Jenna R.M., Lizio, Marina, Xu, Xiao, Kavanagh, Edel, Cheung, Toni, Sheardown, Steve, Lawrence, Catherine B., Harte, Michael, Brough, David, Madry, Christian, Matthews, Kim, Doyle, Kevin, Page, Keith, Powell, Justin, Brice, Nicola L., Bürli, Roland W., Carlton, Mark B., Dawson, Lee A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pergamon Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9841576/
https://www.ncbi.nlm.nih.gov/pubmed/36375694
http://dx.doi.org/10.1016/j.neuropharm.2022.109330
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author Ossola, Bernardino
Rifat, Ali
Rowland, Anna
Hunter, Helen
Drinkall, Samuel
Bender, Clare
Hamlischer, Mayida
Teall, Martin
Burley, Russell
Barker, Daneil F.
Cadwalladr, David
Dickson, Louise
Lawrence, Jason M.K.
Harvey, Jenna R.M.
Lizio, Marina
Xu, Xiao
Kavanagh, Edel
Cheung, Toni
Sheardown, Steve
Lawrence, Catherine B.
Harte, Michael
Brough, David
Madry, Christian
Matthews, Kim
Doyle, Kevin
Page, Keith
Powell, Justin
Brice, Nicola L.
Bürli, Roland W.
Carlton, Mark B.
Dawson, Lee A.
author_facet Ossola, Bernardino
Rifat, Ali
Rowland, Anna
Hunter, Helen
Drinkall, Samuel
Bender, Clare
Hamlischer, Mayida
Teall, Martin
Burley, Russell
Barker, Daneil F.
Cadwalladr, David
Dickson, Louise
Lawrence, Jason M.K.
Harvey, Jenna R.M.
Lizio, Marina
Xu, Xiao
Kavanagh, Edel
Cheung, Toni
Sheardown, Steve
Lawrence, Catherine B.
Harte, Michael
Brough, David
Madry, Christian
Matthews, Kim
Doyle, Kevin
Page, Keith
Powell, Justin
Brice, Nicola L.
Bürli, Roland W.
Carlton, Mark B.
Dawson, Lee A.
author_sort Ossola, Bernardino
collection PubMed
description Neuroinflammation, specifically the NLRP3 inflammasome cascade, is a common underlying pathological feature of many neurodegenerative diseases. Evidence suggests that NLRP3 activation involves changes in intracellular K(+). Nuclear Enriched Transcript Sort Sequencing (NETSseq), which allows for deep sequencing of purified cell types from human post-mortem brain tissue, demonstrated a highly specific expression of the tandem pore domain halothane-inhibited K(+) channel 1 (THIK-1) in microglia compared to other glial and neuronal cell types in the human brain. NETSseq also showed a significant increase of THIK-1 in microglia isolated from cortical regions of brains with Alzheimer's disease (AD) relative to control donors. Herein, we report the discovery and pharmacological characterisation of C101248, the first selective small-molecule inhibitor of THIK-1. C101248 showed a concentration-dependent inhibition of both mouse and human THIK-1 (IC50: ∼50 nM) and was inactive against K2P family members TREK-1 and TWIK-2, and Kv2.1. Whole-cell patch-clamp recordings of microglia from mouse hippocampal slices showed that C101248 potently blocked both tonic and ATP-evoked THIK-1 K(+) currents. Notably, C101248 had no effect on other constitutively active resting conductance in slices from THIK-1-depleted mice. In isolated microglia, C101248 prevented NLRP3-dependent release of IL-1β, an effect not seen in THIK-1-depleted microglia. In conclusion, we demonstrated that inhibiting THIK-1 (a microglia specific gene that is upregulated in brains from donors with AD) using a novel selective modulator attenuates the NLRP3-dependent release of IL-1β from microglia, which suggests that this channel may be a potential therapeutic target for the modulation of neuroinflammation in AD.
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spelling pubmed-98415762023-02-15 Characterisation of C101248: A novel selective THIK-1 channel inhibitor for the modulation of microglial NLRP3-inflammasome Ossola, Bernardino Rifat, Ali Rowland, Anna Hunter, Helen Drinkall, Samuel Bender, Clare Hamlischer, Mayida Teall, Martin Burley, Russell Barker, Daneil F. Cadwalladr, David Dickson, Louise Lawrence, Jason M.K. Harvey, Jenna R.M. Lizio, Marina Xu, Xiao Kavanagh, Edel Cheung, Toni Sheardown, Steve Lawrence, Catherine B. Harte, Michael Brough, David Madry, Christian Matthews, Kim Doyle, Kevin Page, Keith Powell, Justin Brice, Nicola L. Bürli, Roland W. Carlton, Mark B. Dawson, Lee A. Neuropharmacology Article Neuroinflammation, specifically the NLRP3 inflammasome cascade, is a common underlying pathological feature of many neurodegenerative diseases. Evidence suggests that NLRP3 activation involves changes in intracellular K(+). Nuclear Enriched Transcript Sort Sequencing (NETSseq), which allows for deep sequencing of purified cell types from human post-mortem brain tissue, demonstrated a highly specific expression of the tandem pore domain halothane-inhibited K(+) channel 1 (THIK-1) in microglia compared to other glial and neuronal cell types in the human brain. NETSseq also showed a significant increase of THIK-1 in microglia isolated from cortical regions of brains with Alzheimer's disease (AD) relative to control donors. Herein, we report the discovery and pharmacological characterisation of C101248, the first selective small-molecule inhibitor of THIK-1. C101248 showed a concentration-dependent inhibition of both mouse and human THIK-1 (IC50: ∼50 nM) and was inactive against K2P family members TREK-1 and TWIK-2, and Kv2.1. Whole-cell patch-clamp recordings of microglia from mouse hippocampal slices showed that C101248 potently blocked both tonic and ATP-evoked THIK-1 K(+) currents. Notably, C101248 had no effect on other constitutively active resting conductance in slices from THIK-1-depleted mice. In isolated microglia, C101248 prevented NLRP3-dependent release of IL-1β, an effect not seen in THIK-1-depleted microglia. In conclusion, we demonstrated that inhibiting THIK-1 (a microglia specific gene that is upregulated in brains from donors with AD) using a novel selective modulator attenuates the NLRP3-dependent release of IL-1β from microglia, which suggests that this channel may be a potential therapeutic target for the modulation of neuroinflammation in AD. Pergamon Press 2023-02-15 /pmc/articles/PMC9841576/ /pubmed/36375694 http://dx.doi.org/10.1016/j.neuropharm.2022.109330 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ossola, Bernardino
Rifat, Ali
Rowland, Anna
Hunter, Helen
Drinkall, Samuel
Bender, Clare
Hamlischer, Mayida
Teall, Martin
Burley, Russell
Barker, Daneil F.
Cadwalladr, David
Dickson, Louise
Lawrence, Jason M.K.
Harvey, Jenna R.M.
Lizio, Marina
Xu, Xiao
Kavanagh, Edel
Cheung, Toni
Sheardown, Steve
Lawrence, Catherine B.
Harte, Michael
Brough, David
Madry, Christian
Matthews, Kim
Doyle, Kevin
Page, Keith
Powell, Justin
Brice, Nicola L.
Bürli, Roland W.
Carlton, Mark B.
Dawson, Lee A.
Characterisation of C101248: A novel selective THIK-1 channel inhibitor for the modulation of microglial NLRP3-inflammasome
title Characterisation of C101248: A novel selective THIK-1 channel inhibitor for the modulation of microglial NLRP3-inflammasome
title_full Characterisation of C101248: A novel selective THIK-1 channel inhibitor for the modulation of microglial NLRP3-inflammasome
title_fullStr Characterisation of C101248: A novel selective THIK-1 channel inhibitor for the modulation of microglial NLRP3-inflammasome
title_full_unstemmed Characterisation of C101248: A novel selective THIK-1 channel inhibitor for the modulation of microglial NLRP3-inflammasome
title_short Characterisation of C101248: A novel selective THIK-1 channel inhibitor for the modulation of microglial NLRP3-inflammasome
title_sort characterisation of c101248: a novel selective thik-1 channel inhibitor for the modulation of microglial nlrp3-inflammasome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9841576/
https://www.ncbi.nlm.nih.gov/pubmed/36375694
http://dx.doi.org/10.1016/j.neuropharm.2022.109330
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