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TRPC3 channel gating by lipids requires localization at the ER/PM junctions defined by STIM1

TRPC3, a member of the transient receptor potential (TRP) superfamily of cation channels, is a lipid-regulated, Ca(2+)-permeable channel that mediates essential components of the receptor evoked Ca(2+) signal. The modes and mechanisms by which lipids regulate TRPC3 and other members of the TRPC chan...

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Autores principales: Liu, Haiping, Lin, Wei-Yin, Leibow, Spencer R., Morateck, Alexander J., Ahuja, Malini, Muallem, Shmuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9011324/
https://www.ncbi.nlm.nih.gov/pubmed/35416932
http://dx.doi.org/10.1083/jcb.202107120
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author Liu, Haiping
Lin, Wei-Yin
Leibow, Spencer R.
Morateck, Alexander J.
Ahuja, Malini
Muallem, Shmuel
author_facet Liu, Haiping
Lin, Wei-Yin
Leibow, Spencer R.
Morateck, Alexander J.
Ahuja, Malini
Muallem, Shmuel
author_sort Liu, Haiping
collection PubMed
description TRPC3, a member of the transient receptor potential (TRP) superfamily of cation channels, is a lipid-regulated, Ca(2+)-permeable channel that mediates essential components of the receptor evoked Ca(2+) signal. The modes and mechanisms by which lipids regulate TRPC3 and other members of the TRPC channel family are not well understood. Here, we report that PI(4,5)P(2) regulates TRPC3 in three independent modes. PLC-dependent hydrolysis generates diacylglycerol (DAG) that interacts with lipid-binding site 2 in the channel pore. PI(4,5)P(2) interacts with lipid site 1 to inhibit TRPC3 opening and regulate access of DAG to the pore lipid site 2. PI(4,5)P(2) is required for regulating pore ionic selectivity by receptor stimulation. Notably, the activation and regulation of TRPC3 by PI(4,5)P(2) require recruitment of TRPC3 to the ER/PM junctions at a PI(4,5)P(2)-rich domain. Accordingly, we identified an FFAT site at the TRPC3 N-terminal loop within the linker helices that envelope the C-terminus pole helix. The FFAT site interacts with the ER-resident VAPB to recruit TRPC3 to the ER/PM junctions and control its receptor-mediated activation. The TRPC3’s lipid interacting sites are fully conserved in TRPC6 and TRPC7 and in part in other TRPC channels. These findings inform on multiple modes of regulation of ion channels by lipids that may be relevant to diseases affected by aberrant TRPC channel functions.
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spelling pubmed-90113242022-11-02 TRPC3 channel gating by lipids requires localization at the ER/PM junctions defined by STIM1 Liu, Haiping Lin, Wei-Yin Leibow, Spencer R. Morateck, Alexander J. Ahuja, Malini Muallem, Shmuel J Cell Biol Article TRPC3, a member of the transient receptor potential (TRP) superfamily of cation channels, is a lipid-regulated, Ca(2+)-permeable channel that mediates essential components of the receptor evoked Ca(2+) signal. The modes and mechanisms by which lipids regulate TRPC3 and other members of the TRPC channel family are not well understood. Here, we report that PI(4,5)P(2) regulates TRPC3 in three independent modes. PLC-dependent hydrolysis generates diacylglycerol (DAG) that interacts with lipid-binding site 2 in the channel pore. PI(4,5)P(2) interacts with lipid site 1 to inhibit TRPC3 opening and regulate access of DAG to the pore lipid site 2. PI(4,5)P(2) is required for regulating pore ionic selectivity by receptor stimulation. Notably, the activation and regulation of TRPC3 by PI(4,5)P(2) require recruitment of TRPC3 to the ER/PM junctions at a PI(4,5)P(2)-rich domain. Accordingly, we identified an FFAT site at the TRPC3 N-terminal loop within the linker helices that envelope the C-terminus pole helix. The FFAT site interacts with the ER-resident VAPB to recruit TRPC3 to the ER/PM junctions and control its receptor-mediated activation. The TRPC3’s lipid interacting sites are fully conserved in TRPC6 and TRPC7 and in part in other TRPC channels. These findings inform on multiple modes of regulation of ion channels by lipids that may be relevant to diseases affected by aberrant TRPC channel functions. Rockefeller University Press 2022-04-13 /pmc/articles/PMC9011324/ /pubmed/35416932 http://dx.doi.org/10.1083/jcb.202107120 Text en This is a work of the U.S. Government and is not subject to copyright protection in the United States. Foreign copyrights may apply. https://creativecommons.org/licenses/by-nc-sa/4.0/http://www.rupress.org/terms/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Liu, Haiping
Lin, Wei-Yin
Leibow, Spencer R.
Morateck, Alexander J.
Ahuja, Malini
Muallem, Shmuel
TRPC3 channel gating by lipids requires localization at the ER/PM junctions defined by STIM1
title TRPC3 channel gating by lipids requires localization at the ER/PM junctions defined by STIM1
title_full TRPC3 channel gating by lipids requires localization at the ER/PM junctions defined by STIM1
title_fullStr TRPC3 channel gating by lipids requires localization at the ER/PM junctions defined by STIM1
title_full_unstemmed TRPC3 channel gating by lipids requires localization at the ER/PM junctions defined by STIM1
title_short TRPC3 channel gating by lipids requires localization at the ER/PM junctions defined by STIM1
title_sort trpc3 channel gating by lipids requires localization at the er/pm junctions defined by stim1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9011324/
https://www.ncbi.nlm.nih.gov/pubmed/35416932
http://dx.doi.org/10.1083/jcb.202107120
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