Cargando…
GSK1702934A and M085 directly activate TRPC6 via a mechanism of stimulating the extracellular cavity formed by the pore helix and transmembrane helix S6
Transient receptor potential canonical (TRPC) channels, as important membrane proteins regulating intracellular calcium (Ca(2+)(i)) signaling, are involved in a variety of physiological and pathological processes. Activation and regulation of TRPC are more dependent on membrane or intracellular sign...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Biochemistry and Molecular Biology
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8458982/ https://www.ncbi.nlm.nih.gov/pubmed/34461094 http://dx.doi.org/10.1016/j.jbc.2021.101125 |
_version_ | 1784571422526406656 |
---|---|
author | Yang, Pei-Lin Li, Xing-Hua Wang, Jin Ma, Xue-Fei Zhou, Bo-Ying Jiao, Yuan-Feng Wang, Wen-Hui Cao, Peng Zhu, Michael Xi Li, Pei-Wang Xiao, Zhi-Hong Li, Chang-Zhu Guo, Chang-Run Lei, Yun-Tao Yu, Ye |
author_facet | Yang, Pei-Lin Li, Xing-Hua Wang, Jin Ma, Xue-Fei Zhou, Bo-Ying Jiao, Yuan-Feng Wang, Wen-Hui Cao, Peng Zhu, Michael Xi Li, Pei-Wang Xiao, Zhi-Hong Li, Chang-Zhu Guo, Chang-Run Lei, Yun-Tao Yu, Ye |
author_sort | Yang, Pei-Lin |
collection | PubMed |
description | Transient receptor potential canonical (TRPC) channels, as important membrane proteins regulating intracellular calcium (Ca(2+)(i)) signaling, are involved in a variety of physiological and pathological processes. Activation and regulation of TRPC are more dependent on membrane or intracellular signals. However, how extracellular signals regulate TRPC6 function remains to be further investigated. Here, we suggest that two distinct small molecules, M085 and GSK1702934A, directly activate TRPC6, both through a mechanism of stimulation of extracellular sites formed by the pore helix (PH) and transmembrane (TM) helix S6. In silico docking scanning of TRPC6 identified three extracellular sites that can bind small molecules, of which only mutations on residues of PH and S6 helix significantly reduced the apparent affinity of M085 and GSK1702934A and attenuated the maximal response of TRPC6 to these two chemicals by altering channel gating of TRPC6. Combing metadynamics, molecular dynamics simulations, and mutagenesis, we revealed that W679, E671, E672, and K675 in the PH and N701 and Y704 in the S6 helix constitute an orthosteric site for the recognition of these two agonists. The importance of this site was further confirmed by covalent modification of amino acid residing at the interface of the PH and S6 helix. Given that three structurally distinct agonists M085, GSK1702934A, and AM-0883, act at this site, as well as the occupancy of lipid molecules at this position found in other TRP subfamilies, it is suggested that the cavity formed by the PH and S6 has an important role in the regulation of TRP channel function by extracellular signals. |
format | Online Article Text |
id | pubmed-8458982 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | American Society for Biochemistry and Molecular Biology |
record_format | MEDLINE/PubMed |
spelling | pubmed-84589822021-09-27 GSK1702934A and M085 directly activate TRPC6 via a mechanism of stimulating the extracellular cavity formed by the pore helix and transmembrane helix S6 Yang, Pei-Lin Li, Xing-Hua Wang, Jin Ma, Xue-Fei Zhou, Bo-Ying Jiao, Yuan-Feng Wang, Wen-Hui Cao, Peng Zhu, Michael Xi Li, Pei-Wang Xiao, Zhi-Hong Li, Chang-Zhu Guo, Chang-Run Lei, Yun-Tao Yu, Ye J Biol Chem Research Article Transient receptor potential canonical (TRPC) channels, as important membrane proteins regulating intracellular calcium (Ca(2+)(i)) signaling, are involved in a variety of physiological and pathological processes. Activation and regulation of TRPC are more dependent on membrane or intracellular signals. However, how extracellular signals regulate TRPC6 function remains to be further investigated. Here, we suggest that two distinct small molecules, M085 and GSK1702934A, directly activate TRPC6, both through a mechanism of stimulation of extracellular sites formed by the pore helix (PH) and transmembrane (TM) helix S6. In silico docking scanning of TRPC6 identified three extracellular sites that can bind small molecules, of which only mutations on residues of PH and S6 helix significantly reduced the apparent affinity of M085 and GSK1702934A and attenuated the maximal response of TRPC6 to these two chemicals by altering channel gating of TRPC6. Combing metadynamics, molecular dynamics simulations, and mutagenesis, we revealed that W679, E671, E672, and K675 in the PH and N701 and Y704 in the S6 helix constitute an orthosteric site for the recognition of these two agonists. The importance of this site was further confirmed by covalent modification of amino acid residing at the interface of the PH and S6 helix. Given that three structurally distinct agonists M085, GSK1702934A, and AM-0883, act at this site, as well as the occupancy of lipid molecules at this position found in other TRP subfamilies, it is suggested that the cavity formed by the PH and S6 has an important role in the regulation of TRP channel function by extracellular signals. American Society for Biochemistry and Molecular Biology 2021-08-28 /pmc/articles/PMC8458982/ /pubmed/34461094 http://dx.doi.org/10.1016/j.jbc.2021.101125 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Research Article Yang, Pei-Lin Li, Xing-Hua Wang, Jin Ma, Xue-Fei Zhou, Bo-Ying Jiao, Yuan-Feng Wang, Wen-Hui Cao, Peng Zhu, Michael Xi Li, Pei-Wang Xiao, Zhi-Hong Li, Chang-Zhu Guo, Chang-Run Lei, Yun-Tao Yu, Ye GSK1702934A and M085 directly activate TRPC6 via a mechanism of stimulating the extracellular cavity formed by the pore helix and transmembrane helix S6 |
title | GSK1702934A and M085 directly activate TRPC6 via a mechanism of stimulating the extracellular cavity formed by the pore helix and transmembrane helix S6 |
title_full | GSK1702934A and M085 directly activate TRPC6 via a mechanism of stimulating the extracellular cavity formed by the pore helix and transmembrane helix S6 |
title_fullStr | GSK1702934A and M085 directly activate TRPC6 via a mechanism of stimulating the extracellular cavity formed by the pore helix and transmembrane helix S6 |
title_full_unstemmed | GSK1702934A and M085 directly activate TRPC6 via a mechanism of stimulating the extracellular cavity formed by the pore helix and transmembrane helix S6 |
title_short | GSK1702934A and M085 directly activate TRPC6 via a mechanism of stimulating the extracellular cavity formed by the pore helix and transmembrane helix S6 |
title_sort | gsk1702934a and m085 directly activate trpc6 via a mechanism of stimulating the extracellular cavity formed by the pore helix and transmembrane helix s6 |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8458982/ https://www.ncbi.nlm.nih.gov/pubmed/34461094 http://dx.doi.org/10.1016/j.jbc.2021.101125 |
work_keys_str_mv | AT yangpeilin gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT lixinghua gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT wangjin gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT maxuefei gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT zhouboying gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT jiaoyuanfeng gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT wangwenhui gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT caopeng gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT zhumichaelxi gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT lipeiwang gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT xiaozhihong gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT lichangzhu gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT guochangrun gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT leiyuntao gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 AT yuye gsk1702934aandm085directlyactivatetrpc6viaamechanismofstimulatingtheextracellularcavityformedbytheporehelixandtransmembranehelixs6 |