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Differential Modulation of the Voltage-Gated Na(+) Channel 1.6 by Peptides Derived From Fibroblast Growth Factor 14

The voltage-gated Na(+) (Nav) channel is a primary molecular determinant of the initiation and propagation of the action potential. Despite the central role of the pore-forming α subunit in conferring this functionality, protein:protein interactions (PPI) between the α subunit and auxiliary proteins...

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Autores principales: Singh, Aditya K., Dvorak, Nolan M., Tapia, Cynthia M., Mosebarger, Angela, Ali, Syed R., Bullock, Zaniqua, Chen, Haiying, Zhou, Jia, Laezza, Fernanda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8452925/
https://www.ncbi.nlm.nih.gov/pubmed/34557523
http://dx.doi.org/10.3389/fmolb.2021.742903
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author Singh, Aditya K.
Dvorak, Nolan M.
Tapia, Cynthia M.
Mosebarger, Angela
Ali, Syed R.
Bullock, Zaniqua
Chen, Haiying
Zhou, Jia
Laezza, Fernanda
author_facet Singh, Aditya K.
Dvorak, Nolan M.
Tapia, Cynthia M.
Mosebarger, Angela
Ali, Syed R.
Bullock, Zaniqua
Chen, Haiying
Zhou, Jia
Laezza, Fernanda
author_sort Singh, Aditya K.
collection PubMed
description The voltage-gated Na(+) (Nav) channel is a primary molecular determinant of the initiation and propagation of the action potential. Despite the central role of the pore-forming α subunit in conferring this functionality, protein:protein interactions (PPI) between the α subunit and auxiliary proteins are necessary for the full physiological activity of Nav channels. In the central nervous system (CNS), one such PPI occurs between the C-terminal domain of the Nav1.6 channel and fibroblast growth factor 14 (FGF14). Given the primacy of this PPI in regulating the excitability of neurons in clinically relevant brain regions, peptides targeting the FGF14:Nav1.6 PPI interface could be of pre-clinical value. In this work, we pharmacologically evaluated peptides derived from FGF14 that correspond to residues that are at FGF14’s PPI interface with the CTD of Nav1.6. These peptides, Pro-Leu-Glu-Val (PLEV) and Glu-Tyr-Tyr-Val (EYYV), which correspond to residues of the β12 sheet and β8-β9 loop of FGF14, respectively, were shown to inhibit FGF14:Nav1.6 complex assembly. In functional studies using whole-cell patch-clamp electrophysiology, PLEV and EYYV were shown to confer differential modulation of Nav1.6-mediated currents through mechanisms dependent upon the presence of FGF14. Crucially, these FGF14-dependent effects of PLEV and EYYV on Nav1.6-mediated currents were further shown to be dependent on the N-terminal domain of FGF14. Overall, these data suggest that the PLEV and EYYV peptides represent scaffolds to interrogate the Nav1.6 channel macromolecular complex in an effort to develop targeted pharmacological modulators.
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spelling pubmed-84529252021-09-22 Differential Modulation of the Voltage-Gated Na(+) Channel 1.6 by Peptides Derived From Fibroblast Growth Factor 14 Singh, Aditya K. Dvorak, Nolan M. Tapia, Cynthia M. Mosebarger, Angela Ali, Syed R. Bullock, Zaniqua Chen, Haiying Zhou, Jia Laezza, Fernanda Front Mol Biosci Molecular Biosciences The voltage-gated Na(+) (Nav) channel is a primary molecular determinant of the initiation and propagation of the action potential. Despite the central role of the pore-forming α subunit in conferring this functionality, protein:protein interactions (PPI) between the α subunit and auxiliary proteins are necessary for the full physiological activity of Nav channels. In the central nervous system (CNS), one such PPI occurs between the C-terminal domain of the Nav1.6 channel and fibroblast growth factor 14 (FGF14). Given the primacy of this PPI in regulating the excitability of neurons in clinically relevant brain regions, peptides targeting the FGF14:Nav1.6 PPI interface could be of pre-clinical value. In this work, we pharmacologically evaluated peptides derived from FGF14 that correspond to residues that are at FGF14’s PPI interface with the CTD of Nav1.6. These peptides, Pro-Leu-Glu-Val (PLEV) and Glu-Tyr-Tyr-Val (EYYV), which correspond to residues of the β12 sheet and β8-β9 loop of FGF14, respectively, were shown to inhibit FGF14:Nav1.6 complex assembly. In functional studies using whole-cell patch-clamp electrophysiology, PLEV and EYYV were shown to confer differential modulation of Nav1.6-mediated currents through mechanisms dependent upon the presence of FGF14. Crucially, these FGF14-dependent effects of PLEV and EYYV on Nav1.6-mediated currents were further shown to be dependent on the N-terminal domain of FGF14. Overall, these data suggest that the PLEV and EYYV peptides represent scaffolds to interrogate the Nav1.6 channel macromolecular complex in an effort to develop targeted pharmacological modulators. Frontiers Media S.A. 2021-09-07 /pmc/articles/PMC8452925/ /pubmed/34557523 http://dx.doi.org/10.3389/fmolb.2021.742903 Text en Copyright © 2021 Singh, Dvorak, Tapia, Mosebarger, Ali, Bullock, Chen, Zhou and Laezza. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Molecular Biosciences
Singh, Aditya K.
Dvorak, Nolan M.
Tapia, Cynthia M.
Mosebarger, Angela
Ali, Syed R.
Bullock, Zaniqua
Chen, Haiying
Zhou, Jia
Laezza, Fernanda
Differential Modulation of the Voltage-Gated Na(+) Channel 1.6 by Peptides Derived From Fibroblast Growth Factor 14
title Differential Modulation of the Voltage-Gated Na(+) Channel 1.6 by Peptides Derived From Fibroblast Growth Factor 14
title_full Differential Modulation of the Voltage-Gated Na(+) Channel 1.6 by Peptides Derived From Fibroblast Growth Factor 14
title_fullStr Differential Modulation of the Voltage-Gated Na(+) Channel 1.6 by Peptides Derived From Fibroblast Growth Factor 14
title_full_unstemmed Differential Modulation of the Voltage-Gated Na(+) Channel 1.6 by Peptides Derived From Fibroblast Growth Factor 14
title_short Differential Modulation of the Voltage-Gated Na(+) Channel 1.6 by Peptides Derived From Fibroblast Growth Factor 14
title_sort differential modulation of the voltage-gated na(+) channel 1.6 by peptides derived from fibroblast growth factor 14
topic Molecular Biosciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8452925/
https://www.ncbi.nlm.nih.gov/pubmed/34557523
http://dx.doi.org/10.3389/fmolb.2021.742903
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