A CACNA1A variant associated with trigeminal neuralgia alters the gating of Cav2.1 channels
Abstract A novel missense mutation in the CACNA1A gene that encodes the pore forming α1 subunit of the CaV2.1 voltage-gated calcium channel was identified in a patient with trigeminal neuralgia. This mutation leads to a substitution of proline 2455 by histidine (P2455H) in the distal C-terminus regi...
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doaj-3cc3992953204bed8f442b984f867f902021-01-10T12:38:58ZengBMCMolecular Brain1756-66062021-01-011411610.1186/s13041-020-00725-yA CACNA1A variant associated with trigeminal neuralgia alters the gating of Cav2.1 channelsEder Gambeta0Maria A. Gandini1Ivana A. Souza2Laurent Ferron3Gerald W. Zamponi4Department of Physiology and Pharmacology, Alberta Children’s Hospital Research Institute, Hotchkiss Brain Institute, Cumming School of Medicine, University of CalgaryDepartment of Physiology and Pharmacology, Alberta Children’s Hospital Research Institute, Hotchkiss Brain Institute, Cumming School of Medicine, University of CalgaryDepartment of Physiology and Pharmacology, Alberta Children’s Hospital Research Institute, Hotchkiss Brain Institute, Cumming School of Medicine, University of CalgaryDepartment of Physiology and Pharmacology, Alberta Children’s Hospital Research Institute, Hotchkiss Brain Institute, Cumming School of Medicine, University of CalgaryDepartment of Physiology and Pharmacology, Alberta Children’s Hospital Research Institute, Hotchkiss Brain Institute, Cumming School of Medicine, University of CalgaryAbstract A novel missense mutation in the CACNA1A gene that encodes the pore forming α1 subunit of the CaV2.1 voltage-gated calcium channel was identified in a patient with trigeminal neuralgia. This mutation leads to a substitution of proline 2455 by histidine (P2455H) in the distal C-terminus region of the channel. Due to the well characterized role of this channel in neurotransmitter release, our aim was to characterize the biophysical properties of the P2455H variant in heterologously expressed CaV2.1 channels. Whole-cell patch clamp recordings of wild type and mutant CaV2.1 channels expressed in tsA-201 cells reveal that the mutation mediates a depolarizing shift in the voltage-dependence of activation and inactivation. Moreover, the P2455H mutant strongly reduced calcium-dependent inactivation of the channel that is consistent with an overall gain of function. Hence, the P2455H CaV2.1 missense mutation alters the gating properties of the channel, suggesting that associated changes in CaV2.1-dependent synaptic communication in the trigeminal system may contribute to the development of trigeminal neuralgia.https://doi.org/10.1186/s13041-020-00725-yP/Q channelCalcium channelFacial painIon channelElectrophysiology |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Eder Gambeta Maria A. Gandini Ivana A. Souza Laurent Ferron Gerald W. Zamponi |
spellingShingle |
Eder Gambeta Maria A. Gandini Ivana A. Souza Laurent Ferron Gerald W. Zamponi A CACNA1A variant associated with trigeminal neuralgia alters the gating of Cav2.1 channels Molecular Brain P/Q channel Calcium channel Facial pain Ion channel Electrophysiology |
author_facet |
Eder Gambeta Maria A. Gandini Ivana A. Souza Laurent Ferron Gerald W. Zamponi |
author_sort |
Eder Gambeta |
title |
A CACNA1A variant associated with trigeminal neuralgia alters the gating of Cav2.1 channels |
title_short |
A CACNA1A variant associated with trigeminal neuralgia alters the gating of Cav2.1 channels |
title_full |
A CACNA1A variant associated with trigeminal neuralgia alters the gating of Cav2.1 channels |
title_fullStr |
A CACNA1A variant associated with trigeminal neuralgia alters the gating of Cav2.1 channels |
title_full_unstemmed |
A CACNA1A variant associated with trigeminal neuralgia alters the gating of Cav2.1 channels |
title_sort |
cacna1a variant associated with trigeminal neuralgia alters the gating of cav2.1 channels |
publisher |
BMC |
series |
Molecular Brain |
issn |
1756-6606 |
publishDate |
2021-01-01 |
description |
Abstract A novel missense mutation in the CACNA1A gene that encodes the pore forming α1 subunit of the CaV2.1 voltage-gated calcium channel was identified in a patient with trigeminal neuralgia. This mutation leads to a substitution of proline 2455 by histidine (P2455H) in the distal C-terminus region of the channel. Due to the well characterized role of this channel in neurotransmitter release, our aim was to characterize the biophysical properties of the P2455H variant in heterologously expressed CaV2.1 channels. Whole-cell patch clamp recordings of wild type and mutant CaV2.1 channels expressed in tsA-201 cells reveal that the mutation mediates a depolarizing shift in the voltage-dependence of activation and inactivation. Moreover, the P2455H mutant strongly reduced calcium-dependent inactivation of the channel that is consistent with an overall gain of function. Hence, the P2455H CaV2.1 missense mutation alters the gating properties of the channel, suggesting that associated changes in CaV2.1-dependent synaptic communication in the trigeminal system may contribute to the development of trigeminal neuralgia. |
topic |
P/Q channel Calcium channel Facial pain Ion channel Electrophysiology |
url |
https://doi.org/10.1186/s13041-020-00725-y |
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