Literature DB >> 32916281

Functional analysis of three Nav1.6 mutations causing early infantile epileptic encephalopathy.

Laura Solé1, Jacy L Wagnon2, Michael M Tamkun3.   

Abstract

The voltage-gated sodium channel Nav1.6 is associated with more than 300 cases of epileptic encephalopathy. Nav1.6 epilepsy-causing mutations are spread over the entire channel's structure and only 10% of mutations have been characterized at the molecular level, with most of them being gain of function mutations. In this study, we analyzed three previously uncharacterized Nav1.6 epilepsy-causing mutations: G214D, N215D and V216D, located within a mutation hot-spot at the S3-S4 extracellular loop of Domain1. Voltage clamp experiments showed a 6-16 mV hyperpolarizing shift in the activation mid-point for all three mutants. V216D presented the largest shift along with decreased current amplitude, enhanced inactivation and a lack of persistent current. Recordings at hyperpolarized potentials indicated that all three mutants presented gating pore currents. Furthermore, trafficking experiments performed in cultured hippocampal neurons demonstrated that the mutants trafficked properly to the cell surface, with no significant differences regarding surface expression within the axon initial segment or soma compared to wild-type. These trafficking data suggest that the disease-causing consequences are due to only changes in the biophysical properties of the channel. Interestingly, the patient carrying the V216D mutation, which is the mutant with the greatest electrophysiological changes as compared to wild-type, exhibited the most severe phenotype. These results emphasize that these mutations will mandate unique treatment approaches, for normal sodium channel blockers may not work given that the studied mutations present gating pore currents. This study emphasizes the importance of molecular characterization of disease-causing mutations in order to improve the pharmacological treatment of patients.
Copyright © 2020 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Disease; EIEE13; Epilepsy; Gating pore currents; Na(v)1.6; SCN8A; Sodium channel mutations

Mesh:

Substances:

Year:  2020        PMID: 32916281      PMCID: PMC7680399          DOI: 10.1016/j.bbadis.2020.165959

Source DB:  PubMed          Journal:  Biochim Biophys Acta Mol Basis Dis        ISSN: 0925-4439            Impact factor:   5.187


  87 in total

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5.  Characterization of a de novo SCN8A mutation in a patient with epileptic encephalopathy.

Authors:  Carolien G F de Kovel; Miriam H Meisler; Eva H Brilstra; Frederique M C van Berkestijn; Ruben van 't Slot; Stef van Lieshout; Isaac J Nijman; Janelle E O'Brien; Michael F Hammer; Mark Estacion; Stephen G Waxman; Sulayman D Dib-Hajj; Bobby P C Koeleman
Journal:  Epilepsy Res       Date:  2014-09-04       Impact factor: 3.045

6.  The MAP1B Binding Domain of Nav1.6 Is Required for Stable Expression at the Axon Initial Segment.

Authors:  Laura Solé; Jacy L Wagnon; Elizabeth J Akin; Miriam H Meisler; Michael M Tamkun
Journal:  J Neurosci       Date:  2019-03-26       Impact factor: 6.167

7.  Characterization and mechanisms of action of novel NaV1.5 channel mutations associated with Brugada syndrome.

Authors:  Kirstine Calloe; Marwan M Refaat; Soren Grubb; Julianne Wojciak; Joan Campagna; Nancy Mutsaers Thomsen; Robert L Nussbaum; Melvin M Scheinman; Nicole Schmitt
Journal:  Circ Arrhythm Electrophysiol       Date:  2013-02

8.  Human Gene Mutation Database (HGMD): 2003 update.

Authors:  Peter D Stenson; Edward V Ball; Matthew Mort; Andrew D Phillips; Jacqueline A Shiel; Nick S T Thomas; Shaun Abeysinghe; Michael Krawczak; David N Cooper
Journal:  Hum Mutat       Date:  2003-06       Impact factor: 4.878

9.  Single amino acid deletion in transmembrane segment D4S6 of sodium channel Scn8a (Nav1.6) in a mouse mutant with a chronic movement disorder.

Authors:  Julie M Jones; Louise Dionne; James Dell'Orco; Rachel Parent; Jamie N Krueger; Xiaoyang Cheng; Sulayman D Dib-Hajj; Rosie K Bunton-Stasyshyn; Lisa M Sharkey; James J Dowling; Geoffrey G Murphy; Vikram G Shakkottai; Peter Shrager; Miriam H Meisler
Journal:  Neurobiol Dis       Date:  2016-01-22       Impact factor: 5.996

10.  Mutations in the Voltage Sensors of Domains I and II of Nav1.5 that are Associated with Arrhythmias and Dilated Cardiomyopathy Generate Gating Pore Currents.

Authors:  Adrien Moreau; Pascal Gosselin-Badaroudine; Mohamed Boutjdir; Mohamed Chahine
Journal:  Front Pharmacol       Date:  2015-12-24       Impact factor: 5.810

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  2 in total

1.  SCN8A epileptic encephalopathy mutations display a gain-of-function phenotype and divergent sensitivity to antiepileptic drugs.

Authors:  Qian-Bei Guo; Li Zhan; Hai-Yan Xu; Zhao-Bing Gao; Yue-Ming Zheng
Journal:  Acta Pharmacol Sin       Date:  2022-07-27       Impact factor: 7.169

Review 2.  Commonalities and distinctions between two neurodevelopmental disorder subtypes associated with SCN2A and SCN8A variants and literature review.

Authors:  Giuseppe Donato Mangano; Antonina Fontana; Vincenzo Antona; Vincenzo Salpietro; Giuseppa Renata Mangano; Mario Giuffrè; Rosaria Nardello
Journal:  Mol Genet Genomic Med       Date:  2022-03-29       Impact factor: 2.473

  2 in total

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