Cargando…

Association of rare missense variants in the second intracellular loop of Na(V)1.7 sodium channels with familial autism

Autism spectrum disorder (ASD) is a complex neurodevelopmental disorder often accompanied by intellectual disability, language impairment and medical co-morbidities. The heritability of autism is high and multiple genes have been implicated as causal. However, most of these genes have been identifie...

Descripción completa

Detalles Bibliográficos
Autores principales: Rubinstein, M, Patowary, A, Stanaway, I B, McCord, E, Nesbitt, R R, Archer, M, Scheuer, T, Nickerson, D, Raskind, W H, Wijsman, E M, Bernier, R, Catterall, W A, Brkanac, Z
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5468514/
https://www.ncbi.nlm.nih.gov/pubmed/27956748
http://dx.doi.org/10.1038/mp.2016.222
_version_ 1783243449584058368
author Rubinstein, M
Patowary, A
Stanaway, I B
McCord, E
Nesbitt, R R
Archer, M
Scheuer, T
Nickerson, D
Raskind, W H
Wijsman, E M
Bernier, R
Catterall, W A
Brkanac, Z
author_facet Rubinstein, M
Patowary, A
Stanaway, I B
McCord, E
Nesbitt, R R
Archer, M
Scheuer, T
Nickerson, D
Raskind, W H
Wijsman, E M
Bernier, R
Catterall, W A
Brkanac, Z
author_sort Rubinstein, M
collection PubMed
description Autism spectrum disorder (ASD) is a complex neurodevelopmental disorder often accompanied by intellectual disability, language impairment and medical co-morbidities. The heritability of autism is high and multiple genes have been implicated as causal. However, most of these genes have been identified in de novo cases. To further the understanding of familial autism, we performed whole-exome sequencing on five families in which second- and third-degree relatives were affected. By focusing on novel and protein-altering variants, we identified a small set of candidate genes. Among these, a novel private missense C1143F variant in the second intracellular loop of the voltage-gated sodium channel Na(V)1.7, encoded by the SCN9A gene, was identified in one family. Through electrophysiological analysis, we show that Na(V)1.7(C1143F) exhibits partial loss-of-function effects, resulting in slower recovery from inactivation and decreased excitability in cultured cortical neurons. Furthermore, for the same intracellular loop of Na(V)1.7, we found an excess of rare variants in a case–control variant-burden study. Functional analysis of one of these variants, M932L/V991L, also demonstrated reduced firing in cortical neurons. However, although this variant is rare in Caucasians, it is frequent in Latino population, suggesting that genetic background can alter its effects on phenotype. Although the involvement of the SCN1A and SCN2A genes encoding Na(V)1.1 and Na(V)1.2 channels in de novo ASD has previously been demonstrated, our study indicates the involvement of inherited SCN9A variants and partial loss-of-function of Na(V)1.7 channels in the etiology of rare familial ASD.
format Online
Article
Text
id pubmed-5468514
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-54685142018-01-27 Association of rare missense variants in the second intracellular loop of Na(V)1.7 sodium channels with familial autism Rubinstein, M Patowary, A Stanaway, I B McCord, E Nesbitt, R R Archer, M Scheuer, T Nickerson, D Raskind, W H Wijsman, E M Bernier, R Catterall, W A Brkanac, Z Mol Psychiatry Original Article Autism spectrum disorder (ASD) is a complex neurodevelopmental disorder often accompanied by intellectual disability, language impairment and medical co-morbidities. The heritability of autism is high and multiple genes have been implicated as causal. However, most of these genes have been identified in de novo cases. To further the understanding of familial autism, we performed whole-exome sequencing on five families in which second- and third-degree relatives were affected. By focusing on novel and protein-altering variants, we identified a small set of candidate genes. Among these, a novel private missense C1143F variant in the second intracellular loop of the voltage-gated sodium channel Na(V)1.7, encoded by the SCN9A gene, was identified in one family. Through electrophysiological analysis, we show that Na(V)1.7(C1143F) exhibits partial loss-of-function effects, resulting in slower recovery from inactivation and decreased excitability in cultured cortical neurons. Furthermore, for the same intracellular loop of Na(V)1.7, we found an excess of rare variants in a case–control variant-burden study. Functional analysis of one of these variants, M932L/V991L, also demonstrated reduced firing in cortical neurons. However, although this variant is rare in Caucasians, it is frequent in Latino population, suggesting that genetic background can alter its effects on phenotype. Although the involvement of the SCN1A and SCN2A genes encoding Na(V)1.1 and Na(V)1.2 channels in de novo ASD has previously been demonstrated, our study indicates the involvement of inherited SCN9A variants and partial loss-of-function of Na(V)1.7 channels in the etiology of rare familial ASD. Nature Publishing Group 2018-02 2016-12-13 /pmc/articles/PMC5468514/ /pubmed/27956748 http://dx.doi.org/10.1038/mp.2016.222 Text en Copyright © 2018 The Author(s) http://creativecommons.org/licenses/by-nc-sa/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/4.0/
spellingShingle Original Article
Rubinstein, M
Patowary, A
Stanaway, I B
McCord, E
Nesbitt, R R
Archer, M
Scheuer, T
Nickerson, D
Raskind, W H
Wijsman, E M
Bernier, R
Catterall, W A
Brkanac, Z
Association of rare missense variants in the second intracellular loop of Na(V)1.7 sodium channels with familial autism
title Association of rare missense variants in the second intracellular loop of Na(V)1.7 sodium channels with familial autism
title_full Association of rare missense variants in the second intracellular loop of Na(V)1.7 sodium channels with familial autism
title_fullStr Association of rare missense variants in the second intracellular loop of Na(V)1.7 sodium channels with familial autism
title_full_unstemmed Association of rare missense variants in the second intracellular loop of Na(V)1.7 sodium channels with familial autism
title_short Association of rare missense variants in the second intracellular loop of Na(V)1.7 sodium channels with familial autism
title_sort association of rare missense variants in the second intracellular loop of na(v)1.7 sodium channels with familial autism
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5468514/
https://www.ncbi.nlm.nih.gov/pubmed/27956748
http://dx.doi.org/10.1038/mp.2016.222
work_keys_str_mv AT rubinsteinm associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT patowarya associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT stanawayib associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT mccorde associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT nesbittrr associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT archerm associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT scheuert associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT nickersond associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT raskindwh associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT wijsmanem associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT bernierr associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT catterallwa associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism
AT brkanacz associationofraremissensevariantsinthesecondintracellularloopofnav17sodiumchannelswithfamilialautism