A novel de novo mutation of SCN8A (Nav1.6) with enhanced channel activation in a child with epileptic encephalopathy

被引:88
作者
Estacion, Mark [1 ,2 ]
O'Brien, Janelle E. [3 ]
Conravey, Allison [4 ]
Hammer, Michael F. [5 ]
Waxman, Stephen G. [1 ,2 ]
Dib-Hajj, Sulayman D. [1 ,2 ]
Meisler, Miriam H. [3 ]
机构
[1] Yale Univ, Sch Med, Ctr Neurosci & Regenerat Res, New Haven, CT 06520 USA
[2] VA Connecticut Healthcare Syst, Rehabil Res Ctr, West Haven, CT 06516 USA
[3] Univ Michigan, Dept Human Genet, Ann Arbor, MI 48109 USA
[4] New Orleans Childrens Hosp, New Orleans, LA 70118 USA
[5] Univ Arizona, ARL Div Biotechnol, Tucson, AZ 85721 USA
关键词
Epilepsy; Sodium channel; De novo mutation; Epileptic encephalopathy; ACTION-POTENTIAL INITIATION; SODIUM-CHANNELS; PURKINJE NEURONS; ION CHANNELS; MODIFIER; PATIENT; NODES; GENE; CURRENTS; RANVIER;
D O I
10.1016/j.nbd.2014.05.017
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Rare de novo mutations of sodium channels are thought to be an important cause of sporadic epilepsy. The well established role of de novo mutations of sodium channel SCN1A in Dravet Syndrome supports this view, but the etiology of many cases of epileptic encephalopathy remains unknown. We sought to identify the genetic cause in a patient with early onset epileptic encephalopathy by whole exome sequencing of genomic DNA. The heterozygous mutation c. 2003C>T in SCN8A, the gene encoding sodium channel Na(v)1.6, was detected in the patient but was not present in either parent. The resulting missense substitution, p.Thr767Ile, alters an evolutionarily conserved residue in the first transmembrane segment of channel domain II. The electrophysiological effects of this mutation were assessed in neuronal cells transfected with mutant or wildtype cDNA. The mutation causes enhanced channel activation, with a 10 mV depolarizing shift in voltage dependence of activation as well as increased ramp current. In addition, pyramidal hippocampal neurons expressing the mutant channel exhibit increased spontaneous firing with PDS-like complexes as well as increased frequency of evoked action potentials. The identification of this new gain-of-function mutation of Na(v)1.6 supports the inclusion of SCN8A as a causative gene in infantile epilepsy, demonstrates a novel mechanism for hyperactivity of Na(v)1.6, and further expands the role of de novo mutations in severe epilepsy. (C) 2014 The Authors. Published by Elsevier Inc.
引用
收藏
页码:117 / 123
页数:7
相关论文
共 48 条
[1]   De novo mutations in epileptic encephalopathies [J].
Allen, Andrew S. ;
Berkovic, Samuel F. ;
Cossette, Patrick ;
Delanty, Norman ;
Dlugos, Dennis ;
Eichler, Evan E. ;
Epstein, Michael P. ;
Glauser, Tracy ;
Goldstein, David B. ;
Han, Yujun ;
Heinzen, Erin L. ;
Hitomi, Yuki ;
Howell, Katherine B. ;
Johnson, Michael R. ;
Kuzniecky, Ruben ;
Lowenstein, Daniel H. ;
Lu, Yi-Fan ;
Madou, Maura R. Z. ;
Marson, Anthony G. ;
Mefford, Heather C. ;
Nieh, Sahar Esmaeeli ;
O'Brien, Terence J. ;
Ottman, Ruth ;
Petrovski, Slave ;
Poduri, Annapurna ;
Ruzzo, Elizabeth K. ;
Scheffer, Ingrid E. ;
Sherr, Elliott H. ;
Yuskaitis, Christopher J. ;
Abou-Khalil, Bassel ;
Alldredge, Brian K. ;
Bautista, Jocelyn F. ;
Berkovic, Samuel F. ;
Boro, Alex ;
Cascino, Gregory D. ;
Consalvo, Damian ;
Crumrine, Patricia ;
Devinsky, Orrin ;
Dlugos, Dennis ;
Epstein, Michael P. ;
Fiol, Miguel ;
Fountain, Nathan B. ;
French, Jacqueline ;
Friedman, Daniel ;
Geller, Eric B. ;
Glauser, Tracy ;
Glynn, Simon ;
Haut, Sheryl R. ;
Hayward, Jean ;
Helmers, Sandra L. .
NATURE, 2013, 501 (7466) :217-+
[2]   Role of hippocampal sodium channel Nav1.6 in kindling epileptogenesis [J].
Blumenfeld, Hal ;
Lampert, Angelika ;
Klein, Joshua P. ;
Mission, John ;
Chen, Michael C. ;
Rivera, Maritza ;
Dib-Hajj, Sulayman ;
Brennan, Avis R. ;
Hains, Bryan C. ;
Waxman, Stephen G. .
EPILEPSIA, 2009, 50 (01) :44-55
[3]   Compact myelin dictates the differential targeting of two sodium channel isoforms in the same axon [J].
Boiko, T ;
Rasband, MN ;
Levinson, SR ;
Caldwell, JH ;
Mandel, G ;
Trimmer, JS ;
Matthews, G .
NEURON, 2001, 30 (01) :91-104
[4]   MUTATION OF A NEW SODIUM-CHANNEL GENE, SCN8A, IN THE MOUSE MUTANT MOTOR END-PLATE DISEASE [J].
BURGESS, DL ;
KOHRMAN, DC ;
GALT, J ;
PLUMMER, NW ;
JONES, JM ;
SPEAR, B ;
MEISLER, MH .
NATURE GENETICS, 1995, 10 (04) :461-465
[5]   Sodium channel Nav1.6 is localized at nodes of Ranvier, dendrites, and synapses [J].
Caldwell, JH ;
Schaller, KL ;
Lasher, RS ;
Peles, E ;
Levinson, SR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (10) :5616-5620
[6]   Targeted resequencing in epileptic encephalopathies identifies de novo mutations in CHD2 and SYNGAP1 [J].
Carvill, Gemma L. ;
Heavin, Sinead B. ;
Yendle, Simone C. ;
McMahon, Jacinta M. ;
O'Roak, Brian J. ;
Cook, Joseph ;
Khan, Adiba ;
Dorschner, Michael O. ;
Weaver, Molly ;
Calvert, Sophie ;
Malone, Stephen ;
Wallace, Geoffrey ;
Stanley, Thorsten ;
Bye, Ann M. E. ;
Bleasel, Andrew ;
Howell, Katherine B. ;
Kivity, Sara ;
Mackay, Mark T. ;
Rodriguez-Casero, Victoria ;
Webster, Richard ;
Korczyn, Amos ;
Afawi, Zaid ;
Zelnick, Nathanel ;
Lerman-Sagie, Tally ;
Lev, Dorit ;
Moller, Rikke S. ;
Gill, Deepak ;
Andrade, Danielle M. ;
Freeman, Jeremy L. ;
Sadleir, Lynette G. ;
Shendure, Jay ;
Berkovic, Samuel F. ;
Scheffer, Ingrid E. ;
Mefford, Heather C. .
NATURE GENETICS, 2013, 45 (07) :825-U158
[7]   Nav1.6 channels generate resurgent sodium currents in spinal sensory neurons [J].
Cummins, TR ;
Dib-Hajj, SD ;
Herzog, RI ;
Waxman, SG .
FEBS LETTERS, 2005, 579 (10) :2166-2170
[8]   The NaV1.7 sodium channel: from molecule to man [J].
Dib-Hajj, Sulayman D. ;
Yang, Yang ;
Black, Joel A. ;
Waxman, Stephen G. .
NATURE REVIEWS NEUROSCIENCE, 2013, 14 (01) :49-62
[9]   Transfection of rat or mouse neurons by biolistics or electroporation [J].
Dib-Hajj, Sulayman D. ;
Choi, Jin Sung ;
Macala, Lawrence J. ;
Tyrrell, Lynda ;
Black, Joel A. ;
Cummins, Theodore R. ;
Waxman, Stephen G. .
NATURE PROTOCOLS, 2009, 4 (08) :1118-1127
[10]   A sodium channel mutation linked to epilepsy increases ramp and persistent current of Nav1.3 and induces hyperexcitability in hippocampal neurons [J].
Estacion, Mark ;
Gasser, Andreas ;
Dib-Hajj, Sulayman D. ;
Waxman, Stephen G. .
EXPERIMENTAL NEUROLOGY, 2010, 224 (02) :362-368