Title of article
Exome Sequencing of Ion Channel Genes Reveals Complex Profiles Confounding Personal Risk Assessment in Epilepsy
Author/Authors
Tara Klassen، نويسنده , , Caleb Davis، نويسنده , , Alica Goldman، نويسنده , , Dan Burgess، نويسنده , , Tim Chen، نويسنده , , David Wheeler، نويسنده , , John McPherson، نويسنده , , Traci Bourquin، نويسنده , , Lora Lewis، نويسنده , , Donna Villasana، نويسنده , , Margaret Morgan، نويسنده , , Donna Muzny، نويسنده , , Richard Gibbs، نويسنده , , Jeffrey Noebels، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2011
Pages
13
From page
1036
To page
1048
Abstract
Ion channel mutations are an important cause of rare Mendelian disorders affecting brain, heart, and other tissues. We performed parallel exome sequencing of 237 channel genes in a well-characterized human sample, comparing variant profiles of unaffected individuals to those with the most common neuronal excitability disorder, sporadic idiopathic epilepsy. Rare missense variation in known Mendelian disease genes is prevalent in both groups at similar complexity, revealing that even deleterious ion channel mutations confer uncertain risk to an individual depending on the other variants with which they are combined. Our findings indicate that variant discovery via large scale sequencing efforts is only a first step in illuminating the complex allelic architecture underlying personal disease risk. We propose that in silico modeling of channel variation in realistic cell and network models will be crucial to future strategies assessing mutation profile pathogenicity and drug response in individuals with a broad spectrum of excitability disorders.
Journal title
CELL
Serial Year
2011
Journal title
CELL
Record number
1020735
Link To Document