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Lessons learned from whole exome sequencing in multiplex families affected by a complex genetic disorder, intracranial aneurysm

Authors :
Nerissa U. Ko
Kimberly F. Doheny
Robert D. Brown
Paul D'Urso
Khaled Aziz
Gary G. Ferguson
Yunlong Liu
Janice L. Farlow
Rachel Kleinloog
Dongbing Lai
Jeffrey V. Rosenfeld
Rose Du
Alex Schneider
Hua Ling
Dawn Kleindorfer
Andrew J. Ringer
Patrick Deelen
Neville W. Knuckey
Bradford B. Worrall
Michael K. Morgan
John Huston
Michael Besser
John Laidlaw
Luca Regli
Brett M. Kissela
Tatiana Foroud
Gabriel J.E. Rinkel
Steven L. Giannotta
Elizabeth W. Pugh
Bon H. Verweij
Troy D. Payner
E. Sander Connolly
Graeme J. Hankey
Ynte M. Ruigrok
Stephen B. Lewis
Joan E. Bailey-Wilson
Hai Lin
Lewis B. Morgenstern
E. Francois Aldrich
Martin G. Radvany
Aaron S. Dumont
Mario Zuccarello
Irene Mesissner
Edward W. Mee
Pieter van der Vlies
M. T. Richard
Colin P. Derdeyn
Ranjan Deka
Winfield S. Fisher
David O. Wiebers
Laura Sauerbeck
Anthony M. Kaufmann
H. Hunt Batjer
Lynda D. Lisabeth
David L. Tirschell
Nicholas W. C. Dorsch
Gary K. Steinberg
Peter L. Reilly
Amin B. Kassam
Craig S. Anderson
Aditya S. Pandey
Daniel L. Koller
Peter A. Rasmussen
Morris A. Swertz
Joseph P. Broderick
Guy A. Rouleau
Dheerah Gandhi
Ralph L. Sacco
Kurt N. Hetrick
S. Claiborne Johnston
Arthur L. Day
Marc Malkaff
Carl D. Langefeld
Kieran P. Murphy
Neal F. Kassell
Adnan I. Qureshi
Kenneth C. Lui
Christopher S. Ogilvy
Daniel Woo
University of Zurich
Li, Yun
Source :
PLoS ONE, PloS one, vol 10, iss 3, PLoS ONE, Vol 10, Iss 3, p e0121104 (2015), PLoS ONE, 10(3):e0121104. PUBLIC LIBRARY SCIENCE, PLoS ONE [E], 10(3). Public Library of Science
Publication Year :
2015

Abstract

Genetic risk factors for intracranial aneurysm (IA) are not yet fully understood. Genomewide association studies have been successful at identifying common variants; however, the role of rare variation in IA susceptibility has not been fully explored. In this study, we report the use of whole exome sequencing (WES) in seven densely-affected families (45 individuals) recruited as part of the Familial Intracranial Aneurysm study. WES variants were prioritized by functional prediction, frequency, predicted pathogenicity, and segregation within families. Using these criteria, 68 variants in 68 genes were prioritized across the seven families. Of the genes that were expressed in IA tissue, one gene (TMEM132B) was differentially expressed in aneurysmal samples (n=44) as compared to control samples (n=16) (false discovery rate adjusted p-value=0.023). We demonstrate that sequencing of densely affected families permits exploration of the role of rare variants in a relatively common disease such as IA, although there are important study design considerations for applying sequencing to complex disorders. In this study, we explore methods of WES variant prioritization, including the incorporation of unaffected individuals, multipoint linkage analysis, biological pathway information, and transcriptome profiling. Further studies are needed to validate and characterize the set of variants and genes identified in this study.

Details

Language :
English
ISSN :
19326203
Volume :
10
Issue :
3
Database :
OpenAIRE
Journal :
PLoS ONE [E]
Accession number :
edsair.doi.dedup.....609a6ca63ea59621998ef8f54e659439