TTC7B Emerges as a Novel Risk Factor for Ischemic Stroke Through the Convergence of Several Genome-Wide Approaches

Author:

Krug Tiago12,Gabriel João Paulo3,Taipa Ricardo4,Fonseca Benedita V12,Domingues-Montanari Sophie5,Fernandez-Cadenas Israel5,Manso Helena26,Gouveia Liliana O7,Sobral João26,Albergaria Isabel6,Gaspar Gisela6,Jiménez-Conde Jordi8,Rabionet Raquel9,Ferro José M17,Montaner Joan5,Vicente Astrid M26,Silva Mário Rui3,Matos Ilda10,Lopes Gabriela4,Oliveira Sofia A12

Affiliation:

1. Instituto de Medicina Molecular, Faculdade de Medicina da Universidade de Lisboa, Lisboa, Portugal

2. Instituto Gulbenkian de Ciência, Oeiras, Portugal

3. Serviço de Neurologia, Hospital de São Pedro, Vila Real, Portugal

4. Serviço de Neurologia, Hospital Geral de Santo António, Porto, Portugal

5. Neurovascular Research Laboratory and Neurovascular Unit, Neurology and Medicine Departments, Universitat Autònoma de Barcelona, Vall d'Hebron Hospital, Barcelona, Spain

6. Instituto Nacional de Saúde Dr Ricardo Jorge, Lisboa, Portugal

7. Serviço de Neurologia, Hospital de Santa Maria, Lisboa, Portugal

8. NeuroMar Research Group, Stroke Unit, Department of Neurology, Hospital del Mar-IMIM, Barcelona, Spain

9. Genes and Disease Program, Center for Genomic Regulation, Barcelona, Spain

10. Serviço de Neurologia, Hospital Distrital de Mirandela, Mirandela, Portugal

Abstract

We hereby propose a novel approach to the identification of ischemic stroke (IS) susceptibility genes that involves converging data from several unbiased genetic and genomic tools. We tested the association between IS and genes differentially expressed between cases and controls, then determined which data mapped to previously reported linkage peaks and were nominally associated with stroke in published genome-wide association studies. We first performed gene expression profiling in peripheral blood mononuclear cells of 20 IS cases and 20 controls. Sixteen differentially expressed genes mapped to reported whole-genome linkage peaks, including the TTC7B gene, which has been associated with major cardiovascular disease. At the TTC7B locus, 46 tagging polymorphisms were tested for association in 565 Portuguese IS cases and 520 controls. Markers nominally associated in at least one test and defining associated haplotypes were then examined in 570 IS Spanish cases and 390 controls. Several polymorphisms and haplotypes in the intron 5–intron 6 region of TTC7B were also associated with IS risk in the Spanish and combined data sets. Multiple independent lines of evidence therefore support the role of TTC7B in stroke susceptibility, but further work is warranted to identify the exact risk variant and its pathogenic potential.

Publisher

SAGE Publications

Subject

Cardiology and Cardiovascular Medicine,Neurology (clinical),Neurology

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