TY - JOUR
T1 - Copy number variation analysis in bicuspid aortic valve-related aortopathy identifies TBX20 as a contributing gene
AU - MIBAVA Leducq Consortium
AU - Luyckx, Ilse
AU - Kumar, Ajay A.
AU - Reyniers, Edwin
AU - Dekeyser, Emily
AU - Vanderstraeten, Kathleen
AU - Vandeweyer, Geert
AU - Wünnemann, Florian
AU - Preuss, Christoph
AU - Mazzella, Jean Michaël
AU - Goudot, Guillaume
AU - Messas, Emmanuel
AU - Albuisson, Juliette
AU - Jeunemaitre, Xavier
AU - Eriksson, Per
AU - Mohamed, Salah A.
AU - Kempers, Marlies
AU - Salemink, Simone
AU - Duijnhouwer, Anthonie
AU - Andelfinger, Gregor
AU - Dietz, Harry C.
AU - Verstraeten, Aline
AU - Van Laer, Lut
AU - Loeys, Bart L.
AU - Zhurayev, Rustam
AU - Zerbino, Dmytro
AU - Mital, Seema
AU - Mertens, Luc
AU - Franco-Cereceda, Anders
AU - Verhagen, Judith M.A.
AU - van de Laar, Ingrid M.B.H.
AU - Wessels, Marja W.
AU - Nemcikova, Michaela
AU - Krebsova, Alice
N1 - Publisher Copyright:
© 2019, European Society of Human Genetics.
PY - 2019/7/1
Y1 - 2019/7/1
N2 - Bicuspid aortic valve (BAV) is the most common congenital heart defect (CHD), affecting 1–2% of the population. BAV is associated with thoracic aortic aneurysms (TAAs). Deleterious copy number variations (CNVs) were found previously in up to 10% of CHD cases. This study aimed at unravelling the contribution of deleterious deletions or duplications in 95 unrelated BAV/TAA patients. Seven unique or rare CNVs were validated, harbouring protein-coding genes with a role in the cardiovascular system. Based on the presence of overlapping CNVs in patients with cardiovascular phenotypes in the DECIPHER database, the identification of similar CNVs in whole-exome sequencing data of 67 BAV/TAA patients and suggested topological domain involvement from Hi-C data, supportive evidence was obtained for two genes (DGCR6 and TBX20) of the seven initially validated CNVs. A rare variant burden analysis using next-generation sequencing data from 637 BAV/TAA patients was performed for these two candidate genes. This revealed a suggestive genetic role for TBX20 in BAV/TAA aetiology, further reinforced by segregation of a rare TBX20 variant with the phenotype within a BAV/TAA family. To conclude, our results do not confirm a significant contribution for deleterious CNVs in BAV/TAA as only one potentially pathogenic CNV (1.05%) was identified. We cannot exclude the possibility that BAV/TAA is occasionally attributed to causal CNVs though, or that certain CNVs act as genetic risk factors by creating a sensitised background for BAV/TAA. Finally, accumulative evidence for TBX20 involvement in BAV/TAA aetiology underlines the importance of this transcription factor in cardiovascular disease.
AB - Bicuspid aortic valve (BAV) is the most common congenital heart defect (CHD), affecting 1–2% of the population. BAV is associated with thoracic aortic aneurysms (TAAs). Deleterious copy number variations (CNVs) were found previously in up to 10% of CHD cases. This study aimed at unravelling the contribution of deleterious deletions or duplications in 95 unrelated BAV/TAA patients. Seven unique or rare CNVs were validated, harbouring protein-coding genes with a role in the cardiovascular system. Based on the presence of overlapping CNVs in patients with cardiovascular phenotypes in the DECIPHER database, the identification of similar CNVs in whole-exome sequencing data of 67 BAV/TAA patients and suggested topological domain involvement from Hi-C data, supportive evidence was obtained for two genes (DGCR6 and TBX20) of the seven initially validated CNVs. A rare variant burden analysis using next-generation sequencing data from 637 BAV/TAA patients was performed for these two candidate genes. This revealed a suggestive genetic role for TBX20 in BAV/TAA aetiology, further reinforced by segregation of a rare TBX20 variant with the phenotype within a BAV/TAA family. To conclude, our results do not confirm a significant contribution for deleterious CNVs in BAV/TAA as only one potentially pathogenic CNV (1.05%) was identified. We cannot exclude the possibility that BAV/TAA is occasionally attributed to causal CNVs though, or that certain CNVs act as genetic risk factors by creating a sensitised background for BAV/TAA. Finally, accumulative evidence for TBX20 involvement in BAV/TAA aetiology underlines the importance of this transcription factor in cardiovascular disease.
UR - http://www.scopus.com/inward/record.url?scp=85062338955&partnerID=8YFLogxK
U2 - 10.1038/s41431-019-0364-y
DO - 10.1038/s41431-019-0364-y
M3 - Journal articles
C2 - 30820038
AN - SCOPUS:85062338955
SN - 1018-4813
VL - 27
SP - 1033
EP - 1043
JO - European Journal of Human Genetics
JF - European Journal of Human Genetics
IS - 7
ER -