遗传学
候选基因
扩张型心肌病
生物
基因座(遗传学)
心肌病
单核苷酸多态性
生物信息学
错义突变
外显子组测序
外显子组
基因
医学
心力衰竭
突变
基因型
内科学
作者
Ulrike Esslinger,Sophie Garnier,Agathe Korniat,Carole Proust,Georgios Kararigas,Martina Müller‐Nurasyid,Jean‐Philippe Empana,Michael P. Morley,Claire Perret,Klaus Stark,Alexander G. Bick,Sanjay Prasad,Jennifer Kriebel,Jin Li,Laurence Tiret,Konstantin Strauch,Declan P. O’Regan,Kenneth B. Marguiles,J. G. Seidman,Pierre Boutouyrie
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2017-03-15
卷期号:12 (3): e0172995-e0172995
被引量:111
标识
DOI:10.1371/journal.pone.0172995
摘要
Aims Dilated cardiomyopathy (DCM) is an important cause of heart failure with a strong familial component. We performed an exome-wide array-based association study (EWAS) to assess the contribution of missense variants to sporadic DCM. Methods and results 116,855 single nucleotide variants (SNVs) were analyzed in 2796 DCM patients and 6877 control subjects from 6 populations of European ancestry. We confirmed two previously identified associations with SNVs in BAG3 and ZBTB17 and discovered six novel DCM-associated loci (Q-value<0.01). The lead-SNVs at novel loci are common and located in TTN, SLC39A8, MLIP, FLNC, ALPK3 and FHOD3. In silico fine mapping identified HSPB7 as the most likely candidate at the ZBTB17 locus. Rare variant analysis (MAF<0.01) demonstrated significant association for TTN variants only (P = 0.0085). All candidate genes but one (SLC39A8) exhibit preferential expression in striated muscle tissues and mutations in TTN, BAG3, FLNC and FHOD3 are known to cause familial cardiomyopathy. We also investigated a panel of 48 known cardiomyopathy genes. Collectively, rare (n = 228, P = 0.0033) or common (n = 36, P = 0.019) variants with elevated in silico severity scores were associated with DCM, indicating that the spectrum of genes contributing to sporadic DCM extends beyond those identified here. Conclusion We identified eight loci independently associated with sporadic DCM. The functions of the best candidate genes at these loci suggest that proteostasis regulation might play a role in DCM pathophysiology.
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