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Candidate Gene Resequencing in a Large Bicuspid Aortic Valve-Associated Thoracic Aortic Aneurysm Cohort: as an Important Contributor. | LitMetric

AI Article Synopsis

  • * Recent research indicates that genetic factors play a significant role in the development of both BAV and TAA, although only a few specific genes have been linked to these conditions and they explain only a small number of cases.
  • * A study targeting 22 candidate genes found mutations in the strongest candidate gene significantly associated with BAV/TAA, highlighting a genetic contribution to this condition, with specific mutations identified in a notable portion of affected patients.

Article Abstract

Bicuspid aortic valve (BAV) is the most common congenital heart defect. Although many BAV patients remain asymptomatic, at least 20% develop thoracic aortic aneurysm (TAA). Historically, BAV-related TAA was considered as a hemodynamic consequence of the valve defect. Multiple lines of evidence currently suggest that genetic determinants contribute to the pathogenesis of both BAV and TAA in affected individuals. Despite high heritability, only very few genes have been linked to BAV or BAV/TAA, such as , and . Moreover, they only explain a minority of patients. Other candidate genes have been suggested based on the presence of BAV in knockout mouse models (e.g., ) or in syndromic (e.g., ) or non-syndromic (e.g., ) TAA forms. We hypothesized that rare genetic variants in these genes may be enriched in patients presenting with both BAV and TAA. We performed targeted resequencing of 22 candidate genes using Haloplex target enrichment in a strictly defined BAV/TAA cohort ( = 441; BAV in addition to an aortic root or ascendens diameter ≥ 4.0 cm in adults, or a Z-score ≥ 3 in children) and in a collection of healthy controls with normal echocardiographic evaluation ( = 183). After additional burden analysis against the Exome Aggregation Consortium database, the strongest candidate susceptibility gene was ( = 0.002), with 2.5% ( = 11) of BAV/TAA patients harboring causal variants, including two nonsense, one in-frame deletion and two frameshift mutations. All six missense mutations were located in the functionally important MH1 and MH2 domains. In conclusion, we report a significant contribution of mutations to the etiology of the BAV/TAA phenotype.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5469151PMC
http://dx.doi.org/10.3389/fphys.2017.00400DOI Listing

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