Genetic basis of familial dilated cardiomyopathy patients undergoing heart transplantation

医学 扩张型心肌病 基因检测 心脏移植 移植 遗传异质性 心肌病 遗传分析 突变 遗传学 内科学 心力衰竭 基因 表型 生物
作者
Sofía Cuenca,María José Caño,Juan R. Gimeno,Alfonso Jurado,Clara Salas,Iria Gómez,Laura Padrón-Barthe,José J. Grillo,Carlos Vilches,Javier Segovia,Domingo A. Pascual‐Figal,Enrique Lara‐Pezzi,Lorenzo Monserrat,Luis Alonso‐Pulpón,Pablo García‐Pavía
出处
期刊:Journal of Heart and Lung Transplantation [Elsevier]
卷期号:35 (5): 625-635 被引量:64
标识
DOI:10.1016/j.healun.2015.12.014
摘要

Dilated cardiomyopathy (DCM) is the most frequent cause of heart transplantation (HTx). The genetic basis of DCM among patients undergoing HTx has been poorly characterized. We sought to determine the genetic basis of familial DCM HTx and to establish the yield of modern next generation sequencing (NGS) technologies in this setting.Fifty-two heart-transplanted patients due to familial DCM underwent NGS genetic evaluation with a panel of 126 genes related to cardiac conditions (59 associated with DCM). Genetic variants were initially classified as pathogenic mutations or as variants of uncertain significance (VUS). Final pathogenicity status was determined by familial cosegregation studies.Initially, 24 pathogenic mutations were found in 21 patients (40%); 25 patients (48%) carried 19 VUS and 6 (12%) did not show any genetic variant. Familial evaluation of 220 relatives from 36 of the 46 families with genetic variants confirmed pathogenicity in 14 patients and allowed reclassification of VUS as pathogenic in 17 patients, and as non-pathogenic in 3 cases. At the end of the study, the DCM-causing mutation was identified in 38 patients (73%) and 5 patients (10%) harbored only VUS. No genetic variants were identified in 9 cases (17%).The genetic spectrum of familial DCM patients undergoing HTx is heterogeneous and involves multiple genes. NGS technology plus detailed familial studies allow identification of causative mutations in the vast majority of familial DCM cases. Detailed familial studies remain critical to determine the pathogenicity of underlying genetic defects in a substantial number of cases.
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