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MEF2C loss-of-function mutation contributes to congenital heart defects

机译:MEF2C功能丧失突变导致先天性心脏病

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摘要

Congenital heart disease (CHD) is the most common type of developmental abnormality in humans, and is a leading cause for substantially increased morbidity and mortality in affected individuals. Increasing studies demonstrates a pivotal role of genetic defects in the pathogenesis of CHD, and presently mutations in more than 60 genes have been associated with CHD. Nevertheless, CHD is of pronounced genetic heterogeneity, and the genetic basis underpinning CHD in a large proportion of patients remains unclear. In the present study, the whole coding exons and splicing donors/acceptors of the MEF2C gene, which codes for a transcription factor essential for normal cardiovascular development, were sequenced in 200 unrelated patients affected with CHD, and a novel heterozygous missense mutation, p.L38P, was identified in an index patient with patent ductus arteriosus (PDA) and ventricular septal defect (VSD). Genetic scan of the mutation carrier's family members available showed that the mutation was present in all affected family members but absent in unaffected family members. Analysis of the proband's pedigree revealed that the mutation co-segregated with PDA, which was transmitted as an autosomal dominant trait with complete penetrance. The mutation changed the amino acid that was completely conserved evolutionarily, and did not exist in 300 unrelated, ethnically-matched healthy individuals used as controls. Functional deciphers by using a dual-luciferase reporter assay system unveiled that the mutant MEF2C protein had a significantly reduced transcriptional activity. Furthermore, the mutation significantly diminished the synergistic activation between MEF2C and GATA4, another cardiac core transcription factor that has been causally linked to CHD. In conclusion, this is the first report on the association of a MEF2C loss-of-function mutation with an increased vulnerability to CHD in humans, which provides novel insight into the molecular mechanisms underlying CHD, implying potential implications for early diagnosis and timely prophylaxis of CHD.
机译:先天性心脏病(CHD)是人类最常见的发育异常类型,并且是导致患病个体的发病率和死亡率大幅增加的主要原因。越来越多的研究表明,遗传缺陷在冠心病的发病机理中起着关键作用,目前,已有60多个基因的突变与冠心病相关。然而,冠心病具有明显的遗传异质性,尚不清楚大部分患者冠心病的遗传基础。在本研究中,MEF2C基因的完整编码外显子和剪接供体/受体编码了正常心血管发育所必需的转录因子,在200名患有CHD的无关患者中进行了测序,并发现了一个新的杂合错义突变p。在患有动脉导管未闭(PDA)和室间隔缺损(VSD)的索引患者中鉴定出L38P。对突变携带者的家庭成员进行的遗传扫描显示,该突变存在于所有受影响的家庭成员中,而在未受影响的家庭成员中不存在。对先证者的血统进行分析后发现,该突变与PDA共分离,并以常染色体显性遗传,并具有完全的外显率。该突变改变了在进化上完全保守的氨基酸,并且在用作对照的300个不相关,种族匹配的健康个体中不存在。通过使用双荧光素酶报告基因检测系统的功能破译揭示了突变的MEF2C蛋白具有明显降低的转录活性。此外,该突变显着降低了MEF2C与GATA4之间的协同激活,GATA4是另一种与CHD因果相关的心脏核心转录因子。总之,这是关于MEF2C功能丧失突变与人类CHD易感性增加的关联的第一份报告,这为CHD潜在的分子机制提供了新颖见解,暗示了对CHD的早期诊断和及时预防的潜在意义。冠心病。

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