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Rare and private variations in neural crest, apoptosis and sarcomere genes define the polygenic background of isolated Tetralogy of Fallot

机译:神经c,细胞凋亡和肌节基因的罕见和私人变异定义了法洛四联症的多基因背景

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摘要

Tetralogy of Fallot (TOF) is the most common cyanotic congenital heart disease. Its genetic basis is demonstrated by an increased recurrence risk in siblings and familial cases.However, the majority ofTOFare sporadic, isolated cases of undefined origin and it had been postulated that rare and private autosomal variations in concert define its genetic basis. To elucidate this hypothesis, we performed a multilevel study using targeted re-sequencing and whole-transcriptome profiling. We developed a novel concept based on a gene's mutation frequency to unravel the polygenic origin of TOF. We show that isolated TOF is caused by a combination of deleterious private and rare mutations in genes essential for apoptosis and cell growth, the assembly of the sarcomere as well as for the neural crest and secondary heart field, the cellular basis of the right ventricle and its outflow tract. Affected genes coincide in an interaction network with significant disturbances in expression shared by cases with amutually affected TOF gene. The majority of genes show continuous expression during adulthood, which opens a new route to understand the diversity in the long-term clinical outcome of TOF cases. Our findings demonstrate that TOF has a polygenic origin and that understanding the genetic basis can lead to novel diagnostic and therapeutic routes. Moreover, the novel concept of the gene mutation frequency is a versatile measure and can be applied to other open genetic disorders.
机译:法洛四联症(TOF)是最常见的发otic性先天性心脏病。它的遗传基础通过兄弟姐妹和家族病例中复发风险的增加而得以证明。然而,大多数TOF是散发性,孤立的,来源不明的病例,据推测,罕见的和私人的常染色体变异共同决定了其遗传基础。为了阐明该假设,我们使用靶向重测序和全转录组分析进行了多级研究。我们基于基因的突变频率开发了一种新颖的概念,以揭示TOF的多基因起源。我们显示,孤立的TOF是由细胞凋亡和细胞生长,肌节的组装以及神经secondary和继发性心脏场,右心室的细胞基础和细胞基础所必需的基因中有害的私人突变和罕见突变的组合引起的它的流出道。受影响的基因在相互作用网络中重合,互不相关的TOF基因病例共有明显的表达障碍。大多数基因在成年期显示连续表达,这为理解TOF病例长期临床结果的多样性开辟了一条新途径。我们的发现表明TOF具有多基因起源,并且了解遗传基础可以导致新颖的诊断和治疗途径。此外,基因突变频率的新颖概念是一种通用的方法,可以应用于其他开放性遗传疾病。

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