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TBX20 loss-of-function mutation responsible for familial tetralogy of Fallot or sporadic persistent truncus arteriosus

机译:TBX20功能丧失突变导致法洛氏家族四联症或散发性持续性动脉瘤

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摘要

Congenital heart disease (CHD), the most common form of developmental abnormality in humans, remains a leading cause of morbidity and mortality in neonates. Genetic defects have been recognized as the predominant causes of CHD. Nevertheless, CHD is of substantial genetic heterogeneity and the genetic defects underlying CHD in most cases remain unclear. In the current study, the coding regions and splicing junction sites of the TBX20 gene, which encodes a T-box transcription factor key to cardiovascular morphogenesis, were sequenced in 175 unrelated patients with CHD, and a novel heterozygous TBX20 mutation, p.K274X, was identified in an index patient with tetralogy of Fallot (TOF). Genetic analysis of the proband's available family members showed that his father, elder brother and son had also TOF. In addition, his father and elder brother had also atrial septal defect, and his niece had persistent truncus arteriosus and ventricular septal defect. Analysis of the pedigree revealed that the mutation co-segregated with CHD transmitted in an autosomal dominant fashion, with complete penetrance. The nonsense mutation, which was absent in the 800 control chromosomes, was predicted to produce a truncated protein with only the amino terminus and partial T-box domain left. Functional analyses by using a dual-luciferase reporter assay system showed that the mutant TBX20 lost the ability to transactivate the target gene ANF. Furthermore, the mutation reduced the synergistic activation between TBX20 and NKX2.5 as well as GATA4, two other transcriptional factors previously associated with various CHD, encompassing TOF. This study firstly links TBX20 loss-of-function mutation to familial TOF or sporadic persistent truncus arteriosus, providing novel insight into the molecular pathogenesis of CHD.
机译:先天性心脏病(CHD)是人类最常见的发育异常形式,仍然是新生儿发病和死亡的主要原因。遗传缺陷被认为是冠心病的主要原因。然而,冠心病具有明显的遗传异质性,在大多数情况下,冠心病背后的遗传缺陷仍不清楚。在目前的研究中,对175例不相关的CHD患者和新的杂合性TBX20突变p.K274X进行了测序,该序列编码TBX20基因的编码区和剪接连接位点,该T-box转录因子是心血管形态发生的关键。在患有法洛四联症(TOF)的索引患者中被发现。对先证者现有家庭成员的遗传分析表明,他的父亲,哥哥和儿子也有TOF。此外,他的父亲和哥哥也有房间隔缺损,侄女有持续性动脉瘤和室间隔缺损。对谱系的分析表明,该突变与CHD共分离,以常染色体显性方式传播,具有完整的外显率。预计在800条对照染色体中不存在的无义突变将产生仅具有氨基末端和部分T-box结构域的截短蛋白。使用双荧光素酶报告基因检测系统的功能分析表明,突变体TBX20丧失了激活靶基因ANF的能力。此外,该突变降低了TBX20和NKX2.5以及GATA4之间的协同激活,GATA4是先前与各种CHD相关的另外两个转录因子,包括TOF。这项研究首先将TBX20功能丧失突变与家族性TOF或散发性持续性动脉瘤联系起来,从而为CHD的分子发病机理提供了新的见解。

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