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复合杂合性 NOTCH1 突变导致左心发育不全综合征患者的心脏发生障碍。

Compound heterozygous NOTCH1 mutations underlie impaired cardiogenesis in a patient with hypoplastic left heart syndrome.

机构信息

Cardiovascular Genetics Research Laboratory, Mayo Clinic, 200 First Street SW, Rochester, MN, 55905, USA.

出版信息

Hum Genet. 2015 Sep;134(9):1003-11. doi: 10.1007/s00439-015-1582-1. Epub 2015 Jul 12.

Abstract

Hypoplastic left heart syndrome (HLHS) is a severe congenital heart defect (CHD) that necessitates staged, single ventricle surgical palliation. An increased frequency of bicuspid aortic valve (BAV) has been observed among relatives. We postulated number of mutant alleles as a molecular basis for variable CHD expression in an extended family comprised of an HLHS proband and four family members who underwent echocardiography and whole-genome sequencing (WGS). Dermal fibroblast-derived induced pluripotent stem cells (iPSC) were procured from the proband-parent trio and bioengineered into cardiomyocytes. Cardiac phenotyping revealed aortic valve atresia and a slit-like left ventricular cavity in the HLHS proband, isolated bicuspid pulmonary valve in his mother, BAV in a maternal 4° relative, and no CHD in his father or sister. Filtering of WGS for rare, functional variants that segregated with CHD and were compound heterozygous in the HLHS proband identified NOTCH1 as the sole candidate gene. An unreported missense mutation (P1964L) in the cytoplasmic domain, segregating with semilunar valve malformation, was maternally inherited and a rare missense mutation (P1256L) in the extracellular domain, clinically silent in the heterozygous state, was paternally inherited. Patient-specific iPSCs exhibited diminished transcript levels of NOTCH1 signaling pathway components, impaired myocardiogenesis, and a higher prevalence of heterogeneous myofilament organization. Extended, phenotypically characterized families enable WGS-derived variant filtering for plausible Mendelian modes of inheritance, a powerful strategy to discover molecular underpinnings of CHD. Identification of compound heterozygous NOTCH1 mutations and iPSC-based functional modeling implicate mutant allele burden and impaired myogenic potential as mechanisms for HLHS.

摘要

左心发育不全综合征(HLHS)是一种严重的先天性心脏缺陷(CHD),需要进行分期的单心室手术姑息治疗。在亲属中观察到二叶式主动脉瓣(BAV)的频率增加。我们假设突变等位基因的数量是一个由 HLHS 先证者和四名接受超声心动图和全基因组测序(WGS)的家庭成员组成的大家庭中可变 CHD 表达的分子基础。从先证者-父母三人组中获得皮肤成纤维细胞衍生的诱导多能干细胞(iPSC),并将其生物工程化为心肌细胞。心脏表型分析显示 HLHS 先证者的主动脉瓣闭锁和左心室腔呈裂隙状,其母亲的孤立性二叶式肺动脉瓣,一位 4 度亲属的 BAV,以及其父亲和妹妹均无 CHD。对 WGS 进行罕见、功能变异的过滤,这些变异与 CHD 分离,并在 HLHS 先证者中为复合杂合子,鉴定 NOTCH1 为唯一候选基因。在细胞质结构域中发现一个未报道的错义突变(P1964L),与半月瓣畸形分离,呈母系遗传,在细胞外结构域中发现一个罕见的错义突变(P1256L),在杂合状态下临床表现沉默,呈父系遗传。患者特异性 iPSC 显示 NOTCH1 信号通路成分的转录水平降低,心肌生成受损,以及异质肌丝组织的更高发生率。扩展的、表型特征明确的家庭可以对 WGS 衍生的变异进行过滤,以发现合理的孟德尔遗传模式,这是发现 CHD 分子基础的有力策略。NOTCH1 复合杂合突变的鉴定和基于 iPSC 的功能建模提示突变等位基因负担和受损的肌生成潜能是 HLHS 的机制。

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