Novel Insights into the Etiology, Genetics, and Embryology of Hypoplastic Left Heart Syndrome.

IF 1 Q4 CARDIAC & CARDIOVASCULAR SYSTEMS
George C Gabriel, Hisato Yagi, Xinxiu Xu, Cecilia W Lo
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Abstract

Hypoplastic left heart syndrome (HLHS) is a relatively rare severe congenital heart defect (CHD) closely linked to other left ventricular outflow tract (LVOT) lesions including bicuspid aortic valve (BAV), one of the most common heart defects. While HLHS, BAV, and other LVOT lesions have a strong genetic underpinning, their genetic etiology remains poorly understood. Findings from a large-scale mouse mutagenesis screen showed HLHS has a multigenic etiology and is genetically heterogenous, explaining difficulties in identifying the genetic causes of HLHS. In Ohia mice, HLHS shows incomplete penetrance. Some mice exhibited small LV with normal aorta, and others a normal LV with hypoplastic aorta, indicating the LV hypoplasia is not hemodynamically driven. In Ohia mutants, HLHS was found to have a digenic modular construction, with mutation in a chromatin modifier causing the small LV phenotype and mutation in Pcdha9 causing the aorta/aortic valve hypoplasia. The Pcdha9 mutation alone can cause BAV, and in the human genome two common deletion copy number variants spanning PCDHA7-10 are associated with BAV. Hence the digenic etiology of HLHS can account for the close association of HLHS, a rare CHD, with BAV, one of the most common CHD. Functional analysis of Ohia HLHS heart tissue showed severe mitochondrial dysfunction in the small LV, while the normal size RV is also affected but milder, suggesting possible role in vulnerability of surgically palliated HLHS patients to heart failure. These findings suggest insights into the genetics of HLHS may yield new therapies for improving outcome for patients with HLHS.

左心发育不全综合征病因学、遗传学和胚胎学的新见解。
左心发育不全综合征(HLHS)是一种相对罕见的严重先天性心脏缺陷(CHD),与其他左心室流出道(LVOT)病变密切相关,包括最常见的心脏缺陷之一--主动脉瓣双瓣(BAV)。虽然HLHS、BAV和其他左心室流出道病变都有很强的遗传基础,但对其遗传病因仍然知之甚少。大规模小鼠诱变筛选结果表明,HLHS具有多基因病因和遗传异质性,这也解释了为何难以确定HLHS的遗传原因。在Ohia小鼠中,HLHS表现出不完全的渗透性。一些小鼠表现出小左心室而主动脉正常,另一些小鼠则表现出正常左心室而主动脉发育不良,这表明左心室发育不良不是由血液动力学驱动的。在Ohia突变体中,发现HLHS具有二基因模块结构,染色质修饰因子突变导致小左心室表型,Pcdha9突变导致主动脉/主动脉瓣发育不良。仅 Pcdha9 突变就可导致 BAV,而在人类基因组中,跨越 PCDHA7-10 的两个常见缺失拷贝数变异与 BAV 相关。因此,HLHS 的二基因病因可以解释 HLHS 这种罕见的先天性心脏病与 BAV 这种最常见的先天性心脏病之间的密切联系。对Ohia HLHS心脏组织的功能分析显示,小左心室存在严重的线粒体功能障碍,而正常大小的左心室也受到影响,但程度较轻,这表明手术治疗后的HLHS患者可能容易发生心力衰竭。这些发现表明,对HLHS遗传学的深入研究可能会产生新的疗法,改善HLHS患者的预后。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.80
自引率
11.10%
发文量
128
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