CAPN2的罕见变异增加了孤立性左心发育不良综合征的风险。

IF 3.3 Q2 GENETICS & HEREDITY HGG Advances Pub Date : 2023-08-12 eCollection Date: 2023-10-12 DOI:10.1016/j.xhgg.2023.100232
Elizabeth E Blue, Janson J White, Michael K Dush, William W Gordon, Brent H Wyatt, Peter White, Colby T Marvin, Emmi Helle, Tiina Ojala, James R Priest, Mary M Jenkins, Lynn M Almli, Jennita Reefhuis, Faith Pangilinan, Lawrence C Brody, Kim L McBride, Vidu Garg, Gary M Shaw, Paul A Romitti, Wendy N Nembhard, Marilyn L Browne, Martha M Werler, Denise M Kay, Seema Mital, Jessica X Chong, Nanette M Nascone-Yoder, Michael J Bamshad
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引用次数: 0

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),其特征是左心室和主动脉发育不全,主动脉和二尖瓣狭窄或闭锁。HLHS仅占所有CHD的~4%-8%,但占死亡人数的~25%。HLHS在70%的家庭中是一种孤立的缺陷(即iHLHS),其中绝大多数是单纯性的。尽管进行了深入的研究,iHLHS的遗传基础在很大程度上仍然未知。我们对来自四个独立队列的331个iHLHS家族进行了外显子组测序。一项基于孟德尔模型的分析表明,在该队列中>90%的家族中,iHLHS不是由先前报道的iHLHS或CHD基因中的单一、大效应等位基因引起的。基于基因的关联测试发现,与编码一种参与功能粘附的蛋白质的CAPN2变异相关的iHLHS风险增加(p=1.8×10-5)。脊椎动物模型(非洲爪蟾)的功能验证研究证实,CAPN2对心室形态发生至关重要,钙蛋白酶功能的体内丧失会导致心室发育不全表型,并表明在多个iHLHS个体中发现的人类CAPN2707C>T和CAPN21112C>T变体是亚形态等位基因。总之,我们的研究结果表明,iHLHS通常不是孟德尔状态,证明CAPN2变体增加了iHLHS的风险,并确定了一种参与HLHS发病机制的新途径。
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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Rare variants in CAPN2 increase risk for isolated hypoplastic left heart syndrome.

Hypoplastic left heart syndrome (HLHS) is a severe congenital heart defect (CHD) characterized by hypoplasia of the left ventricle and aorta along with stenosis or atresia of the aortic and mitral valves. HLHS represents only ∼4%-8% of all CHDs but accounts for ∼25% of deaths. HLHS is an isolated defect (i.e., iHLHS) in 70% of families, the vast majority of which are simplex. Despite intense investigation, the genetic basis of iHLHS remains largely unknown. We performed exome sequencing on 331 families with iHLHS aggregated from four independent cohorts. A Mendelian-model-based analysis demonstrated that iHLHS was not due to single, large-effect alleles in genes previously reported to underlie iHLHS or CHD in >90% of families in this cohort. Gene-based association testing identified increased risk for iHLHS associated with variation in CAPN2 (p = 1.8 × 10-5), encoding a protein involved in functional adhesion. Functional validation studies in a vertebrate animal model (Xenopus laevis) confirmed CAPN2 is essential for cardiac ventricle morphogenesis and that in vivo loss of calpain function causes hypoplastic ventricle phenotypes and suggest that human CAPN2707C>T and CAPN21112C>T variants, each found in multiple individuals with iHLHS, are hypomorphic alleles. Collectively, our findings show that iHLHS is typically not a Mendelian condition, demonstrate that CAPN2 variants increase risk of iHLHS, and identify a novel pathway involved in HLHS pathogenesis.

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来源期刊
HGG Advances
HGG Advances Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
4.30
自引率
4.50%
发文量
69
审稿时长
14 weeks
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