Patient-specific genomics and cross-species functional analysis implicate LRP2 in hypoplastic left heart syndrome

患者特异性基因组学和跨物种功能分析表明,LRP2与左心发育不良综合征有关。

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作者:Jeanne L Theis # ,Georg Vogler # ,Maria A Missinato # ,Xing Li ,Tanja Nielsen ,Xin-Xin I Zeng ,Almudena Martinez-Fernandez ,Stanley M Walls ,Anaïs Kervadec ,James N Kezos ,Katja Birker ,Jared M Evans ,Megan M O'Byrne ,Zachary C Fogarty ,André Terzic ,Paul Grossfeld ,Karen Ocorr ,Timothy J Nelson # ,Timothy M Olson # ,Alexandre R Colas # ,Rolf Bodmer #

Abstract

Congenital heart diseases (CHDs), including hypoplastic left heart syndrome (HLHS), are genetically complex and poorly understood. Here, a multidisciplinary platform was established to functionally evaluate novel CHD gene candidates, based on whole-genome and iPSC RNA sequencing of a HLHS family-trio. Filtering for rare variants and altered expression in proband iPSCs prioritized 10 candidates. siRNA/RNAi-mediated knockdown in healthy human iPSC-derived cardiomyocytes (hiPSC-CM) and in developing Drosophila and zebrafish hearts revealed that LDL receptor-related protein LRP2 is required for cardiomyocyte proliferation and differentiation. Consistent with hypoplastic heart defects, compared to patents the proband's iPSC-CMs exhibited reduced proliferation. Interestingly, rare, predicted-damaging LRP2 variants were enriched in a HLHS cohort; however, understanding their contribution to HLHS requires further investigation. Collectively, we have established a multi-species high-throughput platform to rapidly evaluate candidate genes and their interactions during heart development, which are crucial first steps toward deciphering oligogenic underpinnings of CHDs, including hypoplastic left hearts. Keywords: D. melanogaster; cardiogenesis; congenital heart disease; genetics; genomics; human; hypoplastic left heart syndrome; iPSC; lipoproteins; medicine; zebrafish.

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