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FLII 中的双等位基因突变通过破坏心肌细胞黏附和肌原纤维组织导致儿科心肌病。

Biallelic variants in FLII cause pediatric cardiomyopathy by disrupting cardiomyocyte cell adhesion and myofibril organization.

机构信息

Department of Clinical Genetics, Erasmus MC, University Medical Center Rotterdam, Rotterdam, Netherlands.

Department of Developmental Genetics, Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany.

出版信息

JCI Insight. 2023 Sep 8;8(17):e168247. doi: 10.1172/jci.insight.168247.

Abstract

Pediatric cardiomyopathy (CM) represents a group of rare, severe disorders that affect the myocardium. To date, the etiology and mechanisms underlying pediatric CM are incompletely understood, hampering accurate diagnosis and individualized therapy development. Here, we identified biallelic variants in the highly conserved flightless-I (FLII) gene in 3 families with idiopathic, early-onset dilated CM. We demonstrated that patient-specific FLII variants, when brought into the zebrafish genome using CRISPR/Cas9 genome editing, resulted in the manifestation of key aspects of morphological and functional abnormalities of the heart, as observed in our patients. Importantly, using these genetic animal models, complemented with in-depth loss-of-function studies, we provided insights into the function of Flii during ventricular chamber morphogenesis in vivo, including myofibril organization and cardiomyocyte cell adhesion, as well as trabeculation. In addition, we identified Flii function to be important for the regulation of Notch and Hippo signaling, crucial pathways associated with cardiac morphogenesis and function. Taken together, our data provide experimental evidence for a role for FLII in the pathogenesis of pediatric CM and report biallelic variants as a genetic cause of pediatric CM.

摘要

儿科心肌病 (CM) 代表了一组罕见的严重疾病,影响心肌。迄今为止,儿科 CM 的病因和发病机制尚不完全清楚,这阻碍了准确的诊断和个体化治疗的发展。在这里,我们在 3 个具有特发性、早发性扩张型 CM 的家族中发现了高度保守的无翅-I (FLII) 基因的双等位基因突变。我们证明,使用 CRISPR/Cas9 基因组编辑将患者特异性的 FLII 变体引入斑马鱼基因组中,导致心脏形态和功能异常的关键方面表现出来,正如我们在患者中观察到的那样。重要的是,使用这些遗传动物模型,并结合深入的功能丧失研究,我们提供了关于 Flii 在体内心室腔形态发生过程中的功能的见解,包括肌原纤维组织和心肌细胞黏附以及小梁化。此外,我们确定 Flii 的功能对于 Notch 和 Hippo 信号通路的调节很重要,这些通路与心脏形态发生和功能有关。总之,我们的数据为 FLII 在儿科 CM 发病机制中的作用提供了实验证据,并报告了双等位基因突变是儿科 CM 的遗传原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7b5/10544232/ca39893de9d3/jciinsight-8-168247-g013.jpg

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