纤毛病
睫状体病
生物
纤毛
遗传学
纤毛形成
桥粒蛋白
异位
运动纤毛
爪蟾
菲拉明
基因
外显子组测序
遗传异质性
清脆的
心脏病
细胞生物学
候选基因
生物信息学
原发性睫状体运动障碍
假基因
作者
Angelo B. Arrigo,Venkatraman Rao,Aakrosh Ratan,Saurabh S. Kulkarni
出处
期刊:HGG advances
[Elsevier BV]
日期:2026-02-11
卷期号:7 (2): 100580-100580
标识
DOI:10.1016/j.xhgg.2026.100580
摘要
Heterotaxy (HTX) is a congenital disorder characterized by abnormal left-right organ placement, often leading to severe congenital heart disease (CHD). Despite advances in sequencing, many CHD and HTX-associated genes remain functionally unvalidated, hindering effective clinical diagnosis and management. Here, we leveraged a high-throughput CRISPR-Cas9 screening approach in the Xenopus model to rapidly evaluate candidate genes identified from whole-exome sequencing of human CHD patients. Our screen identified Filamin B (FLNB), an actin-binding protein previously linked to skeletal disorders but not to ciliopathies or CHD. We identified 5 probands with CHD and HTX, 3 with recessive and 2 with damaging heterozygous variants in FLNB. Disrupting flnb in Xenopus reproduced key features of the human HTX phenotype, including defects in cardiac development and impaired motile cilia function. Rescue experiments confirmed the functional conservation of human FLNB, directly implicating actin cytoskeletal disruption in ciliogenesis and left-right patterning defects. Our results provide crucial evidence linking human FLNB dysfunction to ciliopathies and CHD and HTX.
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