Department of Pediatric Surgery, Xinhua Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Shanghai Key Laboratory of Pediatric Gastroenterology and Nutrition, Shanghai, China.
Clin Genet. 2024 Mar;105(3):283-293. doi: 10.1111/cge.14462. Epub 2023 Nov 27.
The Erb-B2 receptor tyrosine kinase 3 (ERBB3) gene was first identified as a cause of lethal congenital contracture syndrome (OMIM 607598), while a recent study reported six additional patients carrying ERBB3 variants which exhibited distinct clinical features with evident intestinal dysmotility (OMIM 243180). The potential connection between these phenotypes remains unknown, and the ERBB3-related phenotype spectrum needs to be better characterized. Here, we described a patient presenting with a multisystemic syndrome including skip segment Hirschsprung disease, bilateral clubfoot deformity, and cardiac defect. Trio-whole exome sequencing revealed a novel compound heterozygous variant (c.1914-7C>G; c.2942_2945del) in the patient's ERBB3 gene. RT-PCR and in vitro minigene analysis demonstrated that variant c.1914-7C>G caused aberrant mRNA splicing. Both variants resulted in premature termination codon and complete loss of ERBB3 function. erbb3b knockdown in zebrafish simultaneously caused a reduction in enteric neurons in the distal intestine, craniofacial cartilage defects, and micrognathia, which phenotypically mimics ERBB3-related intestinal dysmotility and some features of lethal congenital contracture syndrome in human patients. These findings provide further patient and animal evidence supporting that ERBB3 deficiency causes a complex syndrome involving multiple systems with phenotypic variability among distinct individuals.
Erb-B2 受体酪氨酸激酶 3(ERBB3)基因最初被鉴定为致死性先天性挛缩综合征(OMIM 607598)的致病基因,而最近的一项研究报道了另外 6 名携带 ERBB3 变异体的患者,这些变异体表现出明显的肠道动力障碍(OMIM 243180)的独特临床特征。这些表型之间的潜在联系尚不清楚,需要更好地描述 ERBB3 相关表型谱。在这里,我们描述了一名表现出多系统综合征的患者,包括节段性巨结肠、双侧马蹄内翻足畸形和心脏缺陷。三人全外显子组测序显示,患者 ERBB3 基因中存在一种新的复合杂合变异(c.1914-7C>G;c.2942_2945del)。RT-PCR 和体外小基因分析表明,变异 c.1914-7C>G 导致异常 mRNA 剪接。两种变异均导致提前终止密码子和 ERBB3 功能完全丧失。斑马鱼中 erbb3b 的敲低同时导致远端肠道的肠神经元减少、颅面软骨缺陷和小颌畸形,其表型模拟了 ERBB3 相关的肠道动力障碍和人类患者中致死性先天性挛缩综合征的一些特征。这些发现为 ERBB3 缺陷导致涉及多个系统的复杂综合征提供了进一步的患者和动物证据,并且在不同个体之间存在表型变异性。