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RAB5C 错义变异导致的大头畸形和发育迟缓。

Macrocephaly and developmental delay caused by missense variants in RAB5C.

机构信息

Department of Pediatrics, University Medical Center Utrecht, Utrecht, 3584 EA, The Netherlands.

Departments of Pediatrics and Genetics, C. elegans Model Organism Screening Center, Washington University in St Louis School of Medicine, St Louis, MO 63110, USA.

出版信息

Hum Mol Genet. 2023 Oct 17;32(21):3063-3077. doi: 10.1093/hmg/ddad130.

Abstract

Rab GTPases are important regulators of intracellular vesicular trafficking. RAB5C is a member of the Rab GTPase family that plays an important role in the endocytic pathway, membrane protein recycling and signaling. Here we report on 12 individuals with nine different heterozygous de novo variants in RAB5C. All but one patient with missense variants (n = 9) exhibited macrocephaly, combined with mild-to-moderate developmental delay. Patients with loss of function variants (n = 2) had an apparently more severe clinical phenotype with refractory epilepsy and intellectual disability but a normal head circumference. Four missense variants were investigated experimentally. In vitro biochemical studies revealed that all four variants were damaging, resulting in increased nucleotide exchange rate, attenuated responsivity to guanine exchange factors and heterogeneous effects on interactions with effector proteins. Studies in C. elegans confirmed that all four variants were damaging in vivo and showed defects in endocytic pathway function. The variant heterozygotes displayed phenotypes that were not observed in null heterozygotes, with two shown to be through a dominant negative mechanism. Expression of the human RAB5C variants in zebrafish embryos resulted in defective development, further underscoring the damaging effects of the RAB5C variants. Our combined bioinformatic, in vitro and in vivo experimental studies and clinical data support the association of RAB5C missense variants with a neurodevelopmental disorder characterized by macrocephaly and mild-to-moderate developmental delay through disruption of the endocytic pathway.

摘要

Rab GTPases 是细胞内囊泡运输的重要调节因子。RAB5C 是 Rab GTPase 家族的成员,在胞吞作用途径、膜蛋白循环和信号转导中发挥重要作用。本研究报道了 12 名个体存在 9 种不同的 RAB5C 杂合新生变异。除 1 名错义变异患者(n=9)外,所有患者均表现为大头畸形,伴有轻度至中度发育迟缓。2 名丧失功能变异患者(n=2)表现出明显更严重的临床表型,伴有难治性癫痫和智力残疾,但头围正常。对 4 种错义变异进行了实验研究。体外生化研究表明,所有 4 种变异均具有破坏性,导致核苷酸交换率增加、对鸟嘌呤交换因子的反应性减弱以及与效应蛋白相互作用的异质性影响。在秀丽隐杆线虫中的研究证实,所有 4 种变异在体内均具有破坏性,并显示出胞吞作用途径功能缺陷。杂合变异体表现出与杂合缺失体不同的表型,其中 2 种通过显性负性机制发挥作用。人类 RAB5C 变异体在斑马鱼胚胎中的表达导致发育缺陷,进一步强调了 RAB5C 变异体的破坏性影响。我们的综合生物信息学、体外和体内实验研究以及临床数据支持 RAB5C 错义变异与以大头畸形和轻度至中度发育迟缓为特征的神经发育障碍相关,其通过破坏胞吞作用途径而发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fc2/10586195/bc687c764b6e/ddad130f1.jpg

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