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神经母细胞瘤扩增序列基因在 1 个颅面发育不全 1 型家系中的突变。

Mutations in the Neuroblastoma Amplified Sequence gene in a family affected by Acrofrontofacionasal Dysostosis type 1.

机构信息

Humanitas Clinical and Research Institute, via Manzoni 113, 20089 Rozzano, Italy; Department of Medical Biotechnologies and Translational Medicine, University of Milan, Via Vanvitelli 32, 20133 Milan, Italy.

Department Molecular Biotechnology and Health Sciences, University of Turin, Via Nizza 52, 10126 Turin, Italy.

出版信息

Bone. 2018 Sep;114:125-136. doi: 10.1016/j.bone.2018.06.013. Epub 2018 Jun 19.

Abstract

Acrofrontofacionasal Dysostosis type 1 (AFFND1) is an extremely rare, autosomal recessive syndrome, comprising facial and skeletal abnormalities, short stature and intellectual disability. We analyzed an Indian family with two affected siblings by exome sequencing and identified a novel homozygous truncating mutation in the Neuroblastoma-Amplified Sequence (NBAS) gene in the patients' genome. Mutations in the NBAS gene have recently been associated with different phenotypes mainly involving skeletal formation, liver and cognitive development. The NBAS protein has been implicated in two key cellular processes, namely the non-sense mediated decay and the Golgi-to-Endoplasmic Reticulum retrograde traffic. Both functions were impaired in HEK293T cells overexpressing the truncated NBAS protein, as assessed by Real-Time PCR, Western blot analysis, co-immunoprecipitation, and immunofluorescence analysis. We examined the expression of NBAS protein in mouse embryos at various developmental stages by immunohistochemistry, and detected expression in developing chondrogenic and osteogenic structures of the skeleton as well as in the cortex, hippocampus and cerebellum, which is compatible with a role in bone and brain development. Functional genetics in the zebrafish model showed that depletion of endogenous z-nbas in fish embryos results in defective morphogenesis of chondrogenic cranial skeletal elements. Overall, our data point to a conserved function of NBAS in skeletal morphogenesis during development, support the hypothesis of a causative role of the mutated NBAS gene in the pathogenesis of AFFND1 and extend the spectrum of phenotypes associated with defects in this gene.

摘要

颅面骨发育不全 1 型(AFFND1)是一种极其罕见的常染色体隐性遗传综合征,包括面部和骨骼异常、身材矮小和智力障碍。我们通过外显子组测序分析了一个有两个受影响的兄弟姐妹的印度家庭,在患者的基因组中发现了一个新的 NBAS 基因纯合截断突变。NBAS 基因的突变最近与不同的表型有关,主要涉及骨骼形成、肝脏和认知发育。NBAS 蛋白参与了两个关键的细胞过程,即无意义介导的衰变和高尔基体到内质网逆行运输。在过表达截断的 NBAS 蛋白的 HEK293T 细胞中,通过实时 PCR、Western blot 分析、共免疫沉淀和免疫荧光分析评估,这两种功能都受到了损害。我们通过免疫组织化学检查了在不同发育阶段的小鼠胚胎中 NBAS 蛋白的表达,并在骨骼的发育性软骨和成骨结构以及皮质、海马体和小脑体中检测到了表达,这与在骨骼和大脑发育中的作用相吻合。在斑马鱼模型中的功能遗传学研究表明,鱼胚胎中内源性 z-nbas 的耗竭导致软骨颅面骨骼元素的形态发生缺陷。总的来说,我们的数据表明 NBAS 在发育过程中的骨骼形态发生中具有保守功能,支持突变的 NBAS 基因在 AFFND1 发病机制中的因果作用假说,并扩展了与该基因缺陷相关的表型谱。

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