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脱氧次黄嘌呤合酶缺乏综合征斑马鱼模型:形态异常、癫痫样活动和抑制性中间神经元分支减少。

Deoxyhypusine synthase deficiency syndrome zebrafish model: aberrant morphology, epileptiform activity, and reduced arborization of inhibitory interneurons.

机构信息

Center for Molecular Medicine Norway (NCMM), University of Oslo, Oslo, Norway.

Institute for Orphan Drug Discovery, Bremerhaven, Germany.

出版信息

Mol Brain. 2024 Sep 27;17(1):68. doi: 10.1186/s13041-024-01139-w.

Abstract

DHPS deficiency syndrome is an ultra-rare neurodevelopmental disorder (NDD) which results from biallelic mutations in the gene encoding the enzyme deoxyhypusine synthase (DHPS). DHPS is essential to synthesize hypusine, a rare amino acid formed by post-translational modification of a conserved lysine in eukaryotic initiation factor 5 A (eIF5A). DHPS deficiency syndrome causes epilepsy, cognitive and motor impairments, and mild facial dysmorphology. In mice, a brain-specific genetic deletion of Dhps at birth impairs eIF5A-dependent mRNA translation. This alters expression of proteins required for neuronal development and function, and phenotypically models features of human DHPS deficiency. We studied the role of DHPS in early brain development using a zebrafish loss-of-function model generated by knockdown of dhps expression with an antisense morpholino oligomer (MO) targeting the exon 2/intron 2 (E2I2) splice site of the dhps pre-mRNA. dhps knockdown embryos exhibited dose-dependent developmental delay and dysmorphology, including microcephaly, axis truncation, and body curvature. In dhps knockdown larvae, electrophysiological analysis showed increased epileptiform activity, and confocal microscopy analysis revealed reduced arborisation of GABAergic neurons. Our findings confirm that hypusination of eIF5A by DHPS is needed for early brain development, and zebrafish with an antisense knockdown of dhps model features of DHPS deficiency syndrome.

摘要

DHPS 缺陷综合征是一种极罕见的神经发育障碍(NDD),由编码酶脱羟鸟氨酸合成酶(DHPS)的基因的双等位基因突变引起。DHPS 对于合成假尿嘧啶核苷至关重要,假尿嘧啶核苷是真核起始因子 5A(eIF5A)中保守赖氨酸的翻译后修饰形成的稀有氨基酸。DHPS 缺陷综合征会导致癫痫、认知和运动障碍以及轻度面部畸形。在小鼠中,出生时大脑特异性敲除 Dhps 会损害 eIF5A 依赖性 mRNA 翻译。这会改变神经元发育和功能所需蛋白的表达,并在表型上模拟人类 DHPS 缺陷的特征。我们使用靶向 dhps 前体 mRNA 外显子 2/内含子 2(E2I2)剪接位点的反义 morpholino 寡核苷酸(MO)对 dhps 进行敲低,建立了斑马鱼功能丧失模型,研究了 DHPS 在早期大脑发育中的作用。dhps 敲低胚胎表现出剂量依赖性发育迟缓及畸形,包括小头畸形、轴突截断和身体弯曲。在 dhps 敲低幼虫中,电生理分析显示癫痫样活动增加,共聚焦显微镜分析显示 GABA 能神经元的分支减少。我们的研究结果证实,DHPS 通过脱羟鸟氨酸合成酶对 eIF5A 的假尿嘧啶化对于早期大脑发育是必需的,并且通过反义敲低 dhps 的斑马鱼模型具有 DHPS 缺陷综合征的特征。

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