Knockout of the fcsk gene in zebrafish causes neurodevelopmental defects.

IF 4.7 1区 生物学 Q1 ZOOLOGY
Zhen-Xing Liu, Ting-Ting Zou, Hui-Hui Liu, Hai-Bo Jia, Xian-Qin Zhang
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引用次数: 0

Abstract

Congenital disorders of glycosylation (CDG) are a cluster of monogenic disorders resulting from defects in glycosylation. FCSK encodes fucokinase, an enzyme that catalyzes the phosphorylation of L-fucose to generate fucose-1-phosphate, an important step in fucosylation. Mutations in FCSK lead to CDG with an autosomal recessive inheritance pattern, primarily manifesting as developmental delay, hypotonia, and brain abnormalities. However, no fcsk mutant animal models have yet been established. This study constructed the first fcsk knockout ( fcsk -/-) zebrafish model using CRISPR/Cas9 technology. Notably, fcsk -/- zebrafish exhibited impaired growth, characterized by delayed epiboly and DNA accumulation during early embryonic development, as well as brain atrophy in adulthood. Larval-stage fcsk -/- zebrafish displayed locomotor deficits and increased susceptibility to pentylenetetrazole-induced seizures. In adulthood, fcsk -/- zebrafish showed neurodevelopmental abnormalities, including increased anxiety, decreased aggression, reduced social preference, and impaired memory. Additionally, total protein fucosylation was markedly reduced in fcsk -/- zebrafish, accompanied by decreased expression of pofut2, which encodes protein O-fucosyltransferase 2, an enzyme involved in the fucosylation salvage pathway. Apoptotic activity was elevated in the midbrain-hindbrain boundary (MHB) of fcsk -/- zebrafish. Supplementation with GDP-L-fucose or the human FCSK gene restored developmental defects and total protein fucosylation in fcsk -/- zebrafish. RNA sequencing revealed dysregulated gene expression associated with glycosylation, apoptosis, and neurodegenerative diseases. These findings suggest that fcsk -/- zebrafish exhibit neurodevelopmental disorders, providing the first fcsk gene knockout animal model and offering a platform for investigating the molecular underpinnings of the disease and facilitating drug screening efforts.

敲除斑马鱼的fcsk基因会导致神经发育缺陷。
先天性糖基化障碍(CDG)是一组由糖基化缺陷引起的单基因疾病。FCSK编码岩屑激酶,一种催化L- focus磷酸化生成focus -1-磷酸的酶,这是聚焦化的重要步骤。FCSK突变导致CDG具有常染色体隐性遗传模式,主要表现为发育迟缓、张力低下和大脑异常。然而,目前尚未建立fcsk突变动物模型。本研究利用CRISPR/Cas9技术构建了首个fcsk敲除(fcsk -/-)斑马鱼模型。值得注意的是,fcsk -/-斑马鱼表现出生长受损,其特征是在早期胚胎发育期间表观代谢和DNA积累延迟,以及成年期脑萎缩。幼期fcsk -/-斑马鱼表现出运动缺陷和对戊四唑诱发癫痫的易感性增加。成年后,fcsk -/-斑马鱼表现出神经发育异常,包括焦虑增加、攻击减少、社会偏好降低和记忆受损。此外,fcsk -/-斑马鱼的总蛋白聚焦化显著降低,并伴有pofut2的表达降低,pofut2编码蛋白O-聚焦转移酶2,这是一种参与聚焦化拯救途径的酶。fcsk -/-斑马鱼中脑-后脑边界(MHB)细胞凋亡活性升高。补充GDP-L-聚焦或人FCSK基因可以恢复FCSK -/-斑马鱼的发育缺陷和总蛋白聚焦。RNA测序显示与糖基化、细胞凋亡和神经退行性疾病相关的基因表达失调。这些发现表明fcsk -/-斑马鱼表现出神经发育障碍,提供了第一个fcsk基因敲除动物模型,并为研究该疾病的分子基础和促进药物筛选工作提供了平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Zoological Research
Zoological Research Medicine-General Medicine
CiteScore
7.60
自引率
10.20%
发文量
1937
审稿时长
8 weeks
期刊介绍: Established in 1980, Zoological Research (ZR) is a bimonthly publication produced by Kunming Institute of Zoology, the Chinese Academy of Sciences, and the China Zoological Society. It publishes peer-reviewed original research article/review/report/note/letter to the editor/editorial in English on Primates and Animal Models, Conservation and Utilization of Animal Resources, and Animal Diversity and Evolution.
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