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脊椎动物中EFTUD2缺陷:一种新型人类突变的鉴定及斑马鱼模型的构建

EFTUD2 deficiency in vertebrates: Identification of a novel human mutation and generation of a zebrafish model.

作者信息

Deml Brett, Reis Linda M, Muheisen Sanaa, Bick David, Semina Elena V

机构信息

Department of Pediatrics and Children's Research Institute at the Medical College of Wisconsin and Children's Hospital of Wisconsin, Milwaukee, Wisconsin.

Department of Cell Biology, Neurobiology, and Anatomy, Medical College of Wisconsin, Milwaukee, Wisconsin.

出版信息

Birth Defects Res A Clin Mol Teratol. 2015 Jul;103(7):630-40. doi: 10.1002/bdra.23397. Epub 2015 Jun 27.


DOI:10.1002/bdra.23397
PMID:26118977
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4487781/
Abstract

BACKGROUND: Congenital microphthalmia and coloboma are severe developmental defects that are frequently associated with additional systemic anomalies and display a high level of genetic heterogeneity. METHODS: To identify the pathogenic variant in a patient with microphthalmia, coloboma, retinal dystrophy, microcephaly, and other features, whole exome sequencing analysis of the patient and parental samples was undertaken. To further explore the identified variant/gene, expression and functional studies in zebrafish were performed. RESULTS: Whole exome sequencing revealed a de novo variant, c.473_474delGA, p.(Arg158Lysfs4), in EFTUD2 which encodes a component of the spliceosome complex. Dominant mutations in EFTUD2 cause Mandibulofacial Dysostosis, Guion-Almeida type, which does not involve microphthalmia, coloboma, or retinal dystrophy; analysis of genes known to cause these ocular phenotypes identified several variants of unknown significance but no causal alleles in the affected patient. Zebrafish eftud2 demonstrated high sequence conservation with the human gene and broad embryonic expression. TALEN-mediated disruption was employed to generate a c.378_385 del, p.(Ser127Aspfs23) truncation mutation in eftud2. Homozygous mutants displayed a reduced head size, small eye, curved body, and early embryonic lethality. Apoptosis assays demonstrated a striking increase in terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate nick end-labeling (TUNEL)-positive cells in the developing brain, eye, spinal cord, and other tissues starting at 30 hours postfertilization. CONCLUSION: This study reports a novel mutation in EFTUD2 in a Mandibulofacial Dysostosis, Guion-Almeida type patient with unusual ocular features and the generation of a first animal model of eftud2 deficiency. The severe embryonic phenotype observed in eftud2 mutants indicates an important conserved role during development of diverse tissues in vertebrates.

摘要

背景:先天性小眼症和脉络膜缺损是严重的发育缺陷,常与其他全身异常相关,且具有高度的遗传异质性。 方法:为了鉴定一名患有小眼症、脉络膜缺损、视网膜营养不良、小头畸形及其他特征的患者的致病变异,对患者及其父母的样本进行了全外显子组测序分析。为了进一步探究所鉴定的变异/基因,在斑马鱼中进行了表达和功能研究。 结果:全外显子组测序在编码剪接体复合物一个组分的EFTUD2基因中发现了一个新生变异,c.473_474delGA,p.(Arg158Lysfs4)。EFTUD2中的显性突变会导致Guion-Almeida型下颌面骨发育不全,该病不涉及小眼症、脉络膜缺损或视网膜营养不良;对已知会导致这些眼部表型的基因进行分析,在该患病患者中鉴定出了几个意义不明的变异,但未发现致病等位基因。斑马鱼eftud2与人类基因具有高度的序列保守性,且在胚胎中广泛表达。利用TALEN介导的破坏作用在eftud2中产生了一个c.378_385 del,p.(Ser127Aspfs23)截断突变。纯合突变体表现出头尺寸减小、眼睛小、身体弯曲以及胚胎早期致死。凋亡分析表明,从受精后30小时开始,在发育中的脑、眼、脊髓和其他组织中,末端脱氧核苷酸转移酶介导的脱氧尿苷三磷酸缺口末端标记(TUNEL)阳性细胞显著增加。 结论:本研究报告了一名患有Guion-Almeida型下颌面骨发育不全且具有异常眼部特征的患者中EFTUD2的一个新突变,并构建了首个eftud2缺陷动物模型。在eftud2突变体中观察到的严重胚胎表型表明其在脊椎动物多种组织发育过程中具有重要的保守作用。

相似文献

[1]
EFTUD2 deficiency in vertebrates: Identification of a novel human mutation and generation of a zebrafish model.

Birth Defects Res A Clin Mol Teratol. 2015-7

[2]
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J Clin Lab Anal. 2022-5

[3]
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[4]
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[5]
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Hum Genomics. 2019-12-5

[6]
Oto-facial syndrome and esophageal atresia, intellectual disability and zygomatic anomalies - expanding the phenotypes associated with EFTUD2 mutations.

Orphanet J Rare Dis. 2013-7-24

[7]
Mandibulofacial dysostosis Guion-Almeida type caused by novel EFTUD2 splice site variants in two Asian children.

Clin Dysmorphol. 2018-4

[8]
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[9]
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[10]
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J Appl Genet. 2015-5

引用本文的文献

[1]
A novel splicing variant causing mandibulofacial dysostosis with microcephaly: a case report.

Transl Pediatr. 2025-6-27

[2]
Addressing the tissue specificity of U5 snRNP spliceosomopathies.

Front Cell Dev Biol. 2025-4-8

[3]
Dual diagnosis of achondroplasia and mandibulofacial dysostosis with microcephaly.

BMC Med Genomics. 2024-9-6

[4]
Atypical mandibulofacial dysostosis with microcephaly diagnosed through the identification of a novel pathogenic mutation in EFTUD2.

Mol Genet Genomic Med. 2024-4

[5]
A common cellular response to broad splicing perturbations is characterized by metabolic transcript downregulation driven by the Mdm2-p53 axis.

Dis Model Mech. 2024-2-1

[6]
Facial analytics based on a coordinate extrapolation system (zFACE) for morphometric phenotyping of developing zebrafish.

Dis Model Mech. 2023-6-1

[7]
The emerging significance of splicing in vertebrate development.

Development. 2022-10-1

[8]
The Core Splicing Factors EFTUD2, SNRPB and TXNL4A Are Essential for Neural Crest and Craniofacial Development.

J Dev Biol. 2022-7-8

[9]
A de novo start-loss in associated with mandibulofacial dysostosis with microcephaly: case report.

Cold Spring Harb Mol Case Stud. 2022-6

[10]
Disease Modeling of Rare Neurological Disorders in Zebrafish.

Int J Mol Sci. 2022-4-1

本文引用的文献

[1]
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Eur J Med Genet. 2014-8

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