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一种新的包含 FA2H 基因外显子 1 的纯合缺失导致痉挛性截瘫-35:患者的遗传和脂质组学分析。

A Novel Homozygous Deletion Including Exon 1 of FA2H Gene Causes Spastic Paraplegia-35: Genetic and Lipidomics Analysis of the Patients.

机构信息

Shaanxi Institute for Pediatric Diseases, Xi'an Children's Hospital, Xi'an, China.

Department of Rehabilitation, Xi'an Children's Hospital, Xi'an, China.

出版信息

Pediatr Neurol. 2024 Mar;152:200-208. doi: 10.1016/j.pediatrneurol.2023.12.031. Epub 2024 Jan 5.

DOI:10.1016/j.pediatrneurol.2023.12.031
PMID:38306901
Abstract

BACKGROUND

Fatty acid 2-hydroxylase (FA2H) is encoded by the FA2H gene, with mutations therein leading to the neurodegenerative condition, spastic paraplegia-35 (SPG35). We aim to elucidate the genetic underpinnings of a nonconsanguineous Chinese family diagnosed with SPG35 by examining the clinical manifestations, scrutinizing genetic variants, and establishing the role of FA2H mutation in lipid metabolism.

METHODS

Using next-generation sequencing analysis to identify the pathogenic gene in this pedigree and family cosegregation verification. The use of lipidomics of patient pedigree peripheral blood mononuclear cells further substantiated alterations in lipid metabolism attributable to the FA2H exon 1 deletion.

RESULTS

The proband exhibited gait disturbance from age 5 years; he developed further clinical manifestations such as scissor gait and dystonia. His younger sister also presented with a spastic gait from the same age. We identified a homozygous deletion in the region of FA2H exon 1, spanning from chr16:74807867 to chr16: 74810391 in the patients. Lipidomic analysis revealed significant differences in 102 metabolites compared with healthy controls, with 62 metabolites increased and 40 metabolites decreased. We specifically zeroed in on 19 different sphingolipid metabolites, which comprised ceramides, ganglioside, etc., with only three of these sphingolipids previously reported.

CONCLUSIONS

This is the first study of lipid metabolism in the blood of patients with SPG35. The results broaden our understanding of the SPG35 gene spectrum, offering insights for future molecular mechanism research and laying groundwork for determining metabolic markers.

摘要

背景

脂肪酸 2-羟化酶(FA2H)由 FA2H 基因编码,其突变导致神经退行性疾病痉挛性截瘫 35 型(SPG35)。我们旨在通过检查临床表现、仔细研究遗传变异,并确定 FA2H 突变在脂质代谢中的作用,阐明一个被诊断为 SPG35 的非近亲中国家系的遗传基础。

方法

使用下一代测序分析鉴定该家系中的致病基因并进行家系共分离验证。通过对患者家系外周血单个核细胞的脂质组学进一步证实 FA2H 外显子 1 缺失导致脂质代谢的改变。

结果

先证者 5 岁时出现步态障碍;他进一步出现剪刀步态和肌张力障碍等临床症状。他的妹妹也在同一年龄出现痉挛性步态。我们在患者中发现 FA2H 外显子 1 区域的纯合缺失,跨越 chr16:74807867 到 chr16:74810391。脂质组学分析显示与健康对照组相比,有 102 种代谢物存在显著差异,其中 62 种代谢物增加,40 种代谢物减少。我们特别关注了 19 种不同的神经酰胺等鞘脂代谢物,其中只有三种之前有报道过。

结论

这是首例 SPG35 患者血液中脂质代谢的研究。结果拓宽了我们对 SPG35 基因谱的认识,为未来的分子机制研究提供了思路,并为确定代谢标志物奠定了基础。

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