在一个患有短链烯酰-CoA 水合酶缺乏症和 Mt-DNA 缺失症的近亲家族中对新型 ECHS1 基因突变的分子和硅学研究:对三聚体组装和催化活性的影响。

IF 3.2 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Metabolic brain disease Pub Date : 2024-04-01 Epub Date: 2024-02-16 DOI:10.1007/s11011-024-01343-6
Marwa Maalej, Lamia Sfaihi, Olfa-Alila Fersi, Boudour Khabou, Marwa Ammar, Rahma Felhi, Marwa Kharrat, Jihen Chouchen, Thouraya Kammoun, Abdelaziz Tlili, Faiza Fakhfakh
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引用次数: 0

摘要

短链烯酰-CoA 水合酶缺乏症(ECHS1D)是一种罕见的先天性代谢性疾病,呈常染色体隐性遗传模式。该基因编码一种线粒体酶,参与脂肪酸线粒体β氧化的第二步。该病的主要特征是严重的发育迟缓、倒退、癫痫发作、神经变性、高血乳酸以及与 Leigh 综合征一致的脑磁共振成像模式。在此,我们报告了属于一个近亲家庭的三名线粒体脑肌病患者。全外显子测序发现,在 ECHS1 基因第 5 号外显子的最后一个核苷酸位置存在一个新的同源突变 c.619G > A (p.Gly207Ser)。实验分析表明,与对照组相比,所有患者的 ECHS1 前核糖核酸剪接均正常。此外,野生型和突变型 echs1 蛋白的三维模型揭示了催化位点相互作用、构象变化和分子内相互作用的变化,可能会破坏 echs1 蛋白的三聚体化并影响其功能。此外,血液白细胞中mtDNA拷贝数变异的定量分析显示,所有受试者都存在严重的mtDNA缺失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Molecular and in silico investigation of a novel ECHS1 gene mutation in a consanguine family with short-chain enoyl-CoA hydratase deficiency and Mt-DNA depletion: effect on trimer assembly and catalytic activity.

Molecular and in silico investigation of a novel ECHS1 gene mutation in a consanguine family with short-chain enoyl-CoA hydratase deficiency and Mt-DNA depletion: effect on trimer assembly and catalytic activity.

Short-chain enoyl-CoA hydratase deficiency (ECHS1D) is a rare congenital metabolic disorder that follows an autosomal recessive inheritance pattern. It is caused by mutations in the ECHS1 gene, which encodes a mitochondrial enzyme involved in the second step of mitochondrial β-oxidation of fatty acids. The main characteristics of the disease are severe developmental delay, regression, seizures, neurodegeneration, high blood lactate, and a brain MRI pattern consistent with Leigh syndrome. Here, we report three patients belonging to a consanguineous family who presented with mitochondrial encephalomyopathy. Whole-exome sequencing revealed a new homozygous mutation c.619G > A (p.Gly207Ser) at the last nucleotide position in exon 5 of the ECHS1 gene. Experimental analysis showed that normal ECHS1 pre-mRNA splicing occurred in all patients compared to controls. Furthermore, three-dimensional models of wild-type and mutant echs1 proteins revealed changes in catalytic site interactions, conformational changes, and intramolecular interactions, potentially disrupting echs1 protein trimerization and affecting its function. Additionally, the quantification of mtDNA copy number variation in blood leukocytes showed severe mtDNA depletion in all probands.

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来源期刊
Metabolic brain disease
Metabolic brain disease 医学-内分泌学与代谢
CiteScore
5.90
自引率
5.60%
发文量
248
审稿时长
6-12 weeks
期刊介绍: Metabolic Brain Disease serves as a forum for the publication of outstanding basic and clinical papers on all metabolic brain disease, including both human and animal studies. The journal publishes papers on the fundamental pathogenesis of these disorders and on related experimental and clinical techniques and methodologies. Metabolic Brain Disease is directed to physicians, neuroscientists, internists, psychiatrists, neurologists, pathologists, and others involved in the research and treatment of a broad range of metabolic brain disorders.
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