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意大利一个家族的 SSADH 缺乏症:一个影响琥珀酸半醛底物结合位点的新型 ALDH5A1 基因突变。

SSADH deficiency in an Italian family: a novel ALDH5A1 gene mutation affecting the succinic semialdehyde substrate binding site.

机构信息

Department of Biology, University of Rome Tor Vergata, Via della Ricerca Scientifica, snc, 00133, Rome, Italy.

Newborn Screening Biochemistry and Pharmacology Laboratory, A. Meyer Children's Hospital, Florence, Italy.

出版信息

Metab Brain Dis. 2017 Oct;32(5):1383-1388. doi: 10.1007/s11011-017-0058-5. Epub 2017 Jun 29.

Abstract

SSADH deficiency (SSADHD) is a rare autosomal recessively inherited metabolic disorder. It is associated with mutations of ALDH5A1 gene, coding for the homotetrameric enzyme SSADH. This enzyme is involved in γ-aminobutyric acid (GABA) catabolism, since it oxidizes succinic semialdehyde (SSA) to succinate. Mutations in ALDH5A1 gene result in the abnormal accumulation of γ-hydroxybutyrate (GHB), which is pathognomonic of SSADHD. In the present report, diagnosis of SSADHD in a three-month-old female was achieved by detection of high levels of GHB in urine. Sequence analysis of ALDH5A1 gene showed that the patient was a compound heterozygote for c.1226G > A (p.G409D) and the novel missense mutation, c.1498G > C (p.V500 L). By ALDH5A1 gene expression in transiently transfected HEK293 cells and enzyme activity assays, we demonstrate that the p.V500 L mutation, despite being conservative, produces complete loss of enzyme activity. In silico protein modelling analysis and evaluation of tetramer destabilizing energies suggest that structural impairment and partial occlusion of the access channel to the active site affect enzyme activity. These findings add further knowledge on the missense mutations associated with SSADHD and the molecular mechanisms underlying the loss of the enzyme activity.

摘要

SSADH 缺乏症(SSADHD)是一种罕见的常染色体隐性遗传性代谢紊乱。它与 ALDH5A1 基因突变有关,该基因突变导致 SSADH 同源四聚体酶的编码。该酶参与γ-氨基丁酸(GABA)的分解代谢,因为它将琥珀酸半醛(SSA)氧化为琥珀酸。ALDH5A1 基因突变导致γ-羟基丁酸(GHB)异常积累,这是 SSADHD 的特征性表现。在本报告中,通过检测尿液中 GHB 水平升高,在一名三个月大的女性中诊断出 SSADHD。ALDH5A1 基因突变的序列分析显示,患者为 c.1226G>A(p.G409D)和新的错义突变 c.1498G>C(p.V500L)的复合杂合子。通过瞬时转染 HEK293 细胞的 ALDH5A1 基因表达和酶活性测定,我们证明 p.V500L 突变尽管保守,但会导致完全丧失酶活性。通过蛋白质结构模型分析和对四聚体不稳定能的评估,提示结构损伤和活性部位进入通道的部分阻塞会影响酶活性。这些发现进一步增加了与 SSADHD 相关的错义突变和导致酶活性丧失的分子机制的相关知识。

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