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[联合氧化磷酸化缺陷28基因突变的鉴定与功能分析]

[Identification and functional analysis of combined oxidative phosphorylation deficiency 28 gene mutation].

作者信息

Shi P, Cheng Y P, Li Z Y, Wang S P, Shi Y Z, Ji Y M, Fang L, Zhao J J, Gao L, Xu C

机构信息

Shandong University, Jinan 250021, China Department of Endocrinology, Shandong Provincial Hospital, Shandong Key Laboratory of Endocrinology and Lipid Metabolism, Jinan 250021, China.

Department of Endocrinology, Shandong Provincial Hospital, Shandong Key Laboratory of Endocrinology and Lipid Metabolism, Jinan 250021, China.

出版信息

Zhonghua Nei Ke Za Zhi. 2022 Dec 1;61(12):1324-1329. doi: 10.3760/cma.j.cn112138-20211208-00875.

Abstract

To report a case of combined oxidative phosphorylation deficiency 28 (COXPD28) in China, identified the pathogenic mutation and explored the pathogenic mechanism preliminarily. The clinical characteristics of a patient with COXPD28 were retrospectively analyzed and the pathogenic mutations were identified by mitochondrial gene sequencing and whole exome sequencing. The wild-type and mutant plasmids of pathogenic genes were constructed, and effect of mutation on protein expression by quantitative real-time PCR (qPCR) and Western blot were evaluated. Statistical methods mainly used one-way ANOVA and LSD test. A 21 year old female patient presented with lactic acid poisoning due to repeated chest distress and wheezing since childhood. The sequencing of the whole exon group gene found that solute carrier family 25 member 26 (SLC25A26) gene had a compound heterozygous mutation (c.34G>C, p.A12P; c.197C>A, p.A66E), which was the first report in China. function test showed that the expression levels of SLC25A26 mRNA and S-adenosylmethionine carrier (SAMC) protein in cells transfected with SLC25A26 mutant plasmid were significantly lower than those transfected with wild type plasmid. The p.A66E mutant plasmid reduced the expression level of SLC25A26 mRNA and SAMC protein to 6% and 26% of wild type plasmids respectively (both <0.001), while p.A12P mutant plasmid decreased to 62% and 82% of wild type plasmids respectively (<0.001, =0.044). When the double mutant (p.A66E+p.A12P) plasmids were co-transfected, the expression levels of SLC25A26 mRNA and SAMC protein decreased to 47% and 57% of the wild type plasmids, respectively (<0.001, =0.001). The pathogenic mutation gene of this patient with COXPD28 is SLC25A26 gene mutation (p.A66E, p.A12P), which causes the decrease of SLC25A26 expression level, mitochondrial oxidative phosphorylation dysfunction, and induces COXPD28.

摘要

报道1例中国的联合氧化磷酸化缺陷28(COXPD28)病例,鉴定其致病突变并初步探究致病机制。回顾性分析1例COXPD28患者的临床特征,通过线粒体基因测序和全外显子组测序鉴定致病突变。构建致病基因的野生型和突变体质粒,通过定量实时聚合酶链反应(qPCR)和蛋白质免疫印迹法评估突变对蛋白质表达的影响。统计方法主要采用单因素方差分析和LSD检验。1例21岁女性患者自童年起反复出现胸闷、喘息,导致乳酸中毒。全外显子组基因测序发现溶质载体家族25成员26(SLC25A26)基因存在复合杂合突变(c.34G>C,p.A12P;c.197C>A,p.A66E),此为中国首例报道。功能试验显示,转染SLC25A26突变体质粒的细胞中,SLC25A26 mRNA和S-腺苷甲硫氨酸载体(SAMC)蛋白的表达水平显著低于转染野生型质粒的细胞。p.A66E突变体质粒使SLC25A26 mRNA和SAMC蛋白的表达水平分别降至野生型质粒的6%和26%(均<0.001),而p.A12P突变体质粒分别降至野生型质粒的62%和82%(<0.001,=0.044)。当共转染双突变(p.A66E + p.A12P)质粒时,SLC25A26 mRNA和SAMC蛋白的表达水平分别降至野生型质粒的47%和57%(<0.001,=0.001)。该COXPD28患者的致病突变基因为SLC25A26基因突变(p.A66E,p.A12P),导致SLC25A26表达水平降低,线粒体氧化磷酸化功能障碍,进而引发COXPD28。

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