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A recessive homozygous p.Asp92Gly SDHD mutation causes prenatal cardiomyopathy and a severe mitochondrial complex II deficiency

机译:隐性纯合p.Asp92Gly SDHD突变导致产前心肌病和严重的线粒体复合体II缺乏

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Succinate dehydrogenase (SDH) is a crucial metabolic enzyme complex that is involved in ATP production, playing roles in both the tricarboxylic cycle and the mitochondrial respiratory chain (complex II). Isolated complex II deficiency is one of the rarest oxidative phosphorylation disorders with mutations described in three structural subunits and one of the assembly factors; just one case is attributed to recessively inherited SDHD mutations. We report the pathological, biochemical, histochemical and molecular genetic investigations of a male neonate who had left ventricular hypertrophy detected on antenatal scan and died on day one of life. Subsequent postmortem examination confirmed hypertrophic cardiomyopathy with left ventricular non-compaction. Biochemical analysis of his skeletal muscle biopsy revealed evidence of a severe isolated complex II deficiency and candidate gene sequencing revealed a novel homozygous c.275A > G, p.(Asp92Gly) SDHD mutation which was shown to be recessively inherited through segregation studies. The affected amino acid has been reported as a Dutch founder mutation p.(Asp92Tyr) in families with hereditary head and neck paraganglioma. By introducing both mutations into Saccharomyces cerevisiae, we were able to confirm that the p.(Asp92Gly) mutation causes a more severe oxidative growth phenotype than the p.(Asp92Tyr) mutant, and provides functional evidence to support the pathogenicity of the patient's SDHD mutation. This is only the second case of mitochondrial complex II deficiency due to inherited SDHD mutations and highlights the importance of sequencing all SDH genes in patients with biochemical and histochemical evidence of isolated mitochondrial complex II deficiency.
机译:琥珀酸脱氢酶(SDH)是一种重要的代谢酶复合物,参与ATP的生产,在三羧酸循环和线粒体呼吸链(复合物II)中均发挥作用。孤立的复合物II缺乏症是最罕见的氧化磷酸化疾病之一,具有三个结构亚基和一个装配因子中所述的突变。仅一种情况归因于隐性遗传的SDHD突变。我们报告了一名男性新生儿的病理,生物化学,组织化学和分子遗传学调查,该男性在产前扫描中发现左心室肥大并在生命的第一天死亡。随后的验尸检查证实肥厚型心肌病伴左心室不紧密。他的骨骼肌活检的生化分析表明存在严重的孤立的复合物II缺乏症的证据,候选基因测序表明存在新的纯合c.275A> G,p。(Asp92Gly)SDHD突变,该突变通过隔离研究隐性遗传。据报道,在患有遗传性头部和颈部副神经节瘤的家庭中,受影响的氨基酸是荷兰创始人突变p。(Asp92Tyr)。通过将两种突变引入酿酒酵母中,我们能够证实p。(Asp92Gly)突变引起的氧化生长表型比p。(Asp92Tyr)突变更为严重,并提供了功能证据来支持患者SDHD突变的致病性。这是由于遗传的SDHD突变引起的线粒体复合物II缺乏的第二例,并且突出了对具有孤立的线粒体复合物II缺乏的生化和组织化学证据的患者进行所有SDH基因测序的重要性。

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