Laboratory of Cellular Biochemistry and Molecular Biology, CRIBENS, Università Cattolica del Sacro Cuore, Milan, Italy.
Psychology Department, Università Cattolica del Sacro Cuore, Milan, Italy.
Crit Rev Biochem Mol Biol. 2021 Aug;56(4):360-372. doi: 10.1080/10409238.2021.1908952. Epub 2021 Apr 7.
Electron transfer flavoprotein dehydrogenase, also called ETF-ubiquinone oxidoreductase (ETF-QO), is a protein localized in the inner membrane of mitochondria, playing a central role in the electron-transfer system. Indeed, ETF-QO mediates electron transport from flavoprotein dehydrogenases to the ubiquinone pool. ETF-QO mutations are often associated with riboflavin-responsive multiple acyl-CoA dehydrogenase deficiency (RR-MADD, OMIM#231680), a multisystem genetic disease characterized by various clinical manifestations with different degrees of severity. In this review, we outline the clinical features correlated with ETF-QO deficiency and the benefits obtained from different treatments, such as riboflavin, L-carnitine and/or coenzyme Q10 supplementation, and a diet poor in fat and protein. Moreover, we provide a detailed summary of molecular and bioinformatic investigations, describing the mutations identified in gene and highlighting their predicted impact on enzymatic structure and activity. In addition, we report biochemical and functional analysis, performed in HEK293 cells and patient fibroblasts and muscle cells, to show the relationship between the nature of mutations, the variable impairment of enzyme function, and the different degrees of RR-MADD severity. Finally, we describe in detail 5 RR-MADD patients carrying different mutations and presenting variable degrees of clinical symptom severity.
电子传递黄素蛋白脱氢酶,也称为 ETF-泛醌氧化还原酶(ETF-QO),是一种定位于线粒体内膜的蛋白质,在电子传递系统中发挥核心作用。实际上,ETF-QO 介导来自黄素蛋白脱氢酶的电子向泛醌库的传递。ETF-QO 突变常与核黄素反应性多发性酰基辅酶 A 脱氢酶缺乏症(RR-MADD,OMIM#231680)相关,这是一种多系统遗传疾病,具有不同严重程度的各种临床表现。在这篇综述中,我们概述了与 ETF-QO 缺乏相关的临床特征以及不同治疗方法(如核黄素、左旋肉碱和/或辅酶 Q10 补充剂以及低脂肪和蛋白质的饮食)所带来的益处。此外,我们提供了分子和生物信息学研究的详细总结,描述了在 基因中发现的突变,并强调了它们对酶结构和活性的预测影响。此外,我们报告了在 HEK293 细胞和患者成纤维细胞和肌肉细胞中进行的生化和功能分析,以显示 突变的性质、酶功能的不同程度损害以及 RR-MADD 严重程度的不同之间的关系。最后,我们详细描述了 5 名携带不同 突变并表现出不同程度临床症状严重程度的 RR-MADD 患者。