首页> 美国卫生研究院文献>Molecular and Cellular Biology >A Mutation in the Flavin Adenine Dinucleotide-Dependent Oxidoreductase FOXRED1 Results in Cell-Type-Specific Assembly Defects in Oxidative Phosphorylation Complexes I and II
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A Mutation in the Flavin Adenine Dinucleotide-Dependent Oxidoreductase FOXRED1 Results in Cell-Type-Specific Assembly Defects in Oxidative Phosphorylation Complexes I and II

机译:黄素腺嘌呤二核苷酸依赖性氧化还原酶FOXRED1中的突变导致氧化磷酸化复合体I和II中的细胞类型特定的组装缺陷。

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摘要

Complex I (NADH ubiquinone oxidoreductase) is a large multisubunit enzyme that catalyzes the first step in oxidative phosphorylation (OXPHOS). In mammals, complex I biogenesis occurs in a stepwise manner, a process that requires the participation of several nucleus-encoded accessory proteins. The FAD-dependent oxidoreductase-containing domain 1 (FOXRED1) protein is a complex I assembly factor; however, its specific role in the assembly pathway remains poorly understood. We identified a homozygous missense mutation, c.1308 G→A (p.V421M) in FOXRED1 in a patient who presented with epilepsy and severe psychomotor retardation. A patient myoblast line showed a severe reduction in complex I, associated with the accumulation of subassemblies centered around ∼340 kDa, and a milder decrease in complex II, all of which were rescued by retroviral expression of wild-type FOXRED1. Two additional assembly factors, AIFM1 and ACAD9, coimmunoprecipitated with FOXRED1, and all were associated with a 370-kDa complex I subassembly that, together with a 315-kDa subassembly, forms the 550-kDa subcomplex. Loss of FOXRED1 function prevents efficient formation of this midassembly subcomplex. Although we could not identify subassemblies of complex II, our results establish that FOXRED1 function is both broader than expected, involving the assembly of two flavoprotein-containing OXPHOS complexes, and cell type specific.
机译:复合物I(NADH泛醌氧化还原酶)是一种大型的多亚基酶,可催化氧化磷酸化(OXPHOS)的第一步。在哺乳动物中,复杂的I生物发生以逐步的方式发生,该过程需要几个核编码的辅助蛋白的参与。 FAD依赖的含氧化还原酶的结构域1(FOXRED1)蛋白是一个复杂的I装配因子;然而,其在组装途径中的具体作用仍知之甚少。我们在一名患有癫痫和严重精神运动发育迟缓的患者中发现了一个纯合的错义突变,FOXRED1中的c.1308 G→A(p.V421M)。患者成肌细胞系显示复合物I的严重减少,与以〜340 kDa为中心的子组件的积累有关,复合物II的轻度下降,所有这些都通过野生型FOXRED1的逆转录病毒表达得以挽救。与FOXRED1共免疫沉淀的另外两个装配因子AIFM1和ACAD9,都与一个370 kDa的复合体I子组件相关,后者与315 kDa的子组件一起形成了550 kDa的子复合体。 FOXRED1功能的丢失会阻止此中间组件子复合体的有效形成。尽管我们无法识别复合物II的子装配体,但我们的研究结果表明FOXRED1功能不仅比预期的要广,涉及两个含黄素蛋白的OXPHOS复合物的装配,而且还具有细胞类型特异性。

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