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突变对 [Fe-S] 簇或脂酰基辅酶 A 生物合成途径在患者成纤维细胞中线粒体蛋白表达谱的影响。

Impact of mutations within the [Fe-S] cluster or the lipoic acid biosynthesis pathways on mitochondrial protein expression profiles in fibroblasts from patients.

机构信息

Biochemistry Department, Hôpital de Bicêtre, Hôpitaux universitaires Paris-Sud, Assistance Publique - Hôpitaux de Paris, 94270 Le Kremlin Bicêtre, France; Institut de Chimie des Substances Naturelles (ICSN), CNRS UPR 2301, Univ. Paris-Sud, Université Paris-Saclay, 91198 Gif-sur-Yvette cedex, France.

Biochemistry Department, Hôpital de Bicêtre, Hôpitaux universitaires Paris-Sud, Assistance Publique - Hôpitaux de Paris, 94270 Le Kremlin Bicêtre, France.

出版信息

Mol Genet Metab. 2017 Nov;122(3):85-94. doi: 10.1016/j.ymgme.2017.08.001. Epub 2017 Aug 3.

Abstract

Lipoic acid (LA) is the cofactor of the E2 subunit of mitochondrial ketoacid dehydrogenases and plays a major role in oxidative decarboxylation. De novo LA biosynthesis is dependent on LIAS activity together with LIPT1 and LIPT2. LIAS is an iron‑sulfur (Fe-S) cluster-containing mitochondrial protein, like mitochondrial aconitase (mt-aco) and some subunits of respiratory chain (RC) complexes I, II and III. All of them harbor at least one [Fe-S] cluster and their activity is dependent on the mitochondrial [Fe-S] cluster (ISC) assembly machinery. Disorders in the ISC machinery affect numerous Fe-S proteins and lead to a heterogeneous group of diseases with a wide variety of clinical symptoms and combined enzymatic defects. Here, we present the biochemical profiles of several key mitochondrial [Fe-S]-containing proteins in fibroblasts from 13 patients carrying mutations in genes encoding proteins involved in either the lipoic acid (LIPT1 and LIPT2) or mitochondrial ISC biogenesis (FDX1L, ISCA2, IBA57, NFU1, BOLA3) pathway. Ten of them are new patients described for the first time. We confirm that the fibroblast is a good cellular model to study these deficiencies, except for patients presenting mutations in FDX1L and a muscular clinical phenotype. We find that oxidative phosphorylation can be affected by LA defects in LIPT1 and LIPT2 patients due to excessive oxidative stress or to another mechanism connecting LA and respiratory chain activity. We confirm that NFU1, BOLA3, ISCA2 and IBA57 operate in the maturation of [4Fe-4S] clusters and not in [2Fe-2S] protein maturation. Our work suggests a functional difference between IBA57 and other proteins involved in maturation of [Fe-S] proteins. IBA57 seems to require BOLA3, NFU1 and ISCA2 for its stability and NFU1 requires BOLA3. Finally, our study establishes different biochemical profiles for patients according to their mutated protein.

摘要

硫辛酸(LA)是线粒体酮酸脱氢酶 E2 亚基的辅因子,在氧化脱羧中起主要作用。从头合成 LA 依赖于 LIAS 活性以及 LIPT1 和 LIPT2。LIAS 是一种含铁-硫(Fe-S)簇的线粒体蛋白,与线粒体 aconitase(mt-aco)和呼吸链(RC)复合物 I、II 和 III 的一些亚基相似。它们都至少含有一个 [Fe-S]簇,其活性依赖于线粒体 [Fe-S]簇(ISC)组装机制。ISC 机制的紊乱会影响许多 Fe-S 蛋白,并导致一组具有广泛临床症状和多种组合酶缺陷的异质性疾病。在这里,我们介绍了携带编码参与硫辛酸(LIPT1 和 LIPT2)或线粒体 ISC 生物发生(FDX1L、ISCA2、IBA57、NFU1、BOLA3)途径的蛋白质的基因突变的 13 名患者的成纤维细胞中的几种关键线粒体 [Fe-S]- 含蛋白的生化特征。其中 10 名是首次描述的新患者。我们证实,除了具有 FDX1L 突变和肌肉临床表型的患者外,成纤维细胞是研究这些缺陷的良好细胞模型。我们发现,由于过度氧化应激或连接 LA 和呼吸链活性的另一种机制,LIPT1 和 LIPT2 患者的氧化磷酸化可能会受到 LA 缺陷的影响。我们证实 NFU1、BOLA3、ISCA2 和 IBA57 参与 [4Fe-4S] 簇的成熟,而不参与 [2Fe-2S] 蛋白的成熟。我们的工作表明 IBA57 与其他参与 [Fe-S] 蛋白成熟的蛋白质之间存在功能差异。IBA57 似乎需要 BOLA3、NFU1 和 ISCA2 来稳定,而 NFU1 需要 BOLA3。最后,我们的研究根据突变蛋白为患者建立了不同的生化特征。

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