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Mechanisms of Mitochondrial Iron-Sulfur Protein Biogenesis.
Annual Review of Biochemistry ( IF 12.1 ) Pub Date : 2020-06-22 , DOI: 10.1146/annurev-biochem-013118-111540
Roland Lill 1, 2 , Sven-A Freibert 1
Affiliation  

Mitochondria are essential in most eukaryotes and are involved in numerous biological functions including ATP production, cofactor biosyntheses, apoptosis, lipid synthesis, and steroid metabolism. Work over the past two decades has uncovered the biogenesis of cellular iron-sulfur (Fe/S) proteins as the essential and minimal function of mitochondria. This process is catalyzed by the bacteria-derived iron-sulfur cluster assembly (ISC) machinery and has been dissected into three major steps: de novo synthesis of a [2Fe-2S] cluster on a scaffold protein; Hsp70 chaperone–mediated trafficking of the cluster and insertion into [2Fe-2S] target apoproteins; and catalytic conversion of the [2Fe-2S] into a [4Fe-4S] cluster and subsequent insertion into recipient apoproteins. ISC components of the first two steps are also required for biogenesis of numerous essential cytosolic and nuclear Fe/S proteins, explaining the essentiality of mitochondria. This review summarizes the molecular mechanisms underlying the ISC protein–mediated maturation of mitochondrial Fe/S proteins and the importance for human disease.

中文翻译:



线粒体铁硫蛋白生物发生机制。



线粒体在大多数真核生物中是必需的,并参与许多生物功能,包括 ATP 产生、辅因子生物合成、细胞凋亡、脂质合成和类固醇代谢。过去二十年的工作揭示了细胞铁硫 (Fe/S) 蛋白的生物发生是线粒体的基本和最低功能。该过程由细菌衍生的铁硫簇组装 (ISC) 机制催化,并分为三个主要步骤:在支架蛋白上从头合成 [2Fe-2S] 簇; Hsp70 分子伴侣介导簇的运输并插入 [2Fe-2S] 目标脱辅基蛋白; [2Fe-2S]催化转化为[4Fe-4S]簇并随后插入受体脱辅基蛋白。前两个步骤的 ISC 成分也是许多必需的胞质和核 Fe/S 蛋白的生物发生所必需的,这解释了线粒体的重要性。这篇综述总结了 ISC 蛋白介导的线粒体 Fe/S 蛋白成熟的分子机制以及对人类疾病的重要性。

更新日期:2020-06-23
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