Lill R, Diekert K, Kaut A, Lange H, Pelzer W, Prohl C, Kispal G
Institut für Zytobiologie und Zytopathologie der Philipps-Universität Marburg, Germany.
Biol Chem. 1999 Oct;380(10):1157-66. doi: 10.1515/BC.1999.147.
Iron-sulfur (Fe/S) proteins play an important role in electron transfer processes and in various enzymatic reactions. In eukaryotic cells, known Fe/S proteins are localised in mitochondria, the cytosol and the nucleus. The biogenesis of these proteins has only recently become the focus of investigations. Mitochondria are the major site of Fe/S cluster biosynthesis in the cell. The organelles contain an Fe/S cluster biosynthesis apparatus that resembles that of prokaryotic cells. This apparatus consists of some ten proteins including a cysteine desulfurase producing elemental sulfur for biogenesis, a ferredoxin involved in reduction, and two chaperones. The mitochondrial Fe/S cluster synthesis apparatus not only assembles mitochondrial Fe/S proteins, but also initiates formation of extra-mitochondrial Fe/S proteins. This involves the export of sulfur and possibly iron from mitochondria to the cytosol, a reaction performed by the ABC transporter Atm1p of the mitochondrial inner membrane. A possible substrate of Atm1p is an Fe/S cluster that may be stabilised for transport. Constituents of the cytosol involved in the incorporation of the Fe/S cluster into apoproteins have not been described yet. Many of the mitochondrial proteins involved in Fe/S cluster formation are essential, illustrating the central importance of Fe/S proteins for life. Defects in Fe/S protein biogenesis are associated with the abnormal accumulation of iron within mitochondria and are the cause of an iron storage disease.
铁硫(Fe/S)蛋白在电子传递过程和各种酶促反应中发挥着重要作用。在真核细胞中,已知的Fe/S蛋白定位于线粒体、细胞质和细胞核中。这些蛋白的生物合成直到最近才成为研究的焦点。线粒体是细胞中铁硫簇生物合成的主要场所。这些细胞器含有一种类似于原核细胞的铁硫簇生物合成装置。该装置由大约十种蛋白质组成,包括一种为生物合成产生元素硫的半胱氨酸脱硫酶、一种参与还原反应的铁氧还蛋白以及两种分子伴侣。线粒体铁硫簇合成装置不仅组装线粒体Fe/S蛋白,还启动线粒体外Fe/S蛋白的形成。这涉及从线粒体向细胞质输出硫以及可能还有铁,这一反应由线粒体内膜的ABC转运蛋白Atm1p执行。Atm1p的一个可能底物是一种可能为运输而稳定化的铁硫簇。参与将铁硫簇掺入脱辅基蛋白的细胞质成分尚未得到描述。许多参与铁硫簇形成的线粒体蛋白是必不可少的,这说明了Fe/S蛋白对生命的核心重要性。Fe/S蛋白生物合成缺陷与线粒体内铁的异常积累有关,是一种铁储存疾病的病因。