Mühlenhoff Ulrich, Balk Janneke, Richhardt Nadine, Kaiser Jens T, Sipos Katalin, Kispal Gyula, Lill Roland
Institut für Zytobiologie und Zytopathologie, Philipps-Universität Marburg, Robert-Koch Strasse 6, 35033 Marburg, Germany.
J Biol Chem. 2004 Aug 27;279(35):36906-15. doi: 10.1074/jbc.M406516200. Epub 2004 Jun 25.
Previous studies have indicated that the essential protein Nfs1 performs a crucial role in cellular iron-sulfur (Fe/S) protein maturation. The protein is located predominantly in mitochondria, yet low amounts are present in cytosol and nucleus. Here we examined several aspects concerning the molecular function of yeast Nfs1p as a model protein. First, we demonstrated that purified Nfs1p facilitates the in vitro assembly of Fe/S proteins by using cysteine as its specific substrate. Thus, eukaryotic Nfs1 is a functional orthologue of the bacterial cysteine desulfurase IscS. Second, we showed that only the mitochondrial version but not the extramitochondrial version of Nfs1p is functional in generating cytosolic and nuclear Fe/S proteins. Mutation of the nuclear targeting signal of Nfs1p did not affect the maturation of cytosolic and nuclear Fe/S proteins, despite a severe growth defect under this condition. Nfs1p could not assemble an Fe/S cluster on the Isu scaffold proteins when they were located in the yeast cytosol. The lack of function of these central Fe/S cluster assembly components suggests that the maturation of extramitochondrial Fe/S protein does not involve functional copies of the mitochondrial Fe/S cluster assembly machinery in the yeast cytosol. Third, the extramitochondrial version of Nfs1p was shown to play a direct role in the thiomodification of tRNAs. Finally, we identified a highly conserved N-terminal beta-sheet of Nfs1p as a functionally essential part of the protein. The implication of these findings for the structural stability of Nfs1p and for its targeting mechanism to mitochondria and cytosol/nucleus will be discussed.
先前的研究表明,必需蛋白Nfs1在细胞铁硫(Fe/S)蛋白成熟过程中发挥着关键作用。该蛋白主要定位于线粒体,但在细胞质和细胞核中也有少量存在。在这里,我们以酵母Nfs1p作为模型蛋白,研究了其分子功能的几个方面。首先,我们证明纯化的Nfs1p以半胱氨酸作为其特定底物,促进了Fe/S蛋白的体外组装。因此,真核生物的Nfs1是细菌半胱氨酸脱硫酶IscS的功能同源物。其次,我们发现只有线粒体形式的Nfs1p在生成细胞质和细胞核Fe/S蛋白方面具有功能,而线粒体外形式的Nfs1p则没有功能。尽管在此条件下酵母生长严重缺陷,但Nfs1p核定位信号的突变并不影响细胞质和细胞核Fe/S蛋白的成熟。当位于酵母细胞质中时,Nfs1p无法在Isu支架蛋白上组装Fe/S簇。这些核心Fe/S簇组装组件缺乏功能表明,线粒体外Fe/S蛋白的成熟不涉及酵母细胞质中线粒体Fe/S簇组装机制的功能拷贝。第三,已证明线粒体外形式的Nfs1p在tRNA的硫修饰中起直接作用。最后,我们确定Nfs1p高度保守的N端β-折叠是该蛋白功能上必不可少的部分。将讨论这些发现对Nfs1p结构稳定性及其靶向线粒体和细胞质/细胞核机制的意义。