Gey Uta, Czupalla Cornelia, Hoflack Bernard, Krause Udo, Rödel Gerhard
Institute of Genetics, Technische Universität Dresden, Dresden, Germany.
Biotechnological Center, Technische Universität Dresden, Dresden, Germany.
PLoS One. 2014 Aug 12;9(8):e103956. doi: 10.1371/journal.pone.0103956. eCollection 2014.
The Saccharomyces cerevisiae kinase Sat4p has been originally identified as a protein involved in salt tolerance and stabilization of plasma membrane transporters, implicating a cytoplasmic localization. Our study revealed an additional mitochondrial (mt) localization, suggesting a dual function for Sat4p. While no mt related phenotype was observed in the absence of Sat4p, its overexpression resulted in significant changes of a specific mitochondrial subproteome. As shown by a comparative two dimensional difference gel electrophoresis (2D-DIGE) approach combined with mass spectrometry, particularly two groups of proteins were affected: the iron-sulfur containing aconitase-type proteins (Aco1p, Lys4p) and the lipoamide-containing subproteome (Lat1p, Kgd2p and Gcv3p). The lipoylation sites of all three proteins could be assigned by nanoLC-MS/MS to Lys75 (Lat1p), Lys114 (Kgd2p) and Lys102 (Gcv3p), respectively. Sat4p overexpression resulted in accumulation of the delipoylated protein variants and in reduced levels of aconitase-type proteins, accompanied by a decrease in the activities of the respective enzyme complexes. We propose a regulatory role of Sat4p in the late steps of the maturation of a specific subset of mitochondrial iron-sulfur cluster proteins, including Aco1p and lipoate synthase Lip5p. Impairment of the latter enzyme may account for the observed lipoylation defects.
酿酒酵母激酶Sat4p最初被鉴定为一种参与盐耐受性和质膜转运体稳定的蛋白质,这表明它定位于细胞质。我们的研究揭示了它的另一种线粒体定位,这表明Sat4p具有双重功能。在没有Sat4p的情况下未观察到与线粒体相关的表型,但其过表达导致特定线粒体亚蛋白质组发生显著变化。通过二维差异凝胶电泳(2D-DIGE)方法结合质谱分析表明,特别是两组蛋白质受到影响:含铁硫的乌头酸酶型蛋白质(Aco1p、Lys4p)和含硫辛酰胺的亚蛋白质组(Lat1p、Kgd2p和Gcv3p)。通过纳米液相色谱-串联质谱(nanoLC-MS/MS)可以分别将这三种蛋白质的硫辛酰化位点定位到Lys75(Lat1p)、Lys114(Kgd2p)和Lys102(Gcv3p)。Sat4p过表达导致去硫辛酰化蛋白质变体的积累以及乌头酸酶型蛋白质水平降低,同时伴随着各自酶复合物活性的下降。我们提出Sat4p在特定线粒体铁硫簇蛋白亚群(包括Aco1p和硫辛酸合酶Lip5p)成熟的后期步骤中起调节作用。后一种酶的损伤可能是观察到的硫辛酰化缺陷的原因。