Schaedler Theresia A, Thornton Jeremy D, Kruse Inga, Schwarzländer Markus, Meyer Andreas J, van Veen Hendrik W, Balk Janneke
From the John Innes Centre, Norwich Research Park, Norwich NR4 7UH, United Kingdom, the Department of Plant Sciences, University of Cambridge, Cambridge CB2 3EA, United Kingdom.
From the John Innes Centre, Norwich Research Park, Norwich NR4 7UH, United Kingdom.
J Biol Chem. 2014 Aug 22;289(34):23264-74. doi: 10.1074/jbc.M114.553438. Epub 2014 Jul 8.
An ATP-binding cassette transporter located in the inner mitochondrial membrane is involved in iron-sulfur cluster and molybdenum cofactor assembly in the cytosol, but the transported substrate is unknown. ATM3 (ABCB25) from Arabidopsis thaliana and its functional orthologue Atm1 from Saccharomyces cerevisiae were expressed in Lactococcus lactis and studied in inside-out membrane vesicles and in purified form. Both proteins selectively transported glutathione disulfide (GSSG) but not reduced glutathione in agreement with a 3-fold stimulation of ATPase activity by GSSG. By contrast, Fe(2+) alone or in combination with glutathione did not stimulate ATPase activity. Arabidopsis atm3 mutants were hypersensitive to an inhibitor of glutathione biosynthesis and accumulated GSSG in the mitochondria. The growth phenotype of atm3-1 was strongly enhanced by depletion of the mitochondrion-localized, GSH-dependent persulfide oxygenase ETHE1, suggesting that the physiological substrate of ATM3 contains persulfide in addition to glutathione. Consistent with this idea, a transportomics approach using mass spectrometry showed that glutathione trisulfide (GS-S-SG) was transported by Atm1. We propose that mitochondria export glutathione polysulfide, containing glutathione and persulfide, for iron-sulfur cluster assembly in the cytosol.
位于线粒体内膜的一种ATP结合盒转运蛋白参与胞质中铁硫簇和钼辅因子的组装,但转运的底物尚不清楚。来自拟南芥的ATM3(ABCB25)及其在酿酒酵母中的功能同源物Atm1在乳酸乳球菌中表达,并在内翻膜囊泡和纯化形式下进行研究。两种蛋白都选择性地转运谷胱甘肽二硫化物(GSSG),而不转运还原型谷胱甘肽,这与GSSG对ATP酶活性的3倍刺激作用一致。相比之下,单独的Fe(2+)或与谷胱甘肽结合都不会刺激ATP酶活性。拟南芥atm3突变体对谷胱甘肽生物合成抑制剂高度敏感,并在线粒体中积累GSSG。通过耗尽线粒体定位的、依赖GSH的过硫化物氧化酶ETHE1,atm3-1的生长表型得到了强烈增强,这表明ATM3的生理底物除了谷胱甘肽外还含有过硫化物。与此观点一致,使用质谱的转运组学方法表明,三硫化谷胱甘肽(GS-S-SG)由Atm1转运。我们提出,线粒体输出含有谷胱甘肽和过硫化物的谷胱甘肽多硫化物,用于胞质中铁硫簇的组装。