Dutkiewicz Rafal, Marszalek Jaroslaw, Schilke Brenda, Craig Elizabeth A, Lill Roland, Mühlenhoff Ulrich
Department of Molecular and Cellular Biology, Faculty of Biotechnology, University of Gdansk, 24 Kladki, 80-822 Gdansk, Poland.
J Biol Chem. 2006 Mar 24;281(12):7801-8. doi: 10.1074/jbc.M513301200. Epub 2006 Jan 23.
The specialized yeast mitochondrial chaperone system, composed of the Hsp70 Ssq1p, its co-chaperone J-protein Jac1p, and the nucleotide release factor Mge1p, perform a critical function in the biogenesis of iron-sulfur (Fe/S) proteins. Using a spectroscopic assay, we have analyzed the potential role of the chaperones in Fe/S cluster assembly on the scaffold protein Isu1p in vitro in the presence of the cysteine desulfurase Nfs1p. In the absence of chaperones, the kinetics of Fe/S cluster formation on Isu1p were compatible with a chemical reconstitution pathway with Nfs1p functioning as a sulfide donor. Addition of Ssq1p improved the rates of Fe/S cluster assembly 3-fold. However, this stimulatory effect of Ssq1p required neither ATP nor Jac1p and could be fully attributed to the activation of the Nfs1p desulfurase activity by Ssq1p. Furthermore, chaperone-stimulated Fe/S cluster assembly did not involve the specific interaction between Isu1p and Ssq1p, since the effect was observed with Isu1p mutant proteins defective in this interaction, suggesting that nonspecific binding of Ssq1p to Nfs1p helped to prevent its unfolding. Consistent with this idea, these Isu1p mutants were capable of binding an Fe/S cluster in vivo but failed to restore the growth and Fe/S cluster assembly defects of a Isu1p/Isu2p-deficient yeast strain. Taken together, these data suggest that Ssq1p/Jac1p/Mge1p are not important for Fe/S cluster synthesis on Isu1p. Hence, consistent with previous in vivo data, these chaperones likely function in steps subsequent to the de novo synthesis of the Fe/S cluster on Isu1p.
由热休克蛋白70(Hsp70)Ssq1p、其共伴侣J蛋白Jac1p和核苷酸释放因子Mge1p组成的特殊酵母线粒体伴侣系统,在铁硫(Fe/S)蛋白的生物合成中发挥关键作用。我们使用光谱分析方法,在存在半胱氨酸脱硫酶Nfs1p的情况下,体外分析了这些伴侣蛋白在支架蛋白Isu1p上Fe/S簇组装中的潜在作用。在没有伴侣蛋白的情况下,Isu1p上Fe/S簇形成的动力学与以Nfs1p作为硫化物供体的化学重组途径一致。添加Ssq1p可使Fe/S簇组装速率提高3倍。然而,Ssq1p的这种刺激作用既不需要ATP也不需要Jac1p,并且可以完全归因于Ssq1p对Nfs1p脱硫酶活性的激活。此外,伴侣蛋白刺激的Fe/S簇组装不涉及Isu1p和Ssq1p之间的特异性相互作用,因为在这种相互作用有缺陷的Isu1p突变蛋白中也观察到了这种效应,这表明Ssq1p与Nfs1p的非特异性结合有助于防止其解折叠。与此观点一致的是,这些Isu1p突变体能够在体内结合Fe/S簇,但未能恢复Isu1p/Isu2p缺陷酵母菌株的生长和Fe/S簇组装缺陷。综上所述,这些数据表明Ssq1p/Jac1p/Mge1p对Isu1p上的Fe/S簇合成并不重要。因此,与先前的体内数据一致,这些伴侣蛋白可能在Isu1p上Fe/S簇从头合成之后的步骤中发挥作用。