Ciesielski Szymon J, Schilke Brenda, Marszalek Jaroslaw, Craig Elizabeth A
Department of Biochemistry, University of Wisconsin-Madison, Madison, WI 53706.
Department of Biochemistry, University of Wisconsin-Madison, Madison, WI 53706 Intercollegiate Faculty of Biotechnology, University of Gdansk and Medical University of Gdansk, Gdansk 80307, Poland.
Mol Biol Cell. 2016 Apr 1;27(7):1060-8. doi: 10.1091/mbc.E15-12-0815. Epub 2016 Feb 3.
Iron-sulfur (Fe-S) clusters, essential protein cofactors, are assembled on the mitochondrial scaffold protein Isu and then transferred to recipient proteins via a multistep process in which Isu interacts sequentially with multiple protein factors. This pathway is in part regulated posttranslationally by modulation of the degradation of Isu, whose abundance increases >10-fold upon perturbation of the biogenesis process. We tested a model in which direct interaction with protein partners protects Isu from degradation by the mitochondrial Lon-type protease. Using purified components, we demonstrated that Isu is indeed a substrate of the Lon-type protease and that it is protected from degradation by Nfs1, the sulfur donor for Fe-S cluster assembly, as well as by Jac1, the J-protein Hsp70 cochaperone that functions in cluster transfer from Isu. Nfs1 and Jac1 variants known to be defective in interaction with Isu were also defective in protecting Isu from degradation. Furthermore, overproduction of Jac1 protected Isu from degradation in vivo, as did Nfs1. Taken together, our results lead to a model of dynamic interplay between a protease and protein factors throughout the Fe-S cluster assembly and transfer process, leading to up-regulation of Isu levels under conditions when Fe-S cluster biogenesis does not meet cellular demands.
铁硫(Fe-S)簇是必需的蛋白质辅因子,在线粒体支架蛋白Isu上组装,然后通过多步过程转移到受体蛋白,在此过程中Isu依次与多种蛋白质因子相互作用。该途径部分通过调节Isu的降解进行翻译后调控,在生物合成过程受到干扰时,Isu的丰度增加超过10倍。我们测试了一个模型,其中与蛋白质伴侣的直接相互作用可保护Isu不被线粒体Lon型蛋白酶降解。使用纯化的组分,我们证明Isu确实是Lon型蛋白酶的底物,并且它受到Fe-S簇组装的硫供体Nfs1以及在从Isu转移簇中起作用的J蛋白Hsp70伴侣蛋白Jac1的保护而不被降解。已知与Isu相互作用有缺陷的Nfs1和Jac1变体在保护Isu不被降解方面也有缺陷。此外,Jac1的过量表达在体内保护Isu不被降解,Nfs1也是如此。综上所述,我们的结果得出了一个在整个Fe-S簇组装和转移过程中蛋白酶与蛋白质因子之间动态相互作用的模型,导致在Fe-S簇生物合成不能满足细胞需求的条件下Isu水平上调。