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J 蛋白共伴侣 Jac1 与 Fe-S 支架 Isu 的相互作用在体内是不可或缺的,并且在进化中是保守的。

Interaction of J-protein co-chaperone Jac1 with Fe-S scaffold Isu is indispensable in vivo and conserved in evolution.

机构信息

Department of Molecular and Cellular Biology, Faculty of Biotechnology, University of Gdansk, 24 Kladki, Gdansk 80822, Poland.

出版信息

J Mol Biol. 2012 Mar 16;417(1-2):1-12. doi: 10.1016/j.jmb.2012.01.022. Epub 2012 Jan 27.

Abstract

The ubiquitous mitochondrial J-protein Jac1, called HscB in Escherichia coli, and its partner Hsp70 play a critical role in the transfer of Fe-S clusters from the scaffold protein Isu to recipient proteins. Biochemical results from eukaryotic and prokaryotic systems indicate that formation of the Jac1-Isu complex is important for both targeting of the Isu for Hsp70 binding and stimulation of Hsp70's ATPase activity. However, in apparent contradiction, we previously reported that an 8-fold decrease in Jac1's affinity for Isu1 is well tolerated in vivo, raising the question as to whether the Jac1:Isu interaction actually plays an important biological role. Here, we report the determination of the structure of Jac1 from Saccharomyces cerevisiae. Taking advantage of this information and recently published data from the homologous bacterial system, we determined that a total of eight surface-exposed residues play a role in Isu binding, as assessed by a set of biochemical assays. A variant having alanines substituted for these eight residues was unable to support growth of a jac1-Δ strain. However, replacement of three residues caused partial loss of function, resulting in a significant decrease in the Jac1:Isu1 interaction, a slow growth phenotype, and a reduction in the activity of Fe-S cluster-containing enzymes. Thus, we conclude that the Jac1:Isu1 interaction plays an indispensable role in the essential process of mitochondrial Fe-S cluster biogenesis.

摘要

普遍存在的线粒体 J 蛋白 Jac1,在大肠杆菌中称为 HscB,及其伴侣 Hsp70 在将 Fe-S 簇从支架蛋白 Isu 转移到受体蛋白中起着关键作用。来自真核和原核系统的生化结果表明,Jac1-Isu 复合物的形成对于 Isu 与 Hsp70 结合的靶向和刺激 Hsp70 的 ATP 酶活性都很重要。然而,令人费解的是,我们之前的研究表明,Jac1 与 Isu1 的亲和力降低 8 倍在体内是可以耐受的,这就提出了一个问题,即 Jac1:Isu 相互作用是否真的具有重要的生物学作用。在这里,我们报告了来自酿酒酵母的 Jac1 结构的测定。利用这一信息和最近发表的同源细菌系统的数据,我们通过一系列生化测定确定了总共 8 个表面暴露的残基在 Isu 结合中起作用。用这些残基的丙氨酸取代变体无法支持 jac1-Δ 菌株的生长。然而,替换三个残基导致部分功能丧失,导致 Jac1:Isu1 相互作用显著降低,生长缓慢表型,并降低含 Fe-S 簇酶的活性。因此,我们得出结论,Jac1:Isu1 相互作用在至关重要的线粒体 Fe-S 簇生物发生过程中起着不可或缺的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7be4/3288383/601e35c31707/nihms353752f1.jpg

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