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铁硫簇生物发生中专门化的线粒体 Hsp70 系统的生化趋同

Biochemical Convergence of Mitochondrial Hsp70 System Specialized in Iron-Sulfur Cluster Biogenesis.

机构信息

Intercollegiate Faculty of Biotechnology, University of Gdansk and Medical University of Gdansk, Abrahama 58, 80-307 Gdansk, Poland.

Department of Biochemistry, University of Wisconsin, 433 Babcock Drive, Madison, WI 53706, USA.

出版信息

Int J Mol Sci. 2020 May 8;21(9):3326. doi: 10.3390/ijms21093326.

Abstract

Mitochondria play a central role in the biogenesis of iron-sulfur cluster(s) (FeS), protein cofactors needed for many cellular activities. After assembly on scaffold protein Isu, the cluster is transferred onto a recipient apo-protein. Transfer requires Isu interaction with an Hsp70 chaperone system that includes a dedicated J-domain protein co-chaperone (Hsc20). Hsc20 stimulates Hsp70's ATPase activity, thus stabilizing the critical Isu-Hsp70 interaction. While most eukaryotes utilize a multifunctional mitochondrial (mt)Hsp70, yeast employ another Hsp70 (Ssq1), a product of mtHsp70 gene duplication. Ssq1 became specialized in FeS biogenesis, recapitulating the process in bacteria, where specialized Hsp70 HscA cooperates exclusively with an ortholog of Hsc20. While it is well established that Ssq1 and HscA converged functionally for FeS transfer, whether these two Hsp70s possess similar biochemical properties was not known. Here, we show that overall HscA and Ssq1 biochemical properties are very similar, despite subtle differences being apparent - the ATPase activity of HscA is stimulated to a somewhat higher levels by Isu and Hsc20, while Ssq1 has a higher affinity for Isu and for Hsc20. HscA/Ssq1 are a unique example of biochemical convergence of distantly related Hsp70s, with practical implications, crossover experimental results can be combined, facilitating understanding of the FeS transfer process.

摘要

线粒体在铁硫簇(FeS)的生物发生中起着核心作用,FeS 是许多细胞活动所需的蛋白质辅因子。在支架蛋白 Isu 上组装后,簇被转移到受体脱辅基蛋白上。转移需要 Isu 与 Hsp70 伴侣系统相互作用,该系统包括专用的 J 结构域蛋白共伴侣(Hsc20)。Hsc20 刺激 Hsp70 的 ATP 酶活性,从而稳定关键的 Isu-Hsp70 相互作用。虽然大多数真核生物利用多功能线粒体(mt)Hsp70,但酵母使用另一种 Hsp70(Ssq1),它是 mtHsp70 基因复制的产物。Ssq1 在 FeS 生物发生中变得专业化,再现了细菌中的过程,其中专门的 Hsp70 HscA 与 Hsc20 的同源物专门合作。虽然已经确立 Ssq1 和 HscA 在 FeS 转移方面具有功能上的趋同,但这两种 Hsp70 是否具有相似的生化特性尚不清楚。在这里,我们表明,尽管存在细微差异,但 HscA 和 Ssq1 的总体生化特性非常相似 - HscA 的 ATP 酶活性受到 Isu 和 Hsc20 的刺激更高水平,而 Ssq1 对 Isu 和 Hsc20 的亲和力更高。HscA/Ssq1 是生化趋同的一个独特例子,涉及到远缘 Hsp70,具有实际意义,交叉实验结果可以结合,有助于理解 FeS 转移过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c909/7247549/03699c187a39/ijms-21-03326-g001.jpg

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