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Characterization of the human HSC20 an unusual DnaJ type III protein involved in iron–sulfur cluster biogenesis

机译:人类HSC20(一种异常的DnaJ III型蛋白)的特征涉及铁硫簇生物发生

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摘要

The importance of mitochondrial iron–sulfur cluster (ISC) biogenesis for human health has been well established, but the roles of some components of this critical pathway still remain uncharacterized in mammals. Among them is human heat shock cognate protein 20 (hHSC20), the putative human homolog of the specialized DnaJ type co-chaperones, which are crucial for bacterial and fungal ISC assembly. Here, we show that the human HSC20 protein can complement for its counterpart in yeast, Jac1p, and interacts with its proposed human partners, hISCU and hHSPA9. hHSC20 is expressed in various human tissues and localizes mainly to the mitochondria in HeLa cells. However, small amounts were also detected extra-mitochondrially. RNA interference-mediated depletion of hHSC20 specifically reduced the activities of both mitochondrial and cytosolic ISC-containing enzymes. The recovery of inactivated ISC enzymes was markedly delayed after an oxidative insult of hHSC20-deficient cells. Conversely, overexpression of hHSC20 substantially protected cells from oxidative insults. These results imply that hHSC20 is an integral component of the human ISC biosynthetic machinery that is particularly important in the assembly of ISCs under conditions of oxidative stress. A cysteine-rich N-terminal domain, which clearly distinguishes hHSC20 from the specialized DnaJ type III proteins of fungi and most bacteria, was found to be important for the integrity and function of the human co-chaperone.
机译:线粒体铁-硫簇(ISC)生物发生对人类健康的重要性已得到公认,但该关键途径的某些组成部分的作用在哺乳动物中仍然没有表现出来。其中包括人类热休克同源蛋白20(hHSC20),这是专门的DnaJ型协同伴侣的推测人类同源物,对细菌和真菌ISC组装至关重要。在这里,我们显示人类HSC20蛋白可以与其在酵母Jac1p中的对应物互补,并与其拟议的人类伴侣hISCU和hHSPA9相互作用。 hHSC20在各种人体组织中表达,并且主要定位于HeLa细胞中的线粒体。但是,线粒体外也检测到少量。 RNA干扰介导的hHSC20耗竭特别降低了线粒体和胞质ISC酶的活性。灭活hHSC20缺陷细胞后,失活的ISC酶的恢复明显延迟。相反,hHSC20的过表达基本上保护细胞免受氧化损伤。这些结果表明,hHSC20是人类ISC生物合成机制的组成部分,在氧化应激条件下ISC的组装中尤为重要。已发现富含半胱氨酸的N末端结构域将hHSC20与真菌和大多数细菌的专门DnaJ III型蛋白区分开,对人类伴侣分子的完整性和功能很重要。

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