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首页> 外文期刊>Human Molecular Genetics >Cytosolic HSC20 integrates de novo iron–sulfur cluster biogenesis with the CIAO1-mediated transfer to recipients
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Cytosolic HSC20 integrates de novo iron–sulfur cluster biogenesis with the CIAO1-mediated transfer to recipients

机译:Cytosolic HSC20将De Novo铁硫簇生物生物与CiaO1介导的转移整合到受者

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Iron–sulfur (Fe-S) clusters are cofactors in hundreds of proteins involved in multiple cellular processes, including mitochondrial respiration, the maintenance of genome stability, ribosome biogenesis and translation. Fe-S cluster biogenesis is performed by multiple enzymes that are highly conserved throughout evolution, and mutations in numerous biogenesis factors are now recognized to cause a wide range of previously uncategorized rare human diseases. Recently, a complex formed of components of the cytoplasmic Fe-S cluster assembly (CIA) machinery, consisting of CIAO1, FAM96B and MMS19, was found to deliver Fe-S clusters to a subset of proteins involved in DNA metabolism, but it was unclear how this complex acquired its fully synthesized Fe-S clusters, because Fe-S clusters have been alleged to be assembled de novo solely in the mitochondrial matrix. Here, we investigated the potential role of the human cochaperone HSC20 in cytosolic Fe-S assembly and found that HSC20 assists Fe-S cluster delivery to cytosolic and nuclear Fe-S proteins. Cytosolic HSC20 (C-HSC20) mediated complex formation between components of the cytosolic Fe-S biogenesis pathway (ISC), including the primary scaffold, ISCU1, and the cysteine desulfurase, NFS1, and the CIA targeting complex, consisting of CIAO1, FAM96B and MMS19, to facilitate Fe-S cluster insertion into cytoplasmic and nuclear Fe-S recipients. Thus, C-HSC20 integrates initial Fe-S biosynthesis with the transfer activities of the CIA targeting system. Our studies demonstrate that a novel cytosolic pathway functions in parallel to the mitochondrial ISC to perform de novo Fe-S biogenesis, and to escort Fe-S clusters to cytoplasmic and nuclear proteins.
机译:铁 - 硫(Fe-S)簇是数百种蛋白质中涉及多种细胞过程的辅助actor,包括线粒体呼吸,基因组稳定性,核糖体生物发生和翻译。 Fe-S簇生物发生是由在整个进化中受到高度保守的多种酶进行的,并且现在认识到许多生物发生因子中的突变导致各种先前未分类的罕见人类疾病。最近,发现由CiaO1,FAM96B和MMS19组成的细胞质Fe-S簇组件(CIA)机械组分组成的复合物,将Fe-S簇递送到参与DNA代谢的蛋白质的子集,但尚不清楚这种复杂如何获得其完全合成的FE-S集群,因为据称FE-S集群被据称仅在线粒体基质中组装DE Novo。在这里,我们研究了人Cochaperone HSC20在细胞溶胶Fe-S组件中的潜在作用,发现HSC20有助于Fe-S簇递送至细胞溶溶剂和核Fe-S蛋白。细胞溶质HSC20(C-HSC20)介导的胞质Fe-S生物发生途径(ISC)的组分之间的复合物形成,包括主要支架,ISCU1和半胱氨酸脱硫酶,NFS1和CIA靶向复合物,包括CiaO1,FAM96B和MMS19,促进Fe-S簇插入细胞质和核FE-S接受者。因此,C-HSC20与CIA靶向系统的转移活动集成了初始Fe-S生物合成。我们的研究表明,一种新的细胞源途径与线粒体ISC平行起作用,以进行De Novo Fe-S生物,并护送Fe-S簇与细胞质和核蛋白质。

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