Pandey Ashutosh K, Singh Pratibha, Pain Jayashree, Dancis Andrew, Pain Debkumar
Department of Pharmacology, Physiology and Neuroscience, New Jersey Medical School, Rutgers University, Newark, NJ 07103, USA.
Biomolecules. 2025 May 28;15(6):785. doi: 10.3390/biom15060785.
Frataxin is a component of the iron-sulfur (Fe-S) cluster assembly complex in mitochondria, and deficiency is associated with Friedreich ataxia (FA). The yeast homolog Yfh1 resembles and cross-complements with its human equivalent, and frataxin bypass scenarios are of particular interest because they may point to strategies for treating FA. Here, we describe frataxin/Yfh1 bypass by overexpression of Rsm22, an assembly factor for the mitochondrial ribosome. Rsm22 overexpression in Yfh1-depleted yeast cells restored critical processes in mitochondria, including Fe-S cluster assembly, lipoic acid synthesis, iron homeostasis, and heme synthesis, to a significant extent. Formation of cytoplasmic Fe-S proteins was also restored, suggesting recovery of the mitochondrial ability to generate the (Fe-S) intermediate that is exported from mitochondria and is utilized for cytoplasmic Fe-S cluster assembly. Importantly, an essential component of the mitochondrial iron-sulfur cluster machinery, namely ferredoxin, was virtually absent in mitochondria lacking Yfh1, but it was recovered with Rsm22 overexpression. Interestingly, ferredoxin overexpression could offset some of the effects of Yfh1 depletion. Ferredoxin has recently been shown to bind to the cysteine desulfurase protein Nfs1 at the same site as Yfh1, in a conserved arginine patch on Nfs1, such that ferredoxin binding at this site may confer frataxin-bypass activity.
铁调素是线粒体中铁硫(Fe-S)簇组装复合物的一个组成部分,其缺乏与弗里德赖希共济失调(FA)相关。酵母同源物Yfh1与其人类等同物相似且能相互补充,铁调素旁路情况特别令人感兴趣,因为它们可能指向治疗FA的策略。在此,我们描述了通过过表达线粒体核糖体组装因子Rsm22实现铁调素/Yfh1旁路。在Yfh1缺失的酵母细胞中过表达Rsm22在很大程度上恢复了线粒体中的关键过程,包括Fe-S簇组装、硫辛酸合成、铁稳态和血红素合成。细胞质Fe-S蛋白的形成也得以恢复,这表明线粒体产生从线粒体输出并用于细胞质Fe-S簇组装的(Fe-S)中间体的能力得到了恢复。重要的是,线粒体铁硫簇机制的一个关键组分,即铁氧化还原蛋白,在缺乏Yfh1的线粒体中几乎不存在,但在过表达Rsm22时得以恢复。有趣的是,过表达铁氧化还原蛋白可以抵消Yfh1缺失的一些影响。最近研究表明,铁氧化还原蛋白与半胱氨酸脱硫酶蛋白Nfs1在Nfs1上一个保守的精氨酸区域内与Yfh1相同的位点结合,因此铁氧化还原蛋白在此位点的结合可能赋予铁调素旁路活性。