Mitochondrial acyl carrier protein, Acp1, required for iron-sulfur cluster assembly in mitochondria and cytoplasm in Saccharomyces cerevisiae

IF 3.9 3区 生物学 Q2 CELL BIOLOGY Mitochondrion Pub Date : 2024-09-07 DOI:10.1016/j.mito.2024.101955
Ashutosh K. Pandey , Heeyong Yoon , Jayashree Pain , Andrew Dancis , Debkumar Pain
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Abstract

Mitochondria perform vital biosynthetic processes, including fatty acid synthesis and iron-sulfur (FeS) cluster biogenesis. In Saccharomyces cerevisiae mitochondria, the acyl carrier protein Acp1 participates in type II fatty acid synthesis, requiring a 4-phosphopantetheine (PP) prosthetic group. Acp1 also interacts with the mitochondrial FeS cluster assembly complex that contains the cysteine desulfurase Nfs1. Here we investigated the role of Acp1 in FeS cluster biogenesis in mitochondria and cytoplasm. In the Acp1-depleted (Acp1↓) cells, biogenesis of mitochondrial FeS proteins was impaired, likely due to greatly reduced Nfs1 protein and/or its persulfide-forming activity. Formation of cytoplasmic FeS proteins was also deficient, suggesting a disruption in generating the (Fe-S)int intermediate, that is exported from mitochondria and is subsequently utilized for cytoplasmic FeS cluster assembly. Iron homeostasis was perturbed, with enhanced iron uptake into the cells and accumulation of iron in mitochondria. The Δppt2 strain, lacking the mitochondrial ability to add PP to Acp1, phenocopied the Acp1↓ cells. These data suggest that the holo form of Acp1 with the PP-conjugated acyl chain is required for stability of the Nfs1 protein and/or stimulation of its persulfide-forming activity. Thus, mitochondria lacking Acp1 (or Ppt2) cannot support FeS cluster biogenesis in mitochondria or cytoplasm, leading to disrupted iron homeostasis.

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线粒体酰基载体蛋白 Acp1 是线粒体和葡萄酵母细胞质中铁-硫簇组装的必要条件
线粒体进行着重要的生物合成过程,包括脂肪酸合成和铁硫(FeS)簇的生物生成。在酿酒酵母线粒体中,酰基载体蛋白 Acp1 参与 II 型脂肪酸合成,需要 4-磷酸泛硫乙氨酸(PP)人工基团。Acp1 还与包含半胱氨酸脱硫酶 Nfs1 的线粒体 FeS 簇组装复合物相互作用。在这里,我们研究了 Acp1 在线粒体和细胞质中 FeS 簇生物生成过程中的作用。在去除了 Acp1(Acp1↓)的细胞中,线粒体 FeS 蛋白的生物生成受到了影响,这可能是由于 Nfs1 蛋白和/或其过硫化物形成活性大大降低所致。细胞质中 FeS 蛋白的形成也出现缺陷,这表明(Fe-S)int 中间体的生成受到了干扰,该中间体从线粒体中输出,随后被用于细胞质中 FeS 簇的组装。铁的平衡受到干扰,细胞对铁的吸收增加,铁在线粒体中积累。Δppt2菌株缺乏线粒体向Acp1添加PP的能力,与Acp1↓细胞的表型相同。这些数据表明,带有 PP 结合酰基链的 Acp1 整体形式是 Nfs1 蛋白稳定和/或刺激其过硫化物形成活性所必需的。因此,缺乏 Acp1(或 Ppt2)的线粒体无法支持线粒体或细胞质中 FeS 簇的生物生成,从而导致铁稳态紊乱。
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来源期刊
Mitochondrion
Mitochondrion 生物-细胞生物学
CiteScore
9.40
自引率
4.50%
发文量
86
审稿时长
13.6 weeks
期刊介绍: Mitochondrion is a definitive, high profile, peer-reviewed international research journal. The scope of Mitochondrion is broad, reporting on basic science of mitochondria from all organisms and from basic research to pathology and clinical aspects of mitochondrial diseases. The journal welcomes original contributions from investigators working in diverse sub-disciplines such as evolution, biophysics, biochemistry, molecular and cell biology, genetics, pharmacology, toxicology, forensic science, programmed cell death, aging, cancer and clinical features of mitochondrial diseases.
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