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两种NFU蛋白在维持线粒体铁硫蛋白丰度中的功能关系

Functional Relationships of Two NFU Proteins in Maintaining the Abundances of Mitochondrial Iron-Sulfur Proteins.

作者信息

Zhao Jun, Satyanarayan Manasa B, VanSlambrouck Joshua T, Kolstoe Alexander J, Voyt Michael J, Jamesa Glory O, Yu Fei, Lu Yan

机构信息

Department of Biological Sciences Western Michigan University Kalamazoo Michigan USA.

State Key Laboratory of Crop Stress Biology for Arid Areas and College of Life Sciences Northwest A&F University Yangling Shaanxi China.

出版信息

Plant Direct. 2025 May 29;9(5):e70081. doi: 10.1002/pld3.70081. eCollection 2025 May.

Abstract

Iron-sulfur clusters are involved in many biological processes, including photosynthetic electron transport in the chloroplast and respiratory electron transport in the mitochondrion. Iron-sulfur cluster biosynthesis requires iron-sulfur carriers such as nitrogen-fixation-subunit-U [NFU]-type proteins. The nuclear genome encodes two mitochondrion-targeted NFU proteins: NFU4 and NFU5, previously reported to have a primary role in the biosynthesis of the lipoate cofactor, mediated by the 4Fe-4S enzyme lipoyl synthase. Through in vitro reconstitution and spectroscopic analysis, we found that recombinant NFU4 and NFU5 proteins had UV-visible features characteristic of 4Fe-4S clusters. In addition, we confirmed that double homozygous, complete loss-of-function mutants had an embryo-lethal phenotype. To investigate the functional relationship between NFU4 and NFU5, we generated sesquimutants that were homozygous loss-of-function for one gene and heterozygous for the other, which appeared slightly smaller than , , and single mutants. This suggests that the simultaneous decrease in levels of NFU4 and NFU5 proteins may have an additive effect on plant growth. Quantitative reverse transcription PCR showed that the transcript was absent in mutants homozygous for and and that the transcript level was substantially reduced in the single mutant or sesquimutants. Consistent with the transcript data, the abundances of NFU4 and NFU5 proteins were either virtually absent or substantially reduced in the corresponding single mutants and sesquimutants. Immunoblot analysis showed that most and single, double, and sesquimutants had significant reductions in the levels of mitochondrial 4Fe-4S proteins, such as aconitase (ACO) and biotin synthase 2 (BIO2; note that BIO2 also contains a 2Fe-2S cluster). In addition, sesquimutants showed substantial reductions in the protein level of the 75-kDa subunit of respiratory complex I (CI75), which contains one 2Fe-2S cluster and two 4Fe-4S clusters. These observations indicate that NFU4 and NFU5 are important in maintaining the levels of mitochondrial 4Fe-4S proteins. Such observations are also consistent with the hypothesis that NFU4 and NFU5 may serve as iron-sulfur carriers and may play a role in the transfer of 4Fe-4S clusters to recipient apoproteins, such as ACO and CI75, during the biogenesis and maturation of mitochondrial 4Fe-4S clusters.

摘要

铁硫簇参与许多生物过程,包括叶绿体中的光合电子传递和线粒体中的呼吸电子传递。铁硫簇生物合成需要铁硫载体,如固氮亚基U [NFU]型蛋白。核基因组编码两种靶向线粒体的NFU蛋白:NFU4和NFU5,此前报道它们在硫辛酸辅因子的生物合成中起主要作用,由4Fe-4S酶硫辛酰胺合成酶介导。通过体外重组和光谱分析,我们发现重组NFU4和NFU5蛋白具有4Fe-4S簇的紫外可见特征。此外,我们证实双纯合、完全功能丧失突变体具有胚胎致死表型。为了研究NFU4和NFU5之间的功能关系,我们构建了半突变体,其中一个基因纯合功能丧失,另一个基因杂合,这些半突变体看起来比、和单突变体略小。这表明NFU4和NFU5蛋白水平的同时降低可能对植物生长有累加效应。定量逆转录PCR显示,在和纯合突变体中不存在转录本,并且在单突变体或半突变体中转录本水平大幅降低。与转录本数据一致,在相应的单突变体和半突变体中,NFU4和NFU5蛋白的丰度几乎不存在或大幅降低。免疫印迹分析表明,大多数和单、双、半突变体中线粒体4Fe-4S蛋白的水平显著降低,如乌头酸酶(ACO)和生物素合成酶BIO2(注意,BIO2也含有一个2Fe-2S簇)。此外,半突变体中呼吸复合体I的75 kDa亚基(CI75)水平大幅降低,CI75含有一个2Fe-2S簇和两个4Fe-4S簇。这些观察结果表明,NFU4和NFU5在维持线粒体4Fe-4S蛋白水平方面很重要。这些观察结果也与以下假设一致:NFU4和NFU5可能作为铁硫载体,并且可能在4Fe-4S簇向受体脱辅基蛋白(如ACO和CI75)的转移中发挥作用,这发生在线粒体4Fe-4S簇的生物合成和成熟过程中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/556f/12120262/981a025b529b/PLD3-9-e70081-g002.jpg

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