BPMP, Université de Montpellier, CNRS, INRAE, SupAgro, Montpellier, France.
Université de Lorraine, INRAE, IAM, F-54000 Nancy, France.
Int J Mol Sci. 2020 Oct 30;21(21):8121. doi: 10.3390/ijms21218121.
Iron-sulfur (Fe-S) proteins play critical functions in plants. Most Fe-S proteins are synthetized in the cytosol as apo-proteins and the subsequent Fe-S cluster incorporation relies on specific protein assembly machineries. They are notably formed by a scaffold complex, which serves for the de novo Fe-S cluster synthesis, and by transfer proteins that insure cluster delivery to apo-targets. However, scarce information is available about the maturation pathways of most plastidial Fe-S proteins and their specificities towards transfer proteins of the associated SUF machinery. To gain more insights into these steps, the expression and protein localization of the NFU1, NFU2, and NFU3 transfer proteins were analyzed in various organs and tissues showing quite similar expression patterns. In addition, quantitative proteomic analysis of an loss-of-function mutant allowed to propose novel potential client proteins for NFU3 and to show that the protein accumulation profiles and thus metabolic adjustments differ substantially from those established in the mutant. By clarifying the respective roles of the three plastidial NFU paralogs, these data allow better delineating the maturation process of plastidial Fe-S proteins.
铁硫(Fe-S)蛋白在植物中发挥着关键作用。大多数 Fe-S 蛋白在细胞质中作为脱辅基蛋白合成,随后的 Fe-S 簇掺入依赖于特定的蛋白质组装机制。这些机制主要由支架复合物形成,支架复合物用于从头合成 Fe-S 簇,同时由转移蛋白确保簇递送到脱辅基靶标。然而,关于大多数质体 Fe-S 蛋白的成熟途径及其对相关 SUF 机制的转移蛋白的特异性的信息很少。为了更深入地了解这些步骤,分析了 NFU1、NFU2 和 NFU3 转移蛋白在具有相似表达模式的各种器官和组织中的表达和蛋白定位。此外,对功能丧失突变体的定量蛋白质组学分析提出了 NFU3 的新的潜在靶蛋白,并表明蛋白质积累谱,因此代谢调整与突变体中建立的显著不同。通过阐明三个质体 NFU 同源物的各自作用,这些数据允许更好地描绘质体 Fe-S 蛋白的成熟过程。