Berger Nathalie, Vignols Florence, Przybyla-Toscano Jonathan, Roland Mélanie, Rofidal Valérie, Touraine Brigitte, Zienkiewicz Krzysztof, Couturier Jérémy, Feussner Ivo, Santoni Véronique, Rouhier Nicolas, Gaymard Frédéric, Dubos Christian
BPMP, Université de Montpellier, CNRS, INRAE, SupAgro, Montpellier, France.
Université de Lorraine, INRAE, IAM, Nancy, France.
J Exp Bot. 2020 Jul 6;71(14):4171-4187. doi: 10.1093/jxb/eraa166.
Iron-sulfur (Fe-S) proteins have critical functions in plastids, notably participating in photosynthetic electron transfer, sulfur and nitrogen assimilation, chlorophyll metabolism, and vitamin or amino acid biosynthesis. Their maturation relies on the so-called SUF (sulfur mobilization) assembly machinery. Fe-S clusters are synthesized de novo on a scaffold protein complex and then delivered to client proteins via several transfer proteins. However, the maturation pathways of most client proteins and their specificities for transfer proteins are mostly unknown. In order to decipher the proteins interacting with the Fe-S cluster transfer protein NFU2, one of the three plastidial representatives found in Arabidopsis thaliana, we performed a quantitative proteomic analysis of shoots, roots, and seedlings of nfu2 plants, combined with NFU2 co-immunoprecipitation and binary yeast two-hybrid experiments. We identified 14 new targets, among which nine were validated in planta using a binary bimolecular fluorescence complementation assay. These analyses also revealed a possible role for NFU2 in the plant response to desiccation. Altogether, this study better delineates the maturation pathways of many chloroplast Fe-S proteins, considerably extending the number of NFU2 clients. It also helps to clarify the respective roles of the three NFU paralogs NFU1, NFU2, and NFU3.
铁硫(Fe-S)蛋白在质体中具有关键功能,尤其参与光合电子传递、硫和氮同化、叶绿素代谢以及维生素或氨基酸生物合成。它们的成熟依赖于所谓的SUF(硫动员)组装机制。Fe-S簇在支架蛋白复合物上从头合成,然后通过几种转移蛋白传递给客户蛋白。然而,大多数客户蛋白的成熟途径及其对转移蛋白的特异性大多未知。为了解析与铁硫簇转移蛋白NFU2相互作用的蛋白,NFU2是拟南芥中发现的三种质体代表蛋白之一,我们对nfu2植物的地上部分、根和幼苗进行了定量蛋白质组学分析,并结合了NFU2免疫共沉淀和二元酵母双杂交实验。我们鉴定出14个新靶点,其中9个在植物中通过二元双分子荧光互补试验得到验证。这些分析还揭示了NFU2在植物对干燥的响应中可能发挥的作用。总之,这项研究更好地描绘了许多叶绿体铁硫蛋白的成熟途径,大大扩展了NFU2客户蛋白的数量。它还有助于阐明三个NFU旁系同源物NFU1、NFU2和NFU3各自的作用。