Brito Danielle S, Agrimi Gennaro, Charton Lennart, Brilhaus Dominik, Bitetto Maria Gabriella, Lana-Costa Jaciara, Messina Eugenia, Nascimento Carolina P, Feitosa-Araújo Elias, Pires Marcel Viana, Pérez-Díaz Jorge Luis, Obata Toshihiro, Porcelli Vito, Palmieri Luigi, Araújo Wagner L, Weber Andreas P M, Linka Nicole, Fernie Alisdair R, Palmieri Ferdinando, Nunes-Nesi Adriano
Departamento de Biologia Vegetal, Universidade Federal de Viçosa, 36570-900 Viçosa, Minas Gerais, Brazil.
Department of Biosciences, Biotechnologies and Biopharmaceutics, Laboratory of Biochemistry and Molecular Biology, University of Bari, 70125 Bari, Italy.
Biochem J. 2020 May 15;477(9):1759-1777. doi: 10.1042/BCJ20190785.
A homolog of the mitochondrial succinate/fumarate carrier from yeast (Sfc1p) has been found in the Arabidopsis genome, named AtSFC1. The AtSFC1 gene was expressed in Escherichia coli, and the gene product was purified and reconstituted in liposomes. Its transport properties and kinetic parameters demonstrated that AtSFC1 transports citrate, isocitrate and aconitate and, to a lesser extent, succinate and fumarate. This carrier catalyzes a fast counter-exchange transport as well as a low uniport of substrates, exhibits a higher transport affinity for tricarboxylates than dicarboxylates, and is inhibited by pyridoxal 5'-phosphate and other inhibitors of mitochondrial carriers to various degrees. Gene expression analysis indicated that the AtSFC1 transcript is mainly present in heterotrophic tissues, and fusion with a green-fluorescent protein localized AtSFC1 to the mitochondria. Furthermore, 35S-AtSFC1 antisense lines were generated and characterized at metabolic and physiological levels in different organs and at various developmental stages. Lower expression of AtSFC1 reduced seed germination and impaired radicle growth, a phenotype that was related to reduced respiration rate. These findings demonstrate that AtSFC1 might be involved in storage oil mobilization at the early stages of seedling growth and in nitrogen assimilation in root tissue by catalyzing citrate/isocitrate or citrate/succinate exchanges.
在拟南芥基因组中发现了酵母线粒体琥珀酸/延胡索酸载体(Sfc1p)的一个同源物,命名为AtSFC1。AtSFC1基因在大肠杆菌中表达,其基因产物被纯化并重组到脂质体中。其转运特性和动力学参数表明,AtSFC1转运柠檬酸、异柠檬酸和顺乌头酸,在较小程度上也转运琥珀酸和延胡索酸。这种载体催化快速反向交换转运以及底物的低单向转运,对三羧酸的转运亲和力高于二羧酸,并且受到5'-磷酸吡哆醛和其他线粒体载体抑制剂的不同程度抑制。基因表达分析表明,AtSFC1转录本主要存在于异养组织中,与绿色荧光蛋白融合将AtSFC1定位于线粒体。此外,构建了35S-AtSFC1反义株系,并在不同器官的不同发育阶段对其进行了代谢和生理水平的表征。AtSFC1表达降低会降低种子萌发率并损害胚根生长,这种表型与呼吸速率降低有关。这些发现表明,AtSFC1可能通过催化柠檬酸/异柠檬酸或柠檬酸/琥珀酸交换参与幼苗生长早期的储存油动员以及根组织中的氮同化。