Department of Biology, University of Konstanz, Universitätsstraße, Konstanz, Germany.
Department of Chemistry, Umeå University, Linnaeus väg, Umeå, Sweden.
J Exp Bot. 2019 Oct 15;70(19):5423-5436. doi: 10.1093/jxb/erz294.
Maintaining mitochondrial proteome integrity is especially important under stress conditions to ensure a continued ATP supply for protection and adaptation responses in plants. Deg/HtrA proteases are important factors in the cellular protein quality control system, but little is known about their function in mitochondria. Here we analyzed the expression pattern and physiological function of Arabidopsis thaliana DEG10, which has homologs in all photosynthetic eukaryotes. Both expression of DEG10:GFP fusion proteins and immunoblotting after cell fractionation showed an unambiguous subcellular localization exclusively in mitochondria. DEG10 promoter:GUS fusion constructs showed that DEG10 is expressed in trichomes but also in the vascular tissue of roots and aboveground organs. DEG10 loss-of-function mutants were impaired in root elongation, especially at elevated temperature. Quantitative proteome analysis revealed concomitant changes in the abundance of mitochondrial respiratory chain components and assembly factors, which partially appeared to depend on altered mitochondrial retrograde signaling. Under field conditions, lack of DEG10 caused a decrease in seed production. Taken together, our findings demonstrate that DEG10 affects mitochondrial proteostasis, is required for optimal root development and seed set under challenging environmental conditions, and thus contributes to stress tolerance of plants.
维持线粒体蛋白质组的完整性在应激条件下尤为重要,以确保植物的保护和适应反应有持续的 ATP 供应。Deg/HtrA 蛋白酶是细胞蛋白质质量控制系统中的重要因素,但它们在线粒体中的功能知之甚少。在这里,我们分析了拟南芥 DEG10 的表达模式和生理功能,DEG10 在所有光合真核生物中都有同源物。DEG10:GFP 融合蛋白的表达和细胞分级后的免疫印迹均显示出明确的亚细胞定位,仅在线粒体中。DEG10 启动子:GUS 融合构建体表明 DEG10 在毛状体中表达,但也在根和地上器官的维管束组织中表达。DEG10 功能丧失突变体在根伸长方面受到损害,尤其是在高温下。定量蛋白质组分析显示,线粒体呼吸链成分和组装因子的丰度同时发生变化,这部分似乎依赖于改变的线粒体逆行信号。在田间条件下,缺乏 DEG10 导致种子产量下降。总之,我们的研究结果表明,DEG10 影响线粒体蛋白质稳态,是在具有挑战性的环境条件下优化根发育和种子形成所必需的,因此有助于植物的应激耐受。