Department of Biochemistry and Biophysics, Stockholm University, Arrhenius Laboratories for Natural Sciences, Stockholm, Sweden.
Clinical Proteomics Mass Spectrometry, Department of Oncology-Pathology, Science for Life Laboratory and Karolinska Institutet, Stockholm, Sweden.
Plant J. 2018 Nov;96(4):705-715. doi: 10.1111/tpj.14100.
The stepwise degradation of peptides to amino acids in plant mitochondria and chloroplasts is catalyzed by a network of oligopeptidases (presequence protease PreP, organellar oligopeptidase OOP) and aminopeptidases. In the present report, we show that the lack of oligopeptidase activity in Arabidopsis thaliana results in the accumulation of endogenous free peptides, mostly of chloroplastic origin (targeting peptides and degradation products). Using mRNA sequencing and deep coverage proteomics, allowing for the identification of 17 000 transcripts and 11 000 proteins, respectively, we uncover a peptide-stress response occurring in plants lacking PreP and OOP oligopeptidase activity. The peptide-stress response results in the activation of the classical plant defense pathways in the absence of pathogenic challenge. The constitutive activation of the pathogen-defense pathways imposes a strong growth penalty and a reduction of the plants reproductive fitness. Our results indicate that the absence of organellar oligopeptidases PreP1/2 and OOP results in the accumulation of peptides that are perceived as pathogenic effectors and activate the signaling pathways of plant-defense response.
植物线粒体和叶绿体中肽逐步降解为氨基酸是由一系列寡肽酶(前导肽蛋白酶 PreP、细胞器寡肽酶 OOP)和氨肽酶催化的。在本报告中,我们表明拟南芥中寡肽酶活性的缺失导致内源性游离肽的积累,这些肽主要来源于叶绿体(靶向肽和降解产物)。使用 mRNA 测序和深度覆盖蛋白质组学,分别可以鉴定出 17000 个转录本和 11000 个蛋白质,我们发现缺乏 PreP 和 OOP 寡肽酶活性的植物会发生肽应激反应。在没有病原体挑战的情况下,肽应激反应导致经典植物防御途径的激活。病原体防御途径的组成性激活会对植物的生长造成严重影响,并降低植物的繁殖适应性。我们的结果表明,细胞器寡肽酶 PreP1/2 和 OOP 的缺失导致肽的积累,这些肽被视为病原体效应子,并激活植物防御反应的信号通路。