From the ‡Department of Biochemistry, Purdue University, West Lafayette, IN 47907.
§Department of Horticulture and Landscape, Purdue University, West Lafayette, IN 47907.
Mol Cell Proteomics. 2018 Oct;17(10):2068-2080. doi: 10.1074/mcp.TIR118.000702. Epub 2018 Jul 13.
Phosphorylation-mediated signaling transduction plays a crucial role in the regulation of plant defense mechanisms against environmental stresses. To address the high complexity and dynamic range of plant proteomes and phosphoproteomes, we present a universal sample preparation procedure that facilitates plant phosphoproteomic profiling. This advanced workflow significantly improves phosphopeptide identifications, enabling deep insight into plant phosphoproteomes. We then applied the workflow to study the phosphorylation events involved in tomato cold tolerance mechanisms. Phosphoproteomic changes of two tomato species (N135 Green Gage and Atacames) with distinct cold tolerance phenotypes were profiled under cold stress. In total, we identified more than 30,000 unique phosphopeptides from tomato leaves, representing about 5500 phosphoproteins, thereby creating the largest tomato phosphoproteomic resource to date. The data, along with the validation through kinase reactions, allowed us to identify kinases involved in cold tolerant signaling and discover distinctive kinase-substrate events in two tomato species in response to a cold environment. The activation of SnRK2s and their direct substrates may assist N135 Green Gage tomatoes in surviving long-term cold stress. Taken together, the streamlined approach and the resulting deep phosphoproteomic analyses revealed a global view of tomato cold-induced signaling mechanisms.
磷酸化介导的信号转导在植物环境胁迫防御机制的调节中起着至关重要的作用。为了解决植物蛋白质组和磷酸化蛋白质组的高度复杂性和动态范围问题,我们提出了一种通用的样品制备方法,以促进植物磷酸化蛋白质组学的研究。该先进的工作流程显著提高了磷酸肽的鉴定能力,使我们能够深入了解植物磷酸化蛋白质组。然后,我们应用该工作流程来研究与番茄耐冷性机制相关的磷酸化事件。在冷胁迫下,对具有不同耐冷性表型的两个番茄品种(N135 绿玉和 Atacames)的磷酸化蛋白质组变化进行了分析。总共从番茄叶片中鉴定出了 30000 多个独特的磷酸肽,代表约 5500 种磷酸化蛋白质,从而创建了迄今为止最大的番茄磷酸化蛋白质组资源。通过激酶反应进行验证后,我们确定了参与耐冷信号的激酶,并发现了两种番茄在应对寒冷环境时特有的激酶-底物事件。SnRK2 的激活及其直接底物可能有助于 N135 绿玉番茄在长期的冷胁迫下存活。总之,简化的方法和深入的磷酸化蛋白质组分析揭示了番茄冷诱导信号机制的全貌。