Université de Lyon, Université Claude Bernard Lyon 1, Institut des Sciences Analytiques, CNRS UMR 5280, 5 rue de la Doua, F-69100 Villeurbanne, France.
INRAE, UR RiverLy, Laboratoire d'écotoxicologie, F-69625 Villeurbanne, France; Laboratoire Innovations Technologiques pour la Détection et le Diagnostic (LI2D), Service de Pharmacologie et Immunoanalyse (SPI), Commissariat à l'Energie Atomique, Bagnols-sur-Cèze, France.
J Proteomics. 2020 Aug 30;226:103901. doi: 10.1016/j.jprot.2020.103901. Epub 2020 Jul 12.
Ecotoxicoproteomics employs mass spectrometry-based approaches centered on proteins of sentinel organisms to assess for instance, chemical toxicity in fresh water. In this study, we combined proteogenomics experiments and a novel targeted proteomics approach free from retention time scheduling called Scout-MRM. This methodology will enable the measurement of simultaneously changes in the relative abundance of multiple proteins involved in key physiological processes and potentially impacted by contaminants in the freshwater sentinel Gammarus fossarum. The development and validation of the assay were performed to target 157 protein biomarkers of this non-model organism. We carefully chose and validated the transitions to monitor using conventional parameters (linearity, repeatability, LOD, LOQ). Finally, the potential of the methodology is illustrated by measuring 277-peptide-plex assay (831 transitions) in sentinel animals exposed in natura to different agricultural sites potentially exposed to pesticide contamination. Multivariate data analyses highlighted the modulation of several key proteins involved in feeding and molting. This multiplex-targeted proteomics assay paves the way for the discovery and the use of a large panel of novel protein biomarkers in emergent ecotoxicological models for environmental monitoring in the future. BIOLOGICAL SIGNIFICANCE: The study contributed to the development of Scout-MRM for the high-throughput quantitation of a large panel of proteins in the Gammarus fossarum freshwater sentinel. Increasing the number of markers in ecotoxicoproteomics is of most interest to assess the impact of pollutants in freshwater organisms. The development and validation of the assay enabled the monitoring of a large panel of reporter peptides of exposed gammarids. To illustrate the applicability of the methodology, animals from different agricultural sites were analysed. The application of the assay highlighted the modulation of some biomarker proteins involved in key physiological pathways, such as molting, feeding and general stress response. Increasing multiplexing capabilities and field test will provide the development of diagnostic protein biomarkers for emergent ecotoxicological models in future environmental biomonitoring programs.
生态毒理蛋白质组学采用基于质谱的方法,以指示生物的蛋白质为中心,评估例如淡水的化学毒性。在这项研究中,我们结合了蛋白质组学实验和一种新型的靶向蛋白质组学方法,该方法无需保留时间调度,称为 Scout-MRM。这种方法将能够同时测量参与关键生理过程的多个蛋白质的相对丰度的变化,这些蛋白质可能受到淡水指示生物食蚊鱼中污染物的影响。该测定法的开发和验证是针对该非模型生物的 157 种蛋白质生物标志物进行的。我们仔细选择和验证了使用常规参数(线性,重复性,LOD,LOQ)进行监测的转换。最后,通过测量暴露于不同农业地点的食蚊鱼中的 277 肽复合物测定法(831 个转换)说明了该方法的潜力,这些地点可能受到农药污染。多变量数据分析突出了参与摄食和蜕皮的几种关键蛋白质的调节。这种多重靶向蛋白质组学测定法为未来环境监测中新兴生态毒理学模型中新型蛋白质生物标志物的发现和使用铺平了道路。生物学意义:该研究为 Scout-MRM 的开发做出了贡献,该方法可用于高通量定量食蚊鱼淡水指示生物中的大量蛋白质。在生态毒理蛋白质组学中增加标记物的数量对于评估淡水生物中污染物的影响最感兴趣。该测定法的开发和验证使暴露的食蚊鱼的大量报告肽标记物的监测成为可能。为了说明该方法的适用性,分析了来自不同农业地点的动物。该方法的应用突出了一些参与蜕皮,摄食和一般应激反应等关键生理途径的生物标志物蛋白的调节。增加多重功能和现场测试将为未来环境生物监测计划中新兴生态毒理学模型的开发提供诊断蛋白质生物标志物。