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Assessing the relevance of a multiplexed methodology for proteomic biomarker measurement in the invertebrate species Gammarus fossarum: A physiological and ecotoxicological study

机译:评估多重方法的相关性对蛋白质组学生物标志物测量的蛋白质组学生物标志物测量在无脊椎动物种类毒素中:生理和生态毒理学研究

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Recently, a protein sequence database was built specifically for the sentinel non-model species Gommarus fosswurn using a proteogenomics approach. A quantitative multiplexed targeted proteomics assay (using Selected Reaction Monitoring mass spectrometry) was then developed for a fast and simultaneous quantification of dozens of biomarker peptides specific of this freshwater sentinel crustacean species. In order to assess the relevance of this breakthrough methodology in ecotoxicology, the response patterns of a panel of 26 peptides reporting for 20 proteins from the Gammarus fossarum proteome with putative key functional roles (homeostasis, osmoregulation, nutrition, reproduction, molting,...) were recorded through male and female reproductive cycles and after exposure to environmental concentrations of cadmium and lead in laboratory-controlled conditions. Based on these results, we validated the implication of annotated vtg-like peptides in the oogenesis process, and the implication of Na+/K+ ATPase proteins in the molt cycle of organisms. Upon metal (cadmium and lead) contamination, peptides belonging to proteins annotated as involved in antioxidant and detoxification functions, immunity and molting were significantly down-regulated. Overall, this multiplex assay allowed gaining relevant insights upon disruption of different main functions in the sentinel species Gammarus fossarurn. This breakthrough methodology in ecotoxicology offers a valid and high throughput alternative to currently used protocols, paving the way for future practical applications of proteogenomics-derived protein biomarkers in chemical risk assessment and environmental monitoring.
机译:最近,使用蛋白质组织方法专门为Sentinel非型号种类Gommarus Fosswurn而设计蛋白质序列数据库。然后开发了定量多重靶向蛋白质组学测定(使用所选反应监测质谱),用于快速和同时定量该淡水哨兵甲壳类动物的数十种生物标志物肽。为了评估这种突破性方法在生态毒理学中的相关性,具有预定的关键功能作用的26个肽,26个肽的响应模式从γ鼻子蛋白质中报告20个蛋白质(稳态,Osmoreculation,营养,繁殖,蜕皮,...... )通过男性和女性生殖循环和暴露于环境浓度的镉和铅,在实验室控制条件下进行记录。基于这些结果,我们验证了在oferocis方法中的注释的Vtg样肽的含义,以及在生物体的蜕皮循环中的Na + / k + AtPase蛋白的含义。在金属(镉和铅)污染物上,属于抗氧化剂和排毒功能的蛋白质的肽显着下调。总的来说,这种多元化测定允许在哨兵种类术语中断的不同主要功能中获得相关的见解。这种突破性的生态毒理学方法提供了有效和高的吞吐量替代目前使用的协议,为化学风险评估和环境监测中未来的蛋白质蛋白质生物标志物的未来实际应用铺平了道路。

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