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水生环境监测中的生态毒理蛋白质组学:一种新的基于蛋白质组学的多生物标志物测定法的原位首次应用,该方法使用笼养的片脚类动物。

Ecotoxico-Proteomics for Aquatic Environmental Monitoring: First in Situ Application of a New Proteomics-Based Multibiomarker Assay Using Caged Amphipods.

机构信息

Irstea, UR MALY, Laboratoire d'écotoxicologie , F-69625 Villeurbanne, France.

CEA-Marcoule, DRF/Joliot/DMTS/SPI/Li2D, Laboratory Innovative Technologies for Detection and Diagnostics , Bagnols-Sur-Cèze, F-30207, France.

出版信息

Environ Sci Technol. 2017 Nov 21;51(22):13417-13426. doi: 10.1021/acs.est.7b03736. Epub 2017 Nov 7.

DOI:10.1021/acs.est.7b03736
PMID:29068690
Abstract

As a proof of principle, a selected reaction monitoring (SRM) mass spectrometry-based methodology was applied to the simultaneous quantification of dozens of protein biomarkers in caged amphipods (Gammarus fossarum). We evaluated the suitability of the methodology to assess complex field contaminations through its application in the framework of a regional river monitoring network. Thanks to the high throughput acquisition of biomarker levels in G. fossarum exposed in four reference and 13 contaminated sites, we analyzed the individual responses of 38 peptides reporting for 25 proteins of interest in 170 organisms. Responses obtained in contaminated sites included inductions of vitellogenin-like proteins in male organisms, inductions of NaK/ATPases, and strong inhibitions of molt-related proteins such as chitinase and JHE-carboxylesterase. Proteins from detoxification and immunity processes were also found modulated in abundance. Summarizing, the results presented here show that the SRM strategy developed for multibiomarker measurement paves a very promising way to define multiple indicators of the health status of sentinel organisms for environmental hazard assessment.

摘要

作为原理验证,我们应用了一种基于选择反应监测(SRM)质谱的方法,用于同时定量分析数十种笼养桡足类(Gammarus fossarum)中的蛋白质生物标志物。我们评估了该方法通过应用于区域河流监测网络框架来评估复杂现场污染的适用性。通过在四个参考点和 13 个污染点暴露的 G. fossarum 中进行生物标志物水平的高通量采集,我们分析了 170 个生物体中 25 种感兴趣蛋白的 38 个肽报告的个体反应。在污染点获得的反应包括雄性生物中卵黄蛋白原样蛋白的诱导、NaK/ATP 酶的诱导,以及与蜕皮相关的蛋白如几丁质酶和 JHE-羧酸酯酶的强烈抑制。还发现解毒和免疫过程中的蛋白质丰度发生了变化。总之,这里呈现的结果表明,为多生物标志物测量开发的 SRM 策略为确定环境危害评估中哨兵生物健康状况的多个指标铺平了非常有前途的道路。

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