Tilton Fred, Tilton Susan C, Bammler Theo K, Beyer Richard, Farin Frederico, Stapleton Patricia L, Gallagher Evan P
Department of Environmental and Occupational Health Sciences, University of Washington, Seattle, Washington, USA.
Environ Sci Technol. 2008 Dec 15;42(24):9404-11. doi: 10.1021/es801636v.
Metals such as copper disrupt olfactory function in fish. Unfortunately, little is understood of the molecular consequences of copper olfactory impairment, thus hindering the development of relevant diagnostic tools of olfactory injury. To address this critical data gap, we analyzed gene expression within olfactory tissues of adult zebrafish exposed to CuCl2 (6, 16, 40 ppb) for 24 h. Transcriptional markers of copper impairment within the entire olfactory system were identified and specific genes of interest (e.g., S100a, parvalbumin 8, olfactory marker protein, and calbindin 2-like protein) were confirmed with quantitative real-time PCR. In addition, we performed gene set analysis (GSA) using both a priori and custom pathways of gene sets specifically targeting the olfactory signal transduction (OST) pathway. These analyses revealed down-regulated gene sets related to calcium channels and ion transport, g-proteins, and olfactory receptors. Collectively, these data demonstrate that copper causes a depression of transcription of key genes within the OST pathway and elsewhere within olfactory tissues, likely resulting in an olfactory system less responsive to odorants. Further, these data provide a mechanistic explanation in support of earlier studies of functional olfactory impairment in fish following copper exposure.
铜等金属会破坏鱼类的嗅觉功能。遗憾的是,对于铜导致嗅觉损伤的分子后果了解甚少,这阻碍了嗅觉损伤相关诊断工具的开发。为了填补这一关键的数据空白,我们分析了暴露于氯化铜(6、16、40 ppb)24小时的成年斑马鱼嗅觉组织内的基因表达。确定了整个嗅觉系统内铜损伤的转录标记,并通过定量实时PCR确认了特定的感兴趣基因(例如,S100a、小白蛋白8、嗅觉标记蛋白和钙结合蛋白2样蛋白)。此外,我们使用专门针对嗅觉信号转导(OST)途径的先验基因集和定制基因集进行了基因集分析(GSA)。这些分析揭示了与钙通道和离子转运、G蛋白以及嗅觉受体相关的基因集下调。总体而言,这些数据表明铜会导致OST途径内以及嗅觉组织其他部位关键基因的转录受到抑制,可能导致嗅觉系统对气味剂的反应性降低。此外,这些数据为早期关于鱼类暴露于铜后功能性嗅觉损伤的研究提供了机制解释。