Department of Biology, Missouri State University, 901 S National, Springfield, MO 65897, USA.
Jordan Valley Innovation Center, Missouri State University, 542 N Boonville, Springfield, MO 65806, USA.
Genes (Basel). 2021 Mar 17;12(3):428. doi: 10.3390/genes12030428.
The primary focus of our research was to obtain global gene expression data in baker's yeast exposed to sub-lethal doses of quantum dots (QDs), such as green-emitting CdSe/ZnS and InP/ZnS, to reveal novel insights on their unique mechanisms of toxicity. Despite their promising applications, their toxicity and long-lasting effects on the environment are not well understood. To assess toxicity, we conducted cell viability assays, ROS detection assays, and assessed their effects on the trafficking of Vps10-GFP toward the -Golgi network with confocal microscopy. Most notably, we used RNA-sequencing (RNA-seq) to obtain gene expression profiles and gene identities of differentially expressed genes (DEGs) in QD-treated yeast. We found CdSe/ZnS QDs significantly altered genes implicated in carboxylic acid, amino acid, nitrogen compounds, protein metabolic processes, transmembrane transport, cellular homeostasis, cell wall organization, translation, and ribosomal biogenesis. Additionally, we found InP/ZnS QDs to alter genes associated with oxidation-reduction, transmembrane transport, metal ion homeostasis, cellular component organization, translation, and protein and nitrogen compound metabolic processes. Interestingly, we observed an increase in reactive oxygen species (ROS) in CdSe/ZnS-treated cells and a decrease in ROS levels in InP/ZnS-treated cells. Nevertheless, we concluded that both QDs modestly contributed cytotoxic effects on the budding yeast.
我们的研究主要集中在获取在亚致死剂量的量子点(QD)下暴露的面包酵母的全球基因表达数据,例如绿色发射的 CdSe/ZnS 和 InP/ZnS,以揭示其独特毒性机制的新见解。尽管它们有广泛的应用前景,但它们的毒性和对环境的持久影响还没有得到很好的理解。为了评估毒性,我们进行了细胞活力测定、ROS 检测实验,并使用共聚焦显微镜评估了它们对 Vps10-GFP 向 -高尔基体网络运输的影响。值得注意的是,我们使用 RNA 测序(RNA-seq)获得了 QD 处理酵母中差异表达基因(DEG)的基因表达谱和基因身份。我们发现 CdSe/ZnS QD 显著改变了与羧酸、氨基酸、氮化合物、蛋白质代谢过程、跨膜运输、细胞内稳态、细胞壁组织、翻译和核糖体生物发生相关的基因。此外,我们发现 InP/ZnS QD 改变了与氧化还原、跨膜运输、金属离子内稳态、细胞成分组织、翻译和蛋白质及氮化合物代谢过程相关的基因。有趣的是,我们观察到 CdSe/ZnS 处理细胞中活性氧(ROS)的增加和 InP/ZnS 处理细胞中 ROS 水平的降低。然而,我们得出结论,两种 QD 都对芽殖酵母产生了轻微的细胞毒性作用。