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急性铜离子暴露后斑马鱼肝细胞系 ZFL 的全转录组测序(RNA-seq)分析。

Whole-transcriptome sequencing (RNA-seq) analyses of the zebrafish liver cell line, ZFL, after acute exposure to Cu ions.

机构信息

School of Life Sciences, The Chinese University of Hong Kong, Sha Tin, NT, Hong Kong.

出版信息

Metallomics. 2020 May 27;12(5):732-751. doi: 10.1039/d0mt00005a.

Abstract

All cells require Cu as a cofactor, but Cu2+ induces toxicity and oxidative damage. A strict system is thus needed to maintain Cu homeostasis. Using the ZFL zebrafish liver cell line as a model, we studied the cellular responses after exposure to Cu2+, using whole-transcriptome shotgun sequencing (RNA-seq) to screen nearly all transcriptomes in cell samples and identify changes in gene expression. ZFL cells were treated with 100, 200, or 400 μM CuCl2 and harvested after 4 and 24 h. RNA was then extracted and subjected to RNA-Seq and qPCR validation. Exposure to 400 μM CuCl2 for 4 h and 24 h led to the regulation of 5993 and 4235 genes, respectively. In a gene ontology enrichment analysis, Cu2+ exposure enriched the nitrogen compound metabolic process and antioxidant activity but did not significantly affect cellular copper, zinc, iron and calcium ion homeostasis. In a KEGG pathway enrichment analysis, anti-oxidative stress induced the glutathione metabolism pathway. Furthermore, Cu2+ also induced genes related to apoptosis and arrested the cell cycle in the G2 phase. This study was based on the full gene expression profile combined with pathway analysis details, providing a full cellular response picture for Cu.

摘要

所有细胞都需要 Cu 作为辅助因子,但 Cu2+ 会引起毒性和氧化损伤。因此,需要一个严格的系统来维持 Cu 的体内平衡。我们使用 ZFL 斑马鱼肝细胞系作为模型,通过全转录组 shotgun 测序(RNA-seq)筛选细胞样本中的几乎所有转录组,以研究暴露于 Cu2+后细胞的反应,并确定基因表达的变化。用 100、200 或 400 μM CuCl2 处理 ZFL 细胞,分别在 4 和 24 h 后收获。然后提取 RNA 进行 RNA-seq 和 qPCR 验证。暴露于 400 μM CuCl2 4 h 和 24 h 分别导致 5993 和 4235 个基因的调节。在基因本体论富集分析中,Cu2+暴露富集了氮化合物代谢过程和抗氧化活性,但对细胞内铜、锌、铁和钙离子的稳态没有显著影响。在 KEGG 途径富集分析中,抗氧化应激诱导了谷胱甘肽代谢途径。此外,Cu2+还诱导与细胞凋亡相关的基因,并使细胞周期在 G2 期停滞。本研究基于全基因表达谱结合通路分析细节,为 Cu 提供了全面的细胞反应图谱。

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