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顺铂和菲咯嗪调节 A549 和 IMR90 细胞中的长链非编码 RNA 表达,揭示了 microRNAs、Wnt/β-catenin 和 TGF-β 信号通路的调控。

Cisplatin and phenanthriplatin modulate long-noncoding RNA expression in A549 and IMR90 cells revealing regulation of microRNAs, Wnt/β-catenin and TGF-β signaling.

机构信息

Department of Cell and Molecular Biology, Cancer Center and Research Institute, University of Mississippi Medical Center, Jackson, MS, 39216, USA.

Biology Department, Western Kentucky University, Bowling Green, KY, 42101-1080, USA.

出版信息

Sci Rep. 2021 May 17;11(1):10408. doi: 10.1038/s41598-021-89911-z.

Abstract

The monofunctional platinum(II) complex, phenanthriplatin, acts by blocking transcription, but its regulatory effects on long-noncoding RNAs (lncRNAs) have not been elucidated relative to traditional platinum-based chemotherapeutics, e.g., cisplatin. Here, we treated A549 non-small cell lung cancer and IMR90 lung fibroblast cells for 24 h with either cisplatin, phenanthriplatin or a solvent control, and then performed microarray analysis to identify regulated lncRNAs. RNA22 v2 microRNA software was subsequently used to identify microRNAs (miRNAs) that might be suppressed by the most regulated lncRNAs. We found that miR-25-5p, -30a-3p, -138-5p, -149-3p, -185-5p, -378j, -608, -650, -708-5p, -1253, -1254, -4458, and -4516, were predicted to target the cisplatin upregulated lncRNAs, IMMP2L-1, CBR3-1 and ATAD2B-5, and the phenanthriplatin downregulated lncRNAs, AGO2-1, COX7A1-2 and SLC26A3-1. Then, we used qRT-PCR to measure the expression of miR-25-5p, -378j, -4516 (A549) and miR-149-3p, -608, and -4458 (IMR90) to identify distinct signaling effects associated with cisplatin and phenanthriplatin. The signaling pathways associated with these miRNAs suggests that phenanthriplatin may modulate Wnt/β-catenin and TGF-β signaling through the MAPK/ERK and PTEN/AKT pathways differently than cisplatin. Further, as some of these miRNAs may be subject to dissimilar lncRNA targeting in A549 and IMR90 cells, the monofunctional complex may not cause toxicity in normal lung compared to cancer cells by acting through distinct lncRNA and miRNA networks.

摘要

单功能铂(II)配合物菲咯嗪通过阻断转录起作用,但相对于传统的铂类化疗药物(如顺铂),其对长链非编码 RNA(lncRNA)的调节作用尚未阐明。在这里,我们用顺铂、菲咯嗪或溶剂对照处理 A549 非小细胞肺癌和 IMR90 肺成纤维细胞 24 小时,然后进行微阵列分析以鉴定调节的 lncRNA。随后使用 RNA22 v2 microRNA 软件鉴定可能被最调节的 lncRNA 抑制的 microRNAs (miRNAs)。我们发现 miR-25-5p、-30a-3p、-138-5p、-149-3p、-185-5p、-378j、-608、-650、-708-5p、-1253、-1254、-4458 和 -4516,被预测为靶向顺铂上调的 lncRNA,IMMP2L-1、CBR3-1 和 ATAD2B-5,以及菲咯嗪下调的 lncRNA,AGO2-1、COX7A1-2 和 SLC26A3-1。然后,我们使用 qRT-PCR 测量 miR-25-5p、-378j、-4516(A549)和 miR-149-3p、-608 和 -4458(IMR90)的表达,以鉴定与顺铂和菲咯嗪相关的不同信号效应。与这些 miRNA 相关的信号通路表明,菲咯嗪可能通过不同的 MAPK/ERK 和 PTEN/AKT 途径调节 Wnt/β-catenin 和 TGF-β 信号,与顺铂不同。此外,由于这些 miRNA 中的一些可能在 A549 和 IMR90 细胞中受到不同的 lncRNA 靶向,因此该单功能配合物通过不同的 lncRNA 和 miRNA 网络作用可能不会在正常肺中引起与癌细胞相比的毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f994/8129125/907dbf2c481e/41598_2021_89911_Fig1_HTML.jpg

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