Iskhakova Elina R, Aleksandrova Kseniia V, Suvorova Irina I
Institute of Cytology, Russian Academy of Sciences, 194064, Saint Petersburg, Russian Federation.
Sci Rep. 2025 May 31;15(1):19160. doi: 10.1038/s41598-025-02951-7.
Recent findings have indicated that pharmacological inhibition of the mTOR kinase can become a widely used experimental approach to generate dormant cancer cells in vitro. However, the suppression of mTOR, which is responsible for global translation, can significantly rewire basic cellular functions influencing the expression of housekeeping genes. To prevent incorrect selection of a reference gene in dormant tumor cells, we analyzed the expression stability of the widely used housekeeping genes GAPDH, ACTB, TUBA1A, RPS23, RPS18, RPL13A, PGK1, EIF2B1, TBP, CYC1, B2M, and YWHAZ in the T98G, A549, and PA-1 cancer cell lines treated with the dual mTOR inhibitor AZD8055. It has been revealed that the expression of the ACTB gene, encoding the cytoskeleton, and the RPS23, RPS18, and RPL13A genes, encoding ribosomal proteins, undergoes dramatic changes, and these genes are categorically inappropriate for RT-qPCR normalization in cancer cells treated with dual mTOR inhibitors. B2M and YWHAZ were determined to be the best reference genes in A549 cells, and the TUBA1A and GAPDH genes were the best reference genes in T98G cells. The optimal reference genes among the 12 candidate reference genes were not revealed in the PA-1 cell line. Validation of the stability of the 12 investigated genes demonstrated that the incorrect selection of a reference gene resulted in a significant distortion of the gene expression profile in dormant cancer cells.
最近的研究结果表明,对mTOR激酶进行药理学抑制可能会成为一种广泛应用的实验方法,用于在体外生成休眠癌细胞。然而,负责全局翻译的mTOR受到抑制后,会显著改变影响管家基因表达的基本细胞功能。为了避免在休眠肿瘤细胞中错误选择内参基因,我们分析了在经双重mTOR抑制剂AZD8055处理的T98G、A549和PA - 1癌细胞系中,广泛使用的管家基因GAPDH、ACTB、TUBA1A、RPS23、RPS18、RPL13A、PGK1、EIF2B1、TBP、CYC1、B2M和YWHAZ的表达稳定性。结果显示,编码细胞骨架的ACTB基因以及编码核糖体蛋白的RPS23、RPS18和RPL13A基因的表达发生了显著变化,在经双重mTOR抑制剂处理的癌细胞中,这些基因绝对不适用于RT - qPCR归一化。B2M和YWHAZ被确定为A549细胞中最佳的内参基因,TUBA1A和GAPDH基因则是T98G细胞中最佳的内参基因。在PA - 1细胞系中未发现12个候选内参基因中的最佳内参基因。对12个研究基因稳定性的验证表明,错误选择内参基因会导致休眠癌细胞中基因表达谱的显著扭曲。