Wang Zhihua, Wu Wenbo, Guan Xiangchen, Guo Shuang, Li Chaowen, Niu Ruixue, Gao Jie, Jiang Min, Bai Liping, Leung Elaine Laihan, Hou Yuanyuan, Jiang Zhihong, Bai Gang
State Key Laboratory of Medicinal Chemical Biology, College of Pharmacy and Tianjin Key Laboratory of Molecular Drug Research, Nankai University, Tianjin 300353, China.
State Key Laboratory of Quality Research in Chinese Medicine, Macau University of Science and Technology, Taipa, Macau, China.
Acta Pharm Sin B. 2020 Jun;10(6):1020-1035. doi: 10.1016/j.apsb.2020.01.017. Epub 2020 Feb 5.
Although the tumor suppressor P53 is known to regulate a broad network of signaling pathways, it is still unclear how certain drugs influence these P53 signaling networks. Here, we used a comprehensive single-cell multiomics view of the effects of ginsenosides on cancer cells. Transcriptome and proteome profiling revealed that the antitumor activity of ginsenosides is closely associated with P53 protein. A miRNA-proteome interaction network revealed that P53 controlled the transcription of at least 38 proteins, and proteome-metabolome profiling analysis revealed that P53 regulated proteins involved in nucleotide metabolism, amino acid metabolism and "Warburg effect". The results of integrative multiomics analysis revealed P53 protein as a potential key target that influences the anti-tumor activity of ginsenosides. Furthermore, by applying affinity mass spectrometry (MS) screening and surface plasmon resonance fragment library screening, we confirmed that 20()-protopanaxatriol directly targeted adjacent regions of the P53 DNA-binding pocket and promoted the stability of P53-DNA interactions, which further induced a series of omics changes.
尽管已知肿瘤抑制因子P53可调节广泛的信号通路网络,但某些药物如何影响这些P53信号网络仍不清楚。在此,我们对人参皂苷对癌细胞的作用采用了全面的单细胞多组学视角。转录组和蛋白质组分析表明,人参皂苷的抗肿瘤活性与P53蛋白密切相关。一个miRNA-蛋白质组相互作用网络显示,P53控制着至少38种蛋白质的转录,蛋白质组-代谢组分析表明,P53调节参与核苷酸代谢、氨基酸代谢和“瓦伯格效应”的蛋白质。综合多组学分析结果显示,P53蛋白是影响人参皂苷抗肿瘤活性的潜在关键靶点。此外,通过应用亲和质谱(MS)筛选和表面等离子体共振片段文库筛选,我们证实20(S)-原人参三醇直接靶向P53 DNA结合口袋的相邻区域,并促进P53-DNA相互作用的稳定性,这进一步诱导了一系列组学变化。