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细胞外信号调节激酶(ERK)1和2在HCT116细胞的G1-S期转换及依托泊苷诱导的G2/M期检查点中的冗余作用。

Redundant roles of extra-cellular signal-regulated kinase (ERK) 1 and 2 in the G1-S transition and etoposide-induced G2/M checkpoint in HCT116 cells.

作者信息

Erdenebaatar Purev, Gunarta I Ketut, Suzuki Ryusuke, Odongoo Ravdandorj, Fujii Toshihiro, Fukunaga Rikiro, Kanemaki Masato T, Yoshioka Katsuji

机构信息

Division of Molecular Cell Signaling, Cancer Research Institute, Kanazawa University, Kanazawa, Japan.

Department of Biochemistry, Faculty of Pharmacy, Osaka Medical and Pharmaceutical University, Takatsuki, Japan.

出版信息

Drug Discov Ther. 2023 Mar 11;17(1):10-17. doi: 10.5582/ddt.2022.01120. Epub 2023 Jan 14.

Abstract

The extracellular signal-regulated kinase (ERK) 1 and 2 intracellular signaling pathways play key roles in a variety of cellular processes, such as proliferation and differentiation. Dysregulation of ERK1/2 signaling has been implicated in many diseases, including cancer. Although ERK1/2 signaling pathways have been extensively studied, controversy remains as to whether ERK1 and ERK2 have specific or redundant functions. In this study, we examined the functional roles of ERK1 and ERK2 in cell proliferation and cell cycle progression using an auxin-inducible degron system combined with gene knockout technology. We found that ERK1/2 double depletion, but not ERK1 or ERK2 depletion, substantially inhibited the proliferation of HCT116 cells during G1-S transition. We further demonstrated that ERK1/2-double-depleted cells were much more tolerant to etoposide-induced G2/M arrest than ERK1 or ERK2 single-knockout cells. Together, these results strongly suggest the functional redundancy of ERK1 and ERK2 in both the G1-S transition under physiological conditions and the DNA damage-induced G2/M checkpoint. Our findings substantially advance understanding of the ERK1/2 pathways, which could have strong implications for future pharmacological developments.

摘要

细胞外信号调节激酶(ERK)1和2的细胞内信号通路在多种细胞过程中发挥关键作用,如增殖和分化。ERK1/2信号失调与包括癌症在内的许多疾病有关。尽管ERK1/2信号通路已被广泛研究,但关于ERK1和ERK2是否具有特定或冗余功能仍存在争议。在本研究中,我们使用生长素诱导降解系统结合基因敲除技术,研究了ERK1和ERK2在细胞增殖和细胞周期进程中的功能作用。我们发现,ERK1/2双缺失而非ERK1或ERK2缺失,在G1-S期转换过程中显著抑制了HCT116细胞的增殖。我们进一步证明,与ERK1或ERK2单敲除细胞相比,ERK1/2双缺失细胞对依托泊苷诱导的G2/M期阻滞具有更强的耐受性。总之,这些结果强烈表明ERK1和ERK2在生理条件下的G1-S期转换以及DNA损伤诱导的G2/M期检查点中具有功能冗余性。我们的发现极大地推进了对ERK1/2通路的理解,这可能对未来的药理学发展具有重要意义。

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