Cancer Science Institute of Singapore, NUS Centre for Cancer Research, Yong Loo Lin School of Medicine, National University of Singapore, 14 Medical Drive #12-01, Singapore 117599, Singapore.
Department of Surgery, Tohoku University Graduate School of Medicine, Sendai 980-8574, Japan.
Cells. 2023 Jan 25;12(3):408. doi: 10.3390/cells12030408.
The runt-related transcription factors (RUNX) play prominent roles in cell cycle progression, differentiation, apoptosis, immunity and epithelial-mesenchymal transition. There are three members in the mammalian RUNX family, each with distinct tissue expression profiles. RUNX genes play unique and redundant roles during development and adult tissue homeostasis. The ability of RUNX proteins to influence signaling pathways, such as Wnt, TGFβ and Hippo-YAP, suggests that they integrate signals from the environment to dictate cell fate decisions. All RUNX genes hold master regulator roles, albeit in different tissues, and all have been implicated in cancer. Paradoxically, RUNX genes exert tumor suppressive and oncogenic functions, depending on tumor type and stage. Unlike RUNX1 and 2, the role of RUNX3 in stem cells is poorly understood. A recent study using cancer-derived RUNX3 mutation R122C revealed a gatekeeper role for RUNX3 in gastric epithelial stem cell homeostasis. The corpora of mice showed a dramatic increase in proliferating stem cells as well as inhibition of differentiation. Tellingly, mice also exhibited a precancerous phenotype. This review focuses on the impact of RUNX3 dysregulation on (1) stem cell fate and (2) the molecular mechanisms underpinning early carcinogenesis.
runt 相关转录因子 (RUNX) 在细胞周期进程、分化、凋亡、免疫和上皮-间充质转化中发挥重要作用。哺乳动物 RUNX 家族有三个成员,每个成员都有独特的组织表达谱。RUNX 基因在发育和成人组织稳态中发挥独特和冗余的作用。RUNX 蛋白影响信号通路的能力,如 Wnt、TGFβ 和 Hippo-YAP,表明它们整合来自环境的信号,决定细胞命运决定。所有 RUNX 基因都具有主调控作用,尽管在不同的组织中,但都与癌症有关。矛盾的是,RUNX 基因根据肿瘤类型和阶段发挥肿瘤抑制和致癌作用。与 RUNX1 和 2 不同,RUNX3 在干细胞中的作用知之甚少。最近一项使用癌症衍生的 RUNX3 突变 R122C 的研究揭示了 RUNX3 在胃上皮干细胞稳态中的守门员作用。 小鼠的 corpora 显示增殖干细胞明显增加,分化受到抑制。值得注意的是, 小鼠也表现出癌前表型。这篇综述重点介绍了 RUNX3 失调对 (1) 干细胞命运和 (2) 早期致癌分子机制的影响。