Chen Li, Tan Yonghuang, Li Weinan, Huang Lunkai, Li Kang, Feng Zanjie, Peng Cijun, Mei Yong
Diagnostics Laboratory, Affiliated Hospital of Zunyi Medical University, Zunyi, Guizhou, China.
Department of Gastrointestinal Surgery, The First Affiliated Hospital of Sun Yat-sen University, Guangzhou, China.
Front Oncol. 2025 Mar 18;15:1576651. doi: 10.3389/fonc.2025.1576651. eCollection 2025.
Pseudouridine synthases (PUSs) are associated with the development and progression of various cancers. However, the role of pseudouridine synthase 1 (PUS1) on HCC is unclear. The purpose of this study is to explore the biological role and mechanism of PUS1 in HCC growth and progression. We identified the expression of PUS1 in HCC. The biological roles and downstream cell signaling pathways of PUS1 were explored to clarify the molecular mechanism of PUS1 in the growth and development of HCC. The results showed that the expression of PUS1 was correlated with HCC progression, metastasis, and poor survival. In addition, the knockdown of PUS1 dramatically inhibited cell proliferation and colony formation and promoted cell apoptosis. GSEA analysis revealed that c-MYC, DNA repair, and mTORC1 pathways were significantly enriched in patients with high PUS1 expression. An intersection of the PUS1-dependent Ψ modification genes and c-MYC or mTORC1 pathway genes was performed. The expression of a part of these genes changed after PUS1 knockdown. Meanwhile, the expression of c-MYC and mTOR were down-regulated after PUS1 knockdown, but the inhibitory effect of PUS1 on cell growth capacity was not enhanced after inhibiting c-MYC or mTOR pathways. In conclusion, PUS1 regulates the occurrence and development of HCC through c-MYC and mTOR-related signaling pathways. It could be a novel molecule for clinical diagnosis, progression surveillance, prognosis assessment and therapeutic target of HCC.
假尿苷合酶(PUSs)与多种癌症的发生和发展相关。然而,假尿苷合酶1(PUS1)在肝癌中的作用尚不清楚。本研究旨在探讨PUS1在肝癌生长和进展中的生物学作用及机制。我们检测了肝癌中PUS1的表达。通过探究PUS1的生物学作用和下游细胞信号通路,以阐明PUS1在肝癌生长和发展中的分子机制。结果显示,PUS1的表达与肝癌的进展、转移及不良预后相关。此外,敲低PUS1可显著抑制细胞增殖和集落形成,并促进细胞凋亡。基因集富集分析(GSEA)显示,c-MYC、DNA修复和mTORC1通路在PUS1高表达患者中显著富集。对PUS1依赖的假尿苷修饰基因与c-MYC或mTORC1通路基因进行了交集分析。PUS1敲低后,这些基因中的一部分表达发生了变化。同时,PUS1敲低后c-MYC和mTOR的表达下调,但抑制c-MYC或mTOR通路后,PUS1对细胞生长能力的抑制作用并未增强。总之,PUS1通过c-MYC和mTOR相关信号通路调节肝癌的发生和发展。它可能是肝癌临床诊断、病情监测、预后评估及治疗靶点的新型分子。