UBE2C 通过调节 p53 的表达来诱导胶质瘤中的有氧糖酵解,从而增强替莫唑胺的耐药性。

Kun Zhou, Dexin Wang, Xiaolin Du, Xia Feng, Xiaoxi Zhu, Cheng Wang
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摘要

UBE2C在胶质瘤中过表达,有报道称其过表达在一定程度上与胶质瘤的耐药性相关。本研究探讨了 UBE2C 在调控替莫唑胺(TMZ)对胶质瘤耐药性中的作用,并研究了其中的内在机制。本研究纳入了来自50名TMZ耐药患者和50名TMZ敏感患者的20个正常脑组织和100个胶质瘤组织。通过构建TMZ耐药细胞系,探讨UBE2C在调控胶质瘤细胞活力和TMZ耐药中的作用。我们的研究结果表明,在胶质瘤患者的脑组织中,尤其是在TMZ耐药患者的脑组织中,UBE2C的mRNA和蛋白水平均显著升高。同样,在TMZ耐药细胞系中,UBE2C的表达也明显上调。过表达 UBE2C 可使胶质瘤细胞免于 TMZ 介导的细胞凋亡,并增强细胞活力。相反,下调 UBE2C 的表达可进一步增强 TMZ 的功能、增加细胞凋亡并降低细胞活力。从机理上讲,UBE2C 的过表达会降低 p53 的表达,并通过增加 ATP 水平、乳酸生成和葡萄糖摄取来提高有氧糖酵解水平。下调 p53 的水平可消除 UBE2C 下调在抑制胶质瘤细胞 TMZ 抗性和有氧糖酵解中的作用。此外,一项动物实验证实,在TMZ治疗的情况下,下调UBE2C的表达可进一步抑制肿瘤生长。总之,本研究揭示了下调 UBE2C 的表达可通过调节 p53 的表达来抑制有氧糖酵解,从而增强胶质瘤细胞对 TMZ 的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UBE2C enhances temozolomide resistance by regulating the expression of p53 to induce aerobic glycolysis in glioma.
UBE2C is overexpressed in gliomas, and its overexpression has been reported to be correlated with the drug resistance of gliomas to some extent. In this study, we explore the role of UBE2C in regulating temozolomide (TMZ) resistance in glioma and investigate the underlying mechanisms involved. Twenty normal brain tissues and 100 glioma tissues from 50 TMZ-resistant patients and 50 TMZ-sensitive patients are included in this study. TMZ-resistant cell lines are constructed to explore the role of UBE2C in regulating glioma cell viability and TMZ resistance. Our results show that both the mRNA and protein levels of UBE2C are significantly elevated in the brain tissues of glioma patients, especially in those of TMZ-resistant patients. Consistently, UBE2C expression is markedly upregulated in TMZ-resistant cell lines. Overexpression of UBE2C rescues glioma cells from TMZ-mediated apoptosis and enhances cell viability. In contrast, downregulation of UBE2C expression further enhances TMZ function, increases cell apoptosis and decreases cell viability. Mechanistically, UBE2C overexpression decreases p53 expression and enhances aerobic glycolysis level by increasing ATP level, lactate production, and glucose uptake. Downregulation of p53 level abolishes the role of UBE2C downregulation in inhibiting TMZ resistance and aerobic glycolysis in glioma cells. Moreover, an animal assay confirms that downregulation of UBE2C expression further suppresses tumor growth in the context of TMZ treatment. Collectively, this study reveals that downregulation of UBE2C expression enhances the sensitivity of glioma cells to TMZ by regulating the expression of p53 to inhibit aerobic glycolysis.
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