erk - usp9x偶联调节胸苷激酶1促进其对肿瘤生长的酶活性依赖性和酶活性非依赖性功能

Jingjing Tao, Zheng Wang, Rongkai Shi, Liming Lin, Min Li, Ying Meng, Shudi Luo, Xiaoming Jiang, Zhanpeng Guo, Yongfeng Shang, Zhimin Lu
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引用次数: 0

摘要

胸苷激酶1 (TK1)是DNA合成中的关键酶,在多种癌症中高度表达。然而,其表达升高的机制及其对肿瘤代谢的影响尚不清楚。本研究表明,激活生长因子受体可增强TK1的表达。表皮生长因子或胰岛素样生长因子1诱导ERK1/2与TK1结合,随后ERK1/2磷酸化TK1 S13/231。这种修饰招募泛素羧基末端水解酶9X去泛素化TK1,阻止其蛋白酶体降解。稳定的TK1不仅增强其酶活性依赖于DNA合成的脱氧胸腺嘧啶单磷酸的产生,而且通过上调磷酸果糖激酶/果糖双磷酸酶3型的表达,独立于酶活性促进糖酵解。TK1的这种双重作用驱动了人肝癌细胞的增殖和小鼠肝肿瘤的生长。我们的研究结果揭示了生长因子通过TK1介导的DNA合成和糖酵解促进肿瘤发展的关键机制,并强调了TK1作为癌症治疗的潜在分子靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

ERK–USP9X-coupled regulation of thymidine kinase 1 promotes both its enzyme activity-dependent and its enzyme activity-independent functions for tumor growth

ERK–USP9X-coupled regulation of thymidine kinase 1 promotes both its enzyme activity-dependent and its enzyme activity-independent functions for tumor growth

Thymidine kinase 1 (TK1), a crucial enzyme in DNA synthesis, is highly expressed in various cancers. However, the mechanisms underlying its elevated expression and the implications for tumor metabolism remain unclear. Here we demonstrate that activation of growth factor receptors enhances TK1 expression. Treatment with epidermal growth factor or insulin-like growth factor 1 induces the binding of ERK1/2 to TK1 and subsequent TK1 S13/231 phosphorylation by ERK1/2. This modification recruits ubiquitin carboxyl-terminal hydrolase 9X to deubiquitylate TK1, preventing its proteasomal degradation. Stabilized TK1 not only enhances its enzyme activity-dependent deoxythymidine monophosphate production for DNA synthesis but also promotes glycolysis independently of its enzymatic activity by upregulating phosphofructokinase/fructose bisphosphatase type 3 expression. This dual role of TK1 drives the proliferation of human hepatocellular carcinoma cells and liver tumor growth in mice. Our findings reveal a crucial mechanism by which growth factors promote tumor development through TK1-mediated DNA synthesis and glycolysis and highlight TK1 as a potential molecular target for cancer treatment.

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