Maan Meenu, Jaiswal Neha, Liu Min, Saavedra Harold I, Chellappan Srikumar P, Dutta Mainak
Department of Tumor Biology, H. Lee Moffitt Cancer Center and Research Institute, 12902 USF Magnolia Drive, Tampa, Florida 33612, United States.
New York University - Abu Dhabi, Abu Dhabi, P.O. Box 129188, United Arab Emirates.
J Proteome Res. 2025 Jan 3;24(1):121-133. doi: 10.1021/acs.jproteome.4c00530. Epub 2024 Dec 13.
Metabolic rewiring is required for cancer cells to survive in harsh microenvironments and is considered to be a hallmark of cancer. Specific metabolic adaptations are required for a tumor to become invasive and metastatic. Cell division and metabolism are inherently interconnected, and several cell cycle modulators directly regulate metabolism. Here, we report that TBK1, which is a noncanonical IKK kinase with known roles in cell cycle regulation and TLR signaling, affects cellular metabolism in cancer cells. While TBK1 is reported to be overexpressed in several cancers and its enhanced protein level correlates with poor prognosis, the underlying molecular mechanism involved in the tumor-promoting role of TBK1 is not fully understood. In this study, we show a novel role of TBK1 in regulating cancer cell metabolism using combined metabolomics, transcriptomics, and pharmacological approaches. We find that TBK1 mediates the regulation of nucleotide and energy metabolism through aldo-keto reductase B10 (AKRB10) and thymidine phosphorylase (TYMP) genes, suggesting that this TBK1-mediated metabolic rewiring contributes to its oncogenic function. In addition, we find that TBK1 inhibitors can act synergistically with AKRB10 and TYMP inhibitors to reduce cell viability. These findings raise the possibility that combining these inhibitors might be beneficial in combating cancers that show elevated levels of TBK1.
癌细胞要在恶劣的微环境中存活需要代谢重编程,这被认为是癌症的一个标志。肿瘤发生侵袭和转移需要特定的代谢适应。细胞分裂和代谢本质上相互关联,一些细胞周期调节因子直接调节代谢。在此,我们报告TBK1,一种在细胞周期调节和TLR信号传导中具有已知作用的非典型IKK激酶,会影响癌细胞的细胞代谢。虽然据报道TBK1在几种癌症中过表达,其蛋白水平升高与预后不良相关,但TBK1促肿瘤作用的潜在分子机制尚未完全了解。在本研究中,我们使用代谢组学、转录组学和药理学相结合的方法展示了TBK1在调节癌细胞代谢中的新作用。我们发现TBK1通过醛糖酮还原酶B10(AKRB10)和胸苷磷酸化酶(TYMP)基因介导核苷酸和能量代谢的调节,表明这种TBK1介导的代谢重编程有助于其致癌功能。此外,我们发现TBK1抑制剂可与AKRB10和TYMP抑制剂协同作用以降低细胞活力。这些发现增加了联合使用这些抑制剂可能有益于对抗TBK1水平升高的癌症的可能性。