Jin X, Pan Y, Wang L, Zhang L, Ravichandran R, Potts P R, Jiang J, Wu H, Huang H
Department of Digestive Surgical Oncology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Department of Biochemistry and Molecular Biology, Mayo Clinic College of Medicine, Rochester, MN, USA.
Oncogenesis. 2017 Apr 10;6(4):e312. doi: 10.1038/oncsis.2017.21.
Hepatocellular carcinoma (HCC) is one of the leading cause of cancer death in the world. Fructose-1,6-biphosphatase (FBP1), a rate-limiting enzyme in gluconeogenesis, has been identified recently as a tumor suppressor in HCC and other cancer types. In this study, we demonstrated that the tripartite motif-containing protein 28 (TRIM28) binds directly to and promotes FBP1 for ubiquitination and degradation. MAGE-A3 and MAGE-C2, which are known to be overexpressed in HCC, can enhance TRIM28-dependent degradation of FBP1 by forming ubiquitin ligase complexes with TRIM28. We further showed that expression of TRIM28 increased glucose consumption and lactate production by promoting FBP1 degradation in HCC cells and that FBP1 is a key mediator of TRIM28-induced HCC growth in culture and in mice. Moreover, we demonstrated that FBP1 and TRIM28 protein levels inversely correlated in HCC patient specimens. Finally, we showed that the proteasome inhibitor bortezomib mitigated the Warburg effect by inhibiting FBP1 degradation in HCC. Collectively, our findings not only identify oncogenic MAGE-TRIM28 complex-mediated proteasome degradation of FBP1 as a key mechanism underlying downregulation of FBP1 proteins in HCC, but also reveal that MAGE-TRIM28-regulated reprogramming of cancer cell metabolism and HCC tumorigenesis is mediated, at least in part, through FBP1 degradation.
肝细胞癌(HCC)是全球癌症死亡的主要原因之一。果糖-1,6-二磷酸酶(FBP1)是糖异生中的一种限速酶,最近被确定为HCC和其他癌症类型中的肿瘤抑制因子。在本研究中,我们证明含三联基序蛋白28(TRIM28)直接结合并促进FBP1的泛素化和降解。已知在HCC中过表达的黑色素瘤相关抗原A3(MAGE-A3)和黑色素瘤相关抗原C2(MAGE-C2),可通过与TRIM28形成泛素连接酶复合物来增强TRIM28介导的FBP1降解。我们进一步表明,TRIM28的表达通过促进HCC细胞中FBP1的降解而增加葡萄糖消耗和乳酸生成,并且FBP1是TRIM28诱导的HCC在培养物和小鼠中生长的关键介质。此外,我们证明在HCC患者标本中FBP1和TRIM28蛋白水平呈负相关。最后,我们表明蛋白酶体抑制剂硼替佐米通过抑制HCC中FBP1的降解来减轻瓦伯格效应。总的来说,我们的研究结果不仅确定致癌性MAGE-TRIM28复合物介导的FBP1蛋白酶体降解是HCC中FBP1蛋白下调的关键机制,而且还揭示MAGE-TRIM28调节的癌细胞代谢重编程和HCC肿瘤发生至少部分是通过FBP1降解介导的。