Hepatobiliary Center, The First Affiliated Hospital of Nanjing Medical University, Key Laboratory of Liver Transplantation, Chinese Academy of Medical Sciences, NHC Key Laboratory of Living Donor Liver Transplantation, Nanjing, China.
School of Medicine, Southeast University, Nanjing, China.
Hepatology. 2019 Oct;70(4):1298-1316. doi: 10.1002/hep.30671. Epub 2019 May 28.
Glucose metabolism reprogramming, which is a well-established characteristic of multiple cancers, demands a higher rate of glycolysis to meet the increasing demands for macromolecular synthesis and to maintain rapid proliferation in a hypoxic environment. However, the mechanism underlying this switch remains to be elucidated. In this study, we investigated the function of circular RNA MAT2B (circMAT2B) in hepatocellular carcinoma (HCC) glucose metabolism reprogramming and malignancy. CircMAT2B was identified by bioinformatics analysis of Gene Expression Omnibus data sets. CircMAT2B expression was up-regulated in HCC tissues and cell lines. HCC patients with high circMAT2B expression had shortened overall survival. We analyzed the positive correlation between glycolysis and circMAT2B expression in HCC using a maximum standardized uptake value determined by preoperative positron emission tomography/computed tomography scanning combined with high-performance liquid chromatography assessment of the metabolites of glycolysis and the citric acid cycle. The effect of circMAT2B on glycolysis was validated in vitro and in vivo under hypoxic (1% O ) conditions. Functional assays were performed in HCC cells, HCC organoids, and nude mice to explore the tumor-promoting roles of circMAT2B in HCC. Biotin-coupled probe pull-down assays, biotin-coupled microRNA capture, luciferase reporter assays, fluorescence in situ hybridization, and RNA immunoprecipitation assays were performed to confirm the interaction among different RNAs. Mechanistically, we demonstrated that circMAT2B up-regulated expression levels of the microRNA (miR)-338-3p target gene PKM2, which encodes a key enzyme in the process of glycolysis, through "sponging" miR-338-3p; thus, glycolysis and HCC progression are promoted through this mechanism. Conclusion: CircMAT2B promoted HCC progression by enhanced glycolysis by activating the circMAT2B/miR-338-3p/PKM2 axis under hypoxia, which may provide a therapeutic target for HCC.
葡萄糖代谢重编程是多种癌症的一个公认特征,需要更高的糖酵解速率来满足大分子合成的不断增加的需求,并在缺氧环境中维持快速增殖。然而,这种转变的机制仍有待阐明。在这项研究中,我们研究了环状 RNA MAT2B(circMAT2B)在肝细胞癌(HCC)葡萄糖代谢重编程和恶性肿瘤中的功能。通过基因表达综合数据库(GEO)数据集的生物信息学分析鉴定了 circMAT2B。circMAT2B 在 HCC 组织和细胞系中表达上调。circMAT2B 高表达的 HCC 患者总生存期缩短。我们通过术前正电子发射断层扫描/计算机断层扫描(PET/CT)扫描确定的最大标准化摄取值与糖酵解和柠檬酸循环代谢物的高效液相色谱评估相结合,分析了 HCC 中糖酵解与 circMAT2B 表达之间的正相关关系。在 1%O2 的缺氧条件下,在体外和体内验证了 circMAT2B 对糖酵解的影响。在 HCC 细胞、HCC 类器官和裸鼠中进行了功能测定,以探讨 circMAT2B 在 HCC 中的促瘤作用。采用生物素偶联探针下拉实验、生物素偶联 microRNA 捕获实验、荧光素酶报告基因实验、荧光原位杂交(FISH)和 RNA 免疫沉淀(RIP)实验证实了不同 RNA 之间的相互作用。从机制上讲,我们证明 circMAT2B 通过“海绵”miR-338-3p 上调了糖酵解过程中的关键酶 PKM2 的 microRNA(miR)-338-3p 靶基因的表达水平,从而通过该机制促进糖酵解和 HCC 进展。结论:circMAT2B 在缺氧条件下通过激活 circMAT2B/miR-338-3p/PKM2 轴促进 HCC 进展,从而增强糖酵解,这可能为 HCC 提供治疗靶点。