a State Key Laboratory of Oncology in South China, Collaborative Innovation Center for Cancer Medicine, Cancer Center, Sun Yat-sen University , Guangzhou , China.
b Department of Respiratory Disease , Daping Hospital, Army Medical University , Chongqing , China.
Autophagy. 2018;14(4):671-684. doi: 10.1080/15548627.2017.1381804. Epub 2017 Dec 17.
Impaired macroautophagy/autophagy and high levels of glycolysis are prevalent in liver cancer. However, it remains unknown whether there is a regulatory relationship between autophagy and glycolytic metabolism. In this study, by utilizing cancer cells with basal or impaired autophagic flux, we demonstrated that glycolytic activity is negatively correlated with autophagy level. The autophagic degradation of HK2 (hexokinase 2), a crucial glycolytic enzyme catalyzing the conversion of glucose to glucose-6-phosphate, was found to be involved in the regulation of glycolysis by autophagy. The Lys63-linked ubiquitination of HK2 catalyzed by the E3 ligase TRAF6 was critical for the subsequent recognition of HK2 by the autophagy receptor protein SQSTM1/p62 for the process of selective autophagic degradation. In a tissue microarray of human liver cancer, the combination of high HK2 expression and high SQSTM1 expression was shown to have biological and prognostic significance. Furthermore, 3-BrPA, a pyruvate analog targeting HK2, significantly decreased the growth of autophagy-impaired tumors in vitro and in vivo (p < 0.05). By demonstrating the regulation of glycolysis by autophagy through the TRAF6- and SQSTM1-mediated ubiquitination system, our study may open an avenue for developing a glycolysis-targeting therapeutic intervention for treatment of autophagy-impaired liver cancer.
肝癌中普遍存在宏观自噬/自噬受损和糖酵解水平升高的现象。然而,自噬和糖代谢之间是否存在调节关系仍不清楚。在这项研究中,我们利用具有基础或受损自噬流的癌细胞,证明糖酵解活性与自噬水平呈负相关。发现作为关键糖酵解酶的 HK2(己糖激酶 2)的自噬降解参与了自噬对糖酵解的调节。E3 连接酶 TRAF6 催化的 HK2 的 Lys63 连接泛素化对于随后由自噬受体蛋白 SQSTM1/p62 对 HK2 进行选择性自噬降解的过程至关重要。在人肝癌组织微阵列中,高 HK2 表达和高 SQSTM1 表达的组合具有生物学和预后意义。此外,靶向 HK2 的丙酮酸类似物 3-BrPA 显著降低了体外和体内自噬受损肿瘤的生长(p<0.05)。通过证明自噬通过 TRAF6 和 SQSTM1 介导的泛素化系统调节糖酵解,我们的研究可能为开发针对自噬受损肝癌的糖酵解靶向治疗干预提供了新途径。