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YAP/TAZ 活性在癌症代谢重编程中的作用。

The role of YAP/TAZ activity in cancer metabolic reprogramming.

机构信息

Department of General Surgery, The Fourth Affiliated Hospital of China Medical University, 4 Chongshan East Street, Shenyang, 110032, China.

Department of Gynecology, Beijing Obstetrics and Gynecology Hospital, Capital Medical University, Beijing, China.

出版信息

Mol Cancer. 2018 Sep 3;17(1):134. doi: 10.1186/s12943-018-0882-1.

Abstract

In contrast to normal cells, which use the aerobic oxidation of glucose as their main energy production method, cancer cells prefer to use anaerobic glycolysis to maintain their growth and survival, even under normoxic conditions. Such tumor cell metabolic reprogramming is regulated by factors such as hypoxia and the tumor microenvironment. In addition, dysregulation of certain signaling pathways also contributes to cancer metabolic reprogramming. Among them, the Hippo signaling pathway is a highly conserved tumor suppressor pathway. The core oncosuppressive kinase cascade of Hippo pathway inhibits the nuclear transcriptional co-activators YAP and TAZ, which are the downstream effectors of Hippo pathway and oncogenic factors in many solid cancers. YAP/TAZ function as key nodes of multiple signaling pathways and play multiple regulatory roles in cancer cells. However, their roles in cancer metabolic reprograming are less clear. In the present review, we examine progress in research into the regulatory mechanisms of YAP/TAZ on glucose metabolism, fatty acid metabolism, mevalonate metabolism, and glutamine metabolism in cancer cells. Determining the roles of YAP/TAZ in tumor energy metabolism, particularly in relation to the tumor microenvironment, will provide new strategies and targets for the selective therapy of metabolism-related cancers.

摘要

与正常细胞不同,正常细胞主要通过有氧氧化葡萄糖来产生能量,而癌细胞即使在氧合条件下,也更喜欢通过无氧糖酵解来维持其生长和存活。这种肿瘤细胞代谢重编程受缺氧和肿瘤微环境等因素的调节。此外,某些信号通路的失调也有助于癌症代谢重编程。其中,Hippo 信号通路是一种高度保守的肿瘤抑制通路。Hippo 通路的核心致癌激酶级联反应抑制核转录共激活因子 YAP 和 TAZ,它们是 Hippo 通路的下游效应因子,也是许多实体癌中的致癌因子。YAP/TAZ 作为多种信号通路的关键节点,在癌细胞中发挥多种调节作用。然而,它们在癌症代谢重编程中的作用尚不清楚。在本综述中,我们研究了 YAP/TAZ 对癌细胞中葡萄糖代谢、脂肪酸代谢、甲羟戊酸代谢和谷氨酰胺代谢的调节机制。确定 YAP/TAZ 在肿瘤能量代谢中的作用,特别是与肿瘤微环境的关系,将为代谢相关癌症的选择性治疗提供新的策略和靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63ad/6122186/561711dbe6c7/12943_2018_882_Fig1_HTML.jpg

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