Cancer metabolism and tumor microenvironment: fostering each other?

癌细胞 肿瘤微环境 生物 癌症 细胞生物学 瓦博格效应 表观遗传学 微泡 代谢途径 细胞信号 细胞生长 信号转导 癌症研究 小RNA 新陈代谢 生物化学 遗传学 基因
作者
Yiyuan Yuan,Huimin Li,Pu Wang,Leilei Chen,Dong Guo,Hongfei Jiang,Bo He,Siyuan Qin,Kui Wang,Na Li,Jingwei Feng,Jing Wen,Shipeng Cheng,Yaguang Zhang,Weiwei Yang,Dan Ye,Zhimin Lu,Canhua Huang,Jun Mei,Huafeng Zhang
出处
期刊:Science China-life Sciences [Springer Science+Business Media]
卷期号:65 (2): 236-279 被引量:128
标识
DOI:10.1007/s11427-021-1999-2
摘要

The changes associated with malignancy are not only in cancer cells but also in environment in which cancer cells live. Metabolic reprogramming supports tumor cell high demand of biogenesis for their rapid proliferation, and helps tumor cell to survive under certain genetic or environmental stresses. Emerging evidence suggests that metabolic alteration is ultimately and tightly associated with genetic changes, in particular the dysregulation of key oncogenic and tumor suppressive signaling pathways. Cancer cells activate HIF signaling even in the presence of oxygen and in the absence of growth factor stimulation. This cancer metabolic phenotype, described firstly by German physiologist Otto Warburg, insures enhanced glycolytic metabolism for the biosynthesis of macromolecules. The conception of metabolite signaling, i.e., metabolites are regulators of cell signaling, provides novel insights into how reactive oxygen species (ROS) and other metabolites deregulation may regulate redox homeostasis, epigenetics, and proliferation of cancer cells. Moreover, the unveiling of noncanonical functions of metabolic enzymes, such as the moonlighting functions of phosphoglycerate kinase 1 (PGK1), reassures the importance of metabolism in cancer development. The metabolic, microRNAs, and ncRNAs alterations in cancer cells can be sorted and delivered either to intercellular matrix or to cancer adjacent cells to shape cancer microenvironment via media such as exosome. Among them, cancer microenvironmental cells are immune cells which exert profound effects on cancer cells. Understanding of all these processes is a prerequisite for the development of a more effective strategy to contain cancers.
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