糖原
糖原磷酸化酶
糖原合酶
生物
磷酸戊糖途径
癌变
糖原分支酶
癌细胞
衰老
缺氧(环境)
生物化学
内分泌学
糖酵解
新陈代谢
细胞生物学
内科学
化学
癌症
氧气
医学
遗传学
有机化学
基因
作者
Elena Favaro,Karim Bensaad,Mei Chong,Daniel A. Tennant,David Ferguson,Cameron Snell,Graham Steers,Helen Turley,Jiliang Li,Ulrich L. Günther,Francesca M. Buffa,Alan McIntyre,Adrian L. Harris
出处
期刊:Cell Metabolism
[Cell Press]
日期:2012-11-21
卷期号:16 (6): 751-764
被引量:392
标识
DOI:10.1016/j.cmet.2012.10.017
摘要
Metabolic reprogramming of cancer cells provides energy and multiple intermediates critical for cell growth. Hypoxia in tumors represents a hostile environment that can encourage these transformations. We report that glycogen metabolism is upregulated in tumors in vivo and in cancer cells in vitro in response to hypoxia. In vitro, hypoxia induced an early accumulation of glycogen, followed by a gradual decline. Concordantly, glycogen synthase (GYS1) showed a rapid induction, followed by a later increase of glycogen phosphorylase (PYGL). PYGL depletion and the consequent glycogen accumulation led to increased reactive oxygen species (ROS) levels that contributed to a p53-dependent induction of senescence and markedly impaired tumorigenesis in vivo. Metabolic analyses indicated that glycogen degradation by PYGL is important for the optimal function of the pentose phosphate pathway. Thus, glycogen metabolism is a key pathway induced by hypoxia, necessary for optimal glucose utilization, which represents a targetable mechanism of metabolic adaptation.
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