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瓦伯格效应的进化动力学:糖酵解作为癌细胞间的集体行动问题

Evolutionary dynamics of the Warburg effect: glycolysis as a collective action problem among cancer cells.

作者信息

Archetti Marco

机构信息

School of Biological Sciences, University of East Anglia, Norwich Research Park, Norwich NR4 7TJ, UK.

出版信息

J Theor Biol. 2014 Jan 21;341:1-8. doi: 10.1016/j.jtbi.2013.09.017. Epub 2013 Sep 27.

Abstract

The upregulation of glycolysis in cancer cells (the "Warburg effect") is common and has implications for prognosis and treatment. As it is energetically inefficient under adequate oxygen supply, its adaptive value for a tumor remains unclear. It has been suggested that the acidity produced by glycolysis is beneficial for cancer cells because it promotes proliferation against normal cells. Current models of this acid-mediated tumor invasion hypothesis, however, do not account for increased glycolysis under non-limiting oxygen concentrations and therefore do not fully explain the Warburg effect. Here I show that the Warburg effect can be explained as a form of cooperation among cancer cells, in which the products of glycolysis act as a public good, even when oxygen supply is high enough to make glycolysis energetically inefficient. A multiplayer game with non-linear, non-monotonic payoff functions that models the benefits of the acidity induced by glycolysis reveals that clonal selection can stabilize glycolysis even when energetically costly, that is, under non-limiting oxygen concentration. Characterizing the evolutionary dynamics of glycolysis reveals cases in which anti-cancer therapies that rely on the modification of acidity can be effective.

摘要

癌细胞中糖酵解的上调(“瓦伯格效应”)很常见,且对预后和治疗有影响。由于在充足的氧气供应下其能量利用效率低下,其对肿瘤的适应性价值仍不清楚。有人提出,糖酵解产生的酸性环境对癌细胞有益,因为它促进癌细胞相对于正常细胞的增殖。然而,目前这种酸介导的肿瘤侵袭假说模型并未考虑在非限制性氧浓度下糖酵解的增加,因此不能完全解释瓦伯格效应。在此我表明,瓦伯格效应可以解释为癌细胞之间的一种合作形式,其中糖酵解产物充当公共物品,即使氧气供应充足到足以使糖酵解在能量上效率低下。一个具有非线性、非单调收益函数的多人博弈模型,模拟了糖酵解诱导的酸性环境的益处,该模型表明,克隆选择可以使糖酵解稳定下来,即使在能量成本高昂的情况下,即在非限制性氧浓度下。对糖酵解的进化动力学进行表征,揭示了依赖于改变酸性环境的抗癌疗法可能有效的情况。

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