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癌症代谢的分子基础与瓦伯格效应简介。

Introduction to the molecular basis of cancer metabolism and the Warburg effect.

作者信息

Ngo Darleen C, Ververis Katherine, Tortorella Stephanie M, Karagiannis Tom C

机构信息

Epigenomic Medicine, The Alfred Medical Research and Education Precinct, Baker IDI Heart and Diabetes Institute, 75 Commercial Road, Melbourne, VIC, Australia.

出版信息

Mol Biol Rep. 2015 Apr;42(4):819-23. doi: 10.1007/s11033-015-3857-y.

Abstract

In differentiated normal cells, the conventional route of glucose metabolism involves glycolysis, followed by the citric acid cycle and electron transport chain to generate usable energy in the form of adenosine triphosphate (ATP). This occurs in the presence of oxygen. In hypoxic conditions, normal cells undergo anaerobic glycolysis to yield significantly less energy producing lactate as a product. As first highlighted in the 1920s by Otto Warburg, the metabolism exhibited by tumor cells involves an increased rate of aerobic glycolysis, known as the Warburg effect. In aerobic glycolysis, pyruvate molecules yielded from glycolysis are converted into fewer molecules of ATP even in the presence of oxygen. Evidence indicates that the reasons as to why tumor cells undergo aerobic glycolysis include: (1) the shift in priority to accumulate biomass rather than energy production, (2) the evasion of apoptosis as fewer reactive oxygen species are released by the mitochondria and (3) the production of lactate to further fuel growth of tumors. In this mini-review we discuss emerging molecular aspects of cancer metabolism and the Warburg effect. Aspects of the Warburg effect are analyzed in the context of the established hallmarks of cancer including the role of oncogenes and tumor suppressor genes.

摘要

在分化正常的细胞中,葡萄糖代谢的传统途径包括糖酵解,随后是柠檬酸循环和电子传递链,以生成三磷酸腺苷(ATP)形式的可用能量。这一过程在有氧条件下发生。在缺氧条件下,正常细胞进行无氧糖酵解,产生的能量显著减少,产物为乳酸。正如奥托·瓦尔堡在20世纪20年代首次强调的那样,肿瘤细胞表现出的代谢特征是有氧糖酵解速率增加,即所谓的瓦尔堡效应。在有氧糖酵解中,即使在有氧的情况下,糖酵解产生的丙酮酸分子转化生成的ATP分子数量也较少。有证据表明,肿瘤细胞进行有氧糖酵解的原因包括:(1)优先积累生物量而非产生能量;(2)由于线粒体释放的活性氧较少而逃避细胞凋亡;(3)产生乳酸以进一步促进肿瘤生长。在这篇小型综述中,我们讨论了癌症代谢和瓦尔堡效应的新出现的分子层面。我们在已确立的癌症特征背景下分析了瓦尔堡效应的各个方面,包括癌基因和肿瘤抑制基因的作用。

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