*Instituto de Bioquímica Médica, Centro de Ciências da Saúde, Universidade Federal do Rio de Janeiro, Cidade Universitária, Av, Carlos Chagas Filho 373, Ilha do Fundão CEP 21941-590, Rio de Janeiro, Brazil.
Biosci Rep. 2013 Nov 15;33(6):e00080. doi: 10.1042/BSR20130066.
Tumour cells thrive in environments that would be hostile to their normal cell counterparts. Survival depends on the selection of cell lines that harbour modifications of both, gene regulation that shifts the balance between the cell cycle and apoptosis and those that involve the plasticity of the metabolic machinery. With regards to metabolism, the selected phenotypes usually display enhanced anaerobic glycolysis even in the presence of oxygen, the so-called Warburg effect, and anabolic pathways that provide precursors for the synthesis of lipids, proteins and DNA. The review will discuss the original ideas of Otto Warburg and how they initially led to the notion that mitochondria of tumour cells were dysfunctional. Data will be presented to show that not only the organelles are viable and respiring, but that they are key players in tumorigenesis and metastasis. Likewise, interconnecting pathways that stand out in the tumour phenotype and that require intact mitochondria such as glutaminolysis will be addressed. Furthermore, comments will be made as to how the peculiarities of the biochemistry of tumour cells renders them amenable to new forms of treatment by highlighting possible targets for inhibitors. In this respect, a case study describing the effect of a metabolite analogue, the alkylating agent 3BP (3-bromopyruvate), on glycolytic enzyme targets will be presented.
肿瘤细胞在通常不利于其正常细胞对应物的环境中茁壮成长。生存取决于选择那些具有基因调控改变的细胞系,这种改变会改变细胞周期和细胞凋亡之间的平衡,以及涉及代谢机制可塑性的改变。在代谢方面,选择的表型通常表现出增强的无氧糖酵解,即使在有氧气的情况下,也就是所谓的瓦伯格效应,以及合成脂质、蛋白质和 DNA 的前体提供的合成代谢途径。这篇综述将讨论奥托·瓦伯格的原始思想,以及它们最初如何导致肿瘤细胞的线粒体功能失调的观点。将提供数据表明,不仅细胞器是可行的和呼吸的,而且它们是肿瘤发生和转移的关键因素。同样,将涉及连接途径,这些途径在肿瘤表型中突出,并且需要完整的线粒体,如谷氨酰胺分解代谢,将被解决。此外,还将对肿瘤细胞的生物化学特性如何使它们容易受到新的治疗形式的影响进行评论,突出可能的抑制剂靶标。在这方面,将提出一个描述代谢物类似物、烷化剂 3BP(3-溴丙酮酸)对糖酵解酶靶标的影响的案例研究。