Shulman Robert G, Rothman Douglas L
Departments of Radiology and Biomedical Engineering, Magnetic Resonance Research Center, Yale University School of Medicine, New Haven, CT 06520, USA.
Departments of Radiology and Biomedical Engineering, Magnetic Resonance Research Center, Yale University School of Medicine, New Haven, CT 06520, USA.
Trends Cancer. 2017 Nov;3(11):761-767. doi: 10.1016/j.trecan.2017.09.007. Epub 2017 Nov 6.
Despite many decades of study there is a lack of a quantitative explanation for the Warburg effect in cancer. We propose that the glycogen shunt, a pathway recently shown to be critical for cancer cell survival, may explain the excess lactate generation under aerobic conditions characteristic of the Warburg effect. The proposal is based on research on yeast and mammalian muscle and brain that demonstrates that the glycogen shunt functions to maintain homeostasis of glycolytic intermediates and ATP during large shifts in glucose supply or demand. Loss of the glycogen shunt leads to cell death under substrate stress. Similarities between the glycogen shunt in yeast and cancer cells lead us here to propose a parallel explanation of the lactate produced by cancer cells in the Warburg effect. The model also explains the need for the active tetramer and inactive dimer forms of pyruvate kinase (PKM2) in cancer cells, similar to the two forms of Pyk2p in yeast, as critical for regulating the glycogen shunt flux. The novel role proposed for the glycogen shunt implicates the high activities of glycogen synthase and fructose bisphosphatase in tumors as potential targets for therapy.
尽管经过了数十年的研究,但对于癌症中的瓦博格效应仍缺乏定量解释。我们提出,糖原分流途径(最近被证明对癌细胞存活至关重要)可能解释了瓦博格效应所特有的有氧条件下过量乳酸生成的现象。该提议基于对酵母以及哺乳动物肌肉和大脑的研究,这些研究表明,糖原分流途径在葡萄糖供应或需求大幅变化期间,起着维持糖酵解中间产物和ATP稳态的作用。糖原分流途径的缺失会导致在底物应激情况下细胞死亡。酵母和癌细胞中糖原分流途径的相似性使我们在此提出对癌细胞在瓦博格效应中产生乳酸的一种类似解释。该模型还解释了癌细胞中丙酮酸激酶(PKM2)的活性四聚体和无活性二聚体形式的必要性,类似于酵母中的两种Pyk2p形式,这对于调节糖原分流通量至关重要。为糖原分流途径提出的新作用表明,肿瘤中糖原合酶和果糖双磷酸酶的高活性是潜在的治疗靶点。