Department of Cancer and Cell Biology, University of Cincinnati, Cincinnati, Ohio 45267, USA.
Endocr Relat Cancer. 2010 Sep 23;17(4):R287-304. doi: 10.1677/ERC-10-0106. Print 2010 Dec.
Cancer biologists' search for new chemotherapy targets is reinvigorating the study of how cancer cell metabolism determines both oncogenic potential and chemotherapeutic responses. Oncogenic metabolic programs support the bioenergetics associated with resistance to programed cell death and provide biosynthetic building blocks for cell growth and mitogenesis. Both signal transduction pathway activation and direct mutations in key metabolic enzymes can activate the metabolic programs that support cancer cell growth. Cancer-associated metabolic programs include glycolysis, glutamine oxidation, and fatty acid metabolism. Recent observations are revealing the regulatory mechanisms that activate cancer-associated metabolism, and the competitive advantages provided to transformed cells by their metabolic programs. In this study, we review recent results illustrating the mechanisms and functional impact of each of these oncogenic metabolic programs in cancer cell growth and survival.
癌症生物学家对新的化疗靶点的研究正在重新激发人们对癌细胞代谢如何决定致癌潜力和化疗反应的研究。致癌代谢程序支持与抵抗程序性细胞死亡相关的生物能量,并为细胞生长和有丝分裂提供生物合成构建块。信号转导途径的激活和关键代谢酶的直接突变都可以激活支持癌细胞生长的代谢程序。与癌症相关的代谢程序包括糖酵解、谷氨酰胺氧化和脂肪酸代谢。最近的观察结果揭示了激活与癌症相关的代谢的调节机制,以及代谢程序为转化细胞提供的竞争优势。在这项研究中,我们回顾了最近的结果,说明了这些致癌代谢程序在癌细胞生长和存活中的机制和功能影响。