Faculty of Biology, Department of Biochemistry and Molecular Biology, Universitat de Barcelona, Barcelona, Spain.
Pharmacol Ther. 2013 May;138(2):255-71. doi: 10.1016/j.pharmthera.2013.01.011. Epub 2013 Jan 26.
Cell proliferation is an essential mechanism for growth, development and regeneration of eukaryotic organisms; however, it is also the cause of one of the most devastating diseases of our era: cancer. Given the relevance of the processes in which cell proliferation is involved, its regulation is of paramount importance for multicellular organisms. Cell division is orchestrated by a complex network of interactions between proteins, metabolism and microenvironment including several signaling pathways and mechanisms of control aiming to enable cell proliferation only in response to specific stimuli and under adequate conditions. Three main players have been identified in the coordinated variation of the many molecules that play a role in cell cycle: i) The cell cycle protein machinery including cyclin-dependent kinases (CDK)-cyclin complexes and related kinases, ii) The metabolic enzymes and related metabolites and iii) The reactive-oxygen species (ROS) and cellular redox status. The role of these key players and the interaction between oscillatory and non-oscillatory species have proved essential for driving the cell cycle. Moreover, cancer development has been associated to defects in all of them. Here, we provide an overview on the role of CDK-cyclin complexes, metabolic adaptations and oxidative stress in regulating progression through each cell cycle phase and transitions between them. Thus, new approaches for the design of innovative cancer therapies targeting crosstalk between cell cycle simultaneous events are proposed.
细胞增殖是真核生物生长、发育和再生的基本机制;然而,它也是我们这个时代最具破坏性疾病之一的原因:癌症。鉴于细胞增殖所涉及的过程的相关性,其调控对多细胞生物至关重要。细胞分裂是由蛋白质、代谢和微环境之间的复杂相互作用网络协调的,包括几个信号通路和控制机制,旨在仅在响应特定刺激和在适当条件下才使细胞增殖。在协调许多在细胞周期中发挥作用的分子的变化方面,已经确定了三个主要参与者:i)细胞周期蛋白机器,包括周期蛋白依赖性激酶(CDK)-周期蛋白复合物和相关激酶,ii)代谢酶和相关代谢物,以及 iii)活性氧(ROS)和细胞氧化还原状态。这些关键参与者的作用以及振荡和非振荡物质之间的相互作用已被证明对驱动细胞周期至关重要。此外,癌症的发展与它们中的所有缺陷都有关。在这里,我们概述了 CDK-周期蛋白复合物、代谢适应和氧化应激在调节每个细胞周期阶段的进展以及它们之间的过渡中的作用。因此,提出了针对细胞周期同时事件之间串扰的创新癌症治疗方法的设计新方法。