Dipartimento di Biotecnologie e Bioscienze, Università di Milano-Bicocca, Milano, Italy.
Biotechnol Adv. 2012 Jan-Feb;30(1):52-72. doi: 10.1016/j.biotechadv.2011.07.010. Epub 2011 Jul 22.
In this review we summarize the major connections between cell growth and cell cycle in the model eukaryote Saccharomyces cerevisiae. In S. cerevisiae regulation of cell cycle progression is achieved predominantly during a narrow interval in the late G1 phase known as START (Pringle and Hartwell, 1981). At START a yeast cell integrates environmental and internal signals (such as nutrient availability, presence of pheromone, attainment of a critical size, status of the metabolic machinery) and decides whether to enter a new cell cycle or to undertake an alternative developmental program. Several signaling pathways, that act to connect the nutritional status to cellular actions, are briefly outlined. A Growth & Cycle interaction network has been manually curated. More than one fifth of the edges within the Growth & Cycle network connect Growth and Cycle proteins, indicating a strong interconnection between the processes of cell growth and cell cycle. The backbone of the Growth & Cycle network is composed of middle-degree nodes suggesting that it shares some properties with HOT networks. The development of multi-scale modeling and simulation analysis will help to elucidate relevant central features of growth and cycle as well as to identify their system-level properties. Confident collaborative efforts involving different expertises will allow to construct consensus, integrated models effectively linking the processes of cell growth and cell cycle, ultimately contributing to shed more light also on diseases in which an altered proliferation ability is observed, such as cancer.
在这篇综述中,我们总结了模式真核生物酿酒酵母中细胞生长和细胞周期之间的主要联系。在酿酒酵母中,细胞周期进程的调控主要是在 G1 期晚期的一个狭窄区间(称为 START)进行的(Pringle 和 Hartwell,1981)。在 START 时,酵母细胞整合环境和内部信号(如营养可用性、存在激素、达到临界大小、代谢机制的状态),并决定是进入新的细胞周期还是进行替代的发育程序。简要概述了几个信号通路,这些通路将营养状态与细胞作用联系起来。一个生长与周期相互作用网络已经被手动整理。生长与周期网络中超过五分之一的边连接生长和周期蛋白,表明细胞生长和细胞周期之间存在很强的相互联系。生长与周期网络的骨干由中度节点组成,这表明它与 HOT 网络具有一些共同的特性。多尺度建模和模拟分析的发展将有助于阐明生长和周期的相关核心特征,并识别它们的系统级特性。涉及不同专业知识的有信心的协作努力将能够构建有效的共识综合模型,有效地将细胞生长和细胞周期的过程联系起来,最终有助于更深入地了解癌症等观察到增殖能力改变的疾病。