Goldbeter Albert
Unité de Chronobiologie théorique, Faculté des Sciences, Université Libre de Bruxelles, Campus Plaine, CP 231, B-1050 Brussels, Belgium.
Nature. 2002 Nov 14;420(6912):238-45. doi: 10.1038/nature01259.
Oscillations arise in genetic and metabolic networks as a result of various modes of cellular regulation. In view of the large number of variables involved and of the complexity of feedback processes that generate oscillations, mathematical models and numerical simulations are needed to fully grasp the molecular mechanisms and functions of biological rhythms. Models are also necessary to comprehend the transition from simple to complex oscillatory behaviour and to delineate the conditions under which they arise. Examples ranging from calcium oscillations to pulsatile intercellular communication and circadian rhythms illustrate how computational biology contributes to clarify the molecular and dynamical bases of cellular rhythms.
由于细胞调节的各种模式,遗传和代谢网络中会出现振荡。鉴于所涉及的大量变量以及产生振荡的反馈过程的复杂性,需要数学模型和数值模拟来全面理解生物节律的分子机制和功能。模型对于理解从简单振荡行为到复杂振荡行为的转变以及描绘其出现的条件也是必要的。从钙振荡到脉动性细胞间通讯以及昼夜节律等例子说明了计算生物学如何有助于阐明细胞节律的分子和动力学基础。