Laurent M, Kellershohn N
Imagerie et Dynamique Cellulaires, UPRESA 8080 CNRS, Université Paris-Sud, 91405 Orsay Cedex, France.
Trends Biochem Sci. 1999 Nov;24(11):418-22. doi: 10.1016/s0968-0004(99)01473-5.
Very simple biochemical systems regulated at the level of gene expression or protein function are capable of complex dynamic behaviour. Among the various patterns of regulation associated with non-linear kinetics, multistability, which corresponds to a true switch between alternate steady states, allows a graded signal to be turned into a discontinuous evolution of the system along several possible distinct pathways, which can be either reversible or irreversible. Multistability plays a significant role in some of the basic processes of life. It might account for maintenance of phenotypic differences in the absence of genetic or environmental differences, as has been demonstrated experimentally for the regulation of the lactose operon in Escherichia coli. Cell differentiation might also be explained as multistability.
在基因表达或蛋白质功能水平受到调控的非常简单的生化系统能够呈现复杂的动态行为。在与非线性动力学相关的各种调控模式中,多稳态对应于交替稳态之间的真正切换,它能使一个分级信号沿着几种可能的不同途径转变为系统的不连续演化,这些途径可以是可逆的,也可以是不可逆的。多稳态在一些基本生命过程中起着重要作用。它可能解释了在没有遗传或环境差异的情况下表型差异的维持,正如在大肠杆菌乳糖操纵子调控的实验中所证明的那样。细胞分化也可能被解释为多稳态。