Kofahl Bente, Klipp Edda
Humboldt University Berlin, Theoretical Biophysics, Invalidenstrasse 43, 10115 Berlin, Germany.
Yeast. 2004 Jul 30;21(10):831-50. doi: 10.1002/yea.1122.
We present a mathematical model of the dynamics of the pheromone pathways in haploid yeast cells of mating type MATa after stimulation with pheromone alpha-factor. The model consists of a set of differential equations and describes the dynamics of signal transduction from the receptor via several steps, including a G protein and a scaffold MAP kinase cascade, up to changes in the gene expression after pheromone stimulation in terms of biochemical changes (complex formations, phosphorylations, etc.). The parameters entering the models have been taken from the literature or adapted to observed time courses or behaviour. Using this model we can follow the time course of the various complex formation processes and of the phosphorylation states of the proteins involved. Furthermore, we can explain the phenotype of more than a dozen well-characterized mutants and also the graded response of yeast cells to varying concentrations of the stimulating pheromone.
我们提出了一个数学模型,用于描述在α-因子信息素刺激下,单倍体MATa型酵母细胞中信息素信号通路的动力学。该模型由一组微分方程组成,描述了从受体开始,经过包括G蛋白和支架型丝裂原活化蛋白激酶级联反应等多个步骤的信号转导动力学,直至信息素刺激后基因表达变化的生化过程(复合物形成、磷酸化等)。模型中的参数取自文献或根据观察到的时间进程或行为进行了调整。利用该模型,我们可以追踪各种复合物形成过程以及相关蛋白质磷酸化状态的时间进程。此外,我们还可以解释十几种特征明确的突变体的表型,以及酵母细胞对不同浓度刺激信息素的分级反应。