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首页> 外文期刊>Journal of Mathematical Biology >Mathematical modelling of stem cell differentiation: the PU.1–GATA-1 interaction
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Mathematical modelling of stem cell differentiation: the PU.1–GATA-1 interaction

机译:干细胞分化的数学模型:PU.1-GATA-1相互作用

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The transcription factors PU.1 and GATA-1 are known to be important in the development of blood progenitor cells. Specifically they are thought to regulate the differentiation of progenitor cells into the granulocyte/macrophage lineage and the erythrocyte/megakaryocite lineage. While several mathematical models have been proposed to investigate the interaction between the transcription factors in recent years, there is still debate about the nature of the progenitor state in the dynamical system, and whether the existing models adequately capture new knowledge about the interactions gleaned from experimental data. Further, the models utilise different formalisms to represent the genetic regulation, and it appears that the resulting dynamical system depends upon which formalism is adopted. In this paper we analyse the four existing models, and propose an alternative model which is shown to demonstrate a rich variety of dynamical systems behaviours found across the existing models, including both bistability and tristability required for modelling the undifferentiated progenitors.
机译:已知转录因子PU.1和GATA-1在血液祖细胞的发育中很重要。具体而言,它们被认为调节祖细胞向粒细胞/巨噬细胞谱系和红细胞/巨核球菌谱系的分化。尽管近年来提出了几种数学模型来研究转录因子之间的相互作用,但仍存在关于动力学系统中祖细胞状态的性质以及现有模型是否能充分捕获有关实验中收集到的相互作用的新知识的争论。数据。此外,模型利用不同的形式主义来表示遗传调控,并且似乎所产生的动力系统取决于采用哪种形式主义。在本文中,我们分析了四个现有模型,并提出了一个替代模型,该模型显示了在现有模型中发现的多种动力学系统行为,包括对未分化祖细胞进行建模所需的双稳态和三稳定性。

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