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Cell Commitment Motif Composed of progenitor-specific TF and Fate-Decision Motif

机译:细胞承诺主题由祖先特异性TF和命运决策主题组成

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Mutual-inhibition motif is frequently-occuring motif in transcriptional regulatory networks for cell lineage commitment. Stable attractors represent cell commitment state. But how progenitor-specific transcription factors stabilize progenitor cells and commit them to different cell fates remains unexplained. In this paper we represent the motif for cell commitment, composed of mutual-inhibition motif and progenitor-specific transcription factor, and develop associated mathematical model. In the analysis of bifurcation and dynamical simulation, the model could exhibit multiple steady stable states and transition between them, cooresponding to progenitor, committed cell state and different commitment processes. Furthermore, we demonstrate that different commitment patterns, for example that of hematopoitic stem cell and neural stem cell, could be represented with different bifurcation features.
机译:互抑制基序通常是用于细胞谱系承诺的转录调节网络中的基序。稳定的吸引子代表细胞承诺状态。但是,祖先的特异性转录因子如何稳定祖细胞并将它们犯下不同的细胞命名仍然是未解释的。在本文中,我们代表了由互抑制基序和祖细胞特异性转录因子组成的细胞承诺的主题,并发展相关的数学模型。在分析分叉和动态模拟中,该模型可以在它们之间表现出多个稳定的稳定状态和转变,与祖先,犯罪,细胞状态和不同承诺过程相对应。此外,我们证明了不同的承诺模式,例如血小杂性干细胞和神经干细胞,可以用不同的分叉特征表示。

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