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首页> 外文期刊>Computational intelligence and neuroscience >Modelling Coupled Oscillations in the Notch, Wnt, and FGF Signaling Pathways during Somitogenesis: A Comprehensive Mathematical Model
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Modelling Coupled Oscillations in the Notch, Wnt, and FGF Signaling Pathways during Somitogenesis: A Comprehensive Mathematical Model

机译:在OVCH,WNT和FGF信号传导途径中建模耦合振荡:全面的数学模型

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摘要

Somite formation in the early stage of vertebrate embryonic development is controlled by a complicated gene network named segmentation clock, which is defined by the periodic expression of genes related to the Notch, Wnt, and the fibroblast growth factor (FGF) pathways. Although in recent years some findings about crosstalk among the Notch, Wnt, and FGF pathways in somitogenesis have been reported, the investigation of their crosstalk mechanisms from a systematic point of view is still lacking. In this study, a more comprehensive mathematical model was proposed to simulate the dynamics of the Notch, Wnt, and FGF pathways in the segmentation clock. Simulations and bifurcation analyses of this model suggested that the concentration gradients of both Wnt, and FGF signals along the presomitic mesoderm (PSM) are corresponding to the whole process from start to stop of the segmentation clock. A number of highly sensitive parameters to the segmentation clock’s oscillatory pattern were identified. By further bifurcation analyses for these sensitive parameters, and several complementary mechanisms in respect of the maintenance of the stable oscillation of the segmentation clock were revealed.
机译:脊椎动物胚胎发育早期的一项组成部分由一个分割时钟的复杂基因网络控制,其由与凹口,WNT和成纤维细胞生长因子(FGF)途径有关的基因的周期性表达来定义。据报道,近年来,据报道,近年来关于缺口,WNT和FGF途径中的串扰的一些发现,仍然缺乏对系统的观点来调查它们的串扰机制。在这项研究中,提出了一种更全面的数学模型来模拟分割时钟中凹口,WNT和FGF路径的动态。该模型的模拟和分叉分析表明,WNT和FGF信号沿预报Mesoderm(PSM)的浓度梯度与从开始到分割时钟的停止的整个过程对应。确定了分割时钟振荡模式的许多高度敏感的参数。通过进一步分析这些敏感参数的分析,并揭示了几种关于维持分割时钟稳定振荡的互补机制。

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    National Engineering Laboratory for Druggable Gene and Protein Screening;

    National Engineering Laboratory for Druggable Gene and Protein Screening;

    National Engineering Laboratory for Druggable Gene and Protein Screening;

    National Engineering Laboratory for Druggable Gene and Protein Screening;

    National Engineering Laboratory for Druggable Gene and Protein Screening;

    National Engineering Laboratory for Druggable Gene and Protein Screening;

    National Engineering Laboratory for Druggable Gene and Protein Screening;

    National Engineering Laboratory for Druggable Gene and Protein Screening;

    National Engineering Laboratory for Druggable Gene and Protein Screening;

    National Engineering Laboratory for Druggable Gene and Protein Screening;

    School of Computer Science and Information Technology;

    Research Center of Agriculture and Medicine Gene Engineering of Ministry of Education;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 寄生生物学;
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