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Predictive Modeling of Signaling Crosstalk during C. elegans Vulval Development

机译:秀丽隐杆线虫外阴发育过程中信号串扰的预测模型

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摘要

Caenorhabditis elegans vulval development provides an important paradigm for studying the process of cell fate determination and pattern formation during animal development. Although many genes controlling vulval cell fate specification have been identified, how they orchestrate themselves to generate a robust and invariant pattern of cell fates is not yet completely understood. Here, we have developed a dynamic computational model incorporating the current mechanistic understanding of gene interactions during this patterning process. A key feature of our model is the inclusion of multiple modes of crosstalk between the epidermal growth factor receptor (EGFR) and LIN-12/Notch signaling pathways, which together determine the fates of the six vulval precursor cells (VPCs). Computational analysis, using the model-checking technique, provides new biological insights into the regulatory network governing VPC fate specification and predicts novel negative feedback loops. In addition, our analysis shows that most mutations affecting vulval development lead to stable fate patterns in spite of variations in synchronicity between VPCs. Computational searches for the basis of this robustness show that a sequential activation of the EGFR-mediated inductive signaling and LIN-12 / Notch-mediated lateral signaling pathways is key to achieve a stable cell fate pattern. We demonstrate experimentally a time-delay between the activation of the inductive and lateral signaling pathways in wild-type animals and the loss of sequential signaling in mutants showing unstable fate patterns; thus, validating two key predictions provided by our modeling work. The insights gained by our modeling study further substantiate the usefulness of executing and analyzing mechanistic models to investigate complex biological behaviors.
机译:秀丽隐杆线虫的外阴发育为研究动物发育过程中细胞命运确定和模式形成的过程提供了重要的范例。尽管已经确定了许多控制外阴细胞命运规范的基因,但它们如何编排以产生稳健而不变的细胞命运模式尚不完全清楚。在这里,我们已经开发了一种动态计算模型,该模型结合了当前在该模式化过程中对基因相互作用的机械理解。我们模型的关键特征是表皮生长因子受体(EGFR)与LIN-12 / Notch信号通路之间存在多种串扰模式,共同决定了六个外阴前体细胞(VPC)的命运。使用模型检查技术的计算分析为控制VPC命运规范的监管网络提供了新的生物学见解,并预测了新的负反馈回路。此外,我们的分析表明,尽管VPC之间的同步性有所变化,但大多数影响外阴发育的突变都会导致稳定的命运模式。对这种鲁棒性的基础进行的计算研究表明,EGFR介导的诱导信号转导和LIN-12 / Notch介导的横向信号转导通路的顺序激活是获得稳定细胞命运模式的关键。我们在实验上证明了在野生型动物的感应信号和侧向信号通路的激活与突变体显示出不稳定的命运模式之间的顺序性信号丢失之间存在时间延迟。因此,验证了我们建模工作提供的两个关键预测。我们通过建模研究获得的见解进一步证实了执行和分析机制模型以调查复杂的生物学行为的有用性。

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