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Mathematical Modelling of Cell-Fate Decision in Response to Death Receptor Engagement

机译:响应死亡受体参与的细胞命运决定的数学模型

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摘要

Cytokines such as TNF and FASL can trigger death or survival depending on cell lines and cellular conditions. The mechanistic details of how a cell chooses among these cell fates are still unclear. The understanding of these processes is important since they are altered in many diseases, including cancer and AIDS. Using a discrete modelling formalism, we present a mathematical model of cell fate decision recapitulating and integrating the most consistent facts extracted from the literature. This model provides a generic high-level view of the interplays between NFκB pro-survival pathway, RIP1-dependent necrosis, and the apoptosis pathway in response to death receptor-mediated signals. Wild type simulations demonstrate robust segregation of cellular responses to receptor engagement. Model simulations recapitulate documented phenotypes of protein knockdowns and enable the prediction of the effects of novel knockdowns. In silico experiments simulate the outcomes following ligand removal at different stages, and suggest experimental approaches to further validate and specialise the model for particular cell types. We also propose a reduced conceptual model implementing the logic of the decision process. This analysis gives specific predictions regarding cross-talks between the three pathways, as well as the transient role of RIP1 protein in necrosis, and confirms the phenotypes of novel perturbations. Our wild type and mutant simulations provide novel insights to restore apoptosis in defective cells. The model analysis expands our understanding of how cell fate decision is made. Moreover, our current model can be used to assess contradictory or controversial data from the literature. Ultimately, it constitutes a valuable reasoning tool to delineate novel experiments.
机译:取决于细胞系和细胞状况,诸如TNF和FASL的细胞因子可触发死亡或存活。细胞如何在这些细胞命运中进行选择的机制细节仍不清楚。对这些过程的理解很重要,因为它们在包括癌症和艾滋病在内的许多疾病中都已改变。使用离散建模形式主义,我们提出了细胞命运决策的数学模型,概括并整合了从文献中提取的最一致的事实。该模型提供了对NFκB促存活途径,RIP1依赖性坏死和细胞凋亡途径对死亡受体介导的信号反应之间相互作用的通用高级视图。野生型模拟表明细胞对受体参与反应的稳健隔离。模型仿真概括了蛋白质击倒的已记录表型,并能够预测新型击倒的影响。计算机模拟实验模拟了在不同阶段去除配体后的结果,并提出了针对特定细胞类型进一步验证和专门化模型的实验方法。我们还提出了一种简化的概念模型,用于执行决策过程的逻辑。这项分析给出了关于三种途径之间的串扰以及RIP1蛋白在坏死中的瞬时作用的具体预测,并证实了新型扰动的表型。我们的野生型和突变体模拟提供了恢复缺陷细胞凋亡的新见解。模型分析扩展了我们对细胞命运决定方式的理解。而且,我们当前的模型可以用来评估来自文献的矛盾或有争议的数据。最终,它构成了描述新颖实验的有价值的推理工具。

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