Das Arya A, Jacob Elizabeth
Computational Modelling and Simulation Unit, Council of Scientific and Industrial Research, National Institute for Interdisciplinary Science and Technology (CSIR-NIIST), Thiruvananthapuram 695 019, India.
J Biosci. 2018 Jun;43(2):295-306.
The ErbB signalling pathway has been studied extensively owing to its role in normal physiology and its dysregulation in cancer. Reverse engineering by mathematical models use the reductionist approach to characterize the network components. For an emergent, system-level view of the network, we propose a data analytics pipeline that can learn from the data generated by reverse engineering and use it to re-engineer the system with an agent-based approach. Data from a kinetic model that estimates the parameters by fitting to experiments on cell lines, were encoded into rules, for the interactions of the molecular species (agents) involved in biochemical reactions. The agent model, a digital representation of the cell line system, tracks the activation of ErbB1-3 receptors on binding with ligands, resulting in their dimerization, phosphorylation, trafficking and stimulation of downstream signalling through P13-Akt and Erk pathways. The analytics pipeline has been used to mechanistically link HER expression profile to receptor dimerization and activation of downstream signalling pathways. When applied to drug studies, the efficacy of a drug can be investigated in silico. The anti-tumour activity of Pertuzumab, a monoclonal antibody that inhibits HER2 dimerization, was simulated by blocking 80% of the cellular HER2 available, to observe the effect on signal activation.
由于ErbB信号通路在正常生理学中的作用及其在癌症中的失调,该信号通路已得到广泛研究。通过数学模型进行的逆向工程采用还原论方法来表征网络组件。为了从网络的涌现性、系统层面的视角出发,我们提出了一种数据分析管道,它可以从逆向工程生成的数据中学习,并使用基于代理的方法对系统进行重新设计。一个通过拟合细胞系实验来估计参数的动力学模型所产生的数据,被编码为参与生化反应的分子物种(代理)之间相互作用的规则。代理模型是细胞系系统的数字表示,它追踪ErbB1 - 3受体与配体结合时的激活情况,导致其二聚化、磷酸化、转运以及通过P13 - Akt和Erk途径刺激下游信号传导。该分析管道已被用于从机制上把HER表达谱与受体二聚化以及下游信号通路的激活联系起来。当应用于药物研究时,可以在计算机模拟中研究药物的疗效。通过阻断80%的细胞中可用的HER2来模拟抑制HER2二聚化的单克隆抗体帕妥珠单抗的抗肿瘤活性,以观察其对信号激活的影响。