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Cell++ - Simulating biochemical pathways

机译:Cell ++-模拟生化途径

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Motivation: With the generation of a wealth of information, detailing cellular components, their functions and interactions, there is a growing need for the development of new computational tools capable of interpreting these data within spatial and dynamic contexts. Here, we introduce Cell++, a novel stochastic simulation environment with the capacity to study a wide variety of biochemical processes within a spatial context. Results: Focusing on three case studies, we highlight the potential impact of spatial organization in the evolution and engineering of signaling and metabolic pathways. In addition to altering signaling and metabolic efficiency, simulations also demonstrated features consistent with the phenomenon of metabolic channeling.
机译:动机:随着大量信息的产生,详细介绍了细胞成分,它们的功能和相互作用,对开发能够在空间和动态环境中解释这些数据的新计算工具的需求日益增长。在这里,我们介绍Cell ++,这是一种新颖的随机模拟环境,能够在空间范围内研究各种生化过程。结果:以三个案例研究为重点,我们重点介绍了空间组织对信号传导和代谢途径的进化和工程化的潜在影响。除了改变信号传导和代谢效率,模拟还证明了与代谢通道现象一致的特征。

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