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首页> 外文期刊>Journal of the Royal Society Interface >Negative feedback self-regulation contributes to robust and high-fidelity transmembrane signal transduction
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Negative feedback self-regulation contributes to robust and high-fidelity transmembrane signal transduction

机译:负反馈自我调节有助于实现坚固和高保真的跨膜信号转导

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摘要

We present a minimal motif model for transmembrane cell signalling. The model assumes signalling events taking place in spatially distributed nano-clusters regulated by a birth/death dynamics. The combination of these spatio-temporal aspects can be modulated to provide a robust and high-fidelity response behaviour without invoking sophisticated modelling of the signalling process as a sequence of cascade reactions and fine-tuned parameters. Our results show that the fact that the distributed signalling events take place in nanoclusters with a finite lifetime regulated by local production is sufficient to obtain a robust and high-fidelity response.
机译:我们提出跨膜细胞信号传递的最小母题模型。该模型假定信号事件发生在由出生/死亡动力学调节的空间分布的纳米簇中。可以对这些时空方面的组合进行调制,以提供鲁棒的和高保真的响应行为,而无需调用信号过程的复杂建模作为一系列级联反应和精细调整的参数。我们的结果表明,分布的信号事件发生在纳米团簇中,该团簇的寿命受到本地生产的限制,这一事实足以获得鲁棒且高保真的响应。

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