论文标题

在反馈引起的临界点处的多细胞感测

Multicellular sensing at a feedback-induced critical point

论文作者

Vennettilli, Michael, Erez, Amir, Mugler, Andrew

论文摘要

感觉生化网络中的反馈会导致细胞行为反应的分叉。这些分叉具有许多具有热力学关键点的特性。有证据表明,生物系统可能在这些关键点附近运行,但是这样做的功能益处仍然很少理解。在这里,我们研究了一个具有非线性反馈和多细胞通信的简单生物化学模型,以确定关键性是否在获取有关随机化学信号的信息的能力方面是否提供了功能益处。我们发现,当信号波动缓慢时,信号和细胞内读数之间的相互信息在关键时会最大化,因为高信号敏感性的益处超过了高读数噪声的损害。当细胞传达时,临界性会导致细胞中读出分子数的远距离相关性。因此,我们发现沟通增加了给定单元的读数与整个人群信号的空间平均值之间的信息。最后,我们发现,随着和没有沟通,关键性的感官益处都会与临界速度降低,以便在关键点最小化信息率,而不是信息本身。我们的结果揭示了反馈引起的多细胞感测的成本和收益。

Feedback in sensory biochemical networks can give rise to bifurcations in cells' behavioral response. These bifurcations share many properties with thermodynamic critical points. Evidence suggests that biological systems may operate near these critical points, but the functional benefit of doing so remains poorly understood. Here we investigate a simple biochemical model with nonlinear feedback and multicellular communication to determine if criticality provides a functional benefit in terms of the ability to gain information about a stochastic chemical signal. We find that when signal fluctuations are slow, the mutual information between the signal and the intracellular readout is maximized at criticality, because the benefit of high signal susceptibility outweighs the detriment of high readout noise. When cells communicate, criticality gives rise to long-range correlations in readout molecule number among cells. Consequently, we find that communication increases the information between a given cell's readout and the spatial average of the signal across the population. Finally, we find that both with and without communication, the sensory benefits of criticality compete with critical slowing down, such that the information rate, as opposed to the information itself, is minimized at the critical point. Our results reveal the costs and benefits of feedback-induced criticality for multicellular sensing.

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