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随机时滞加速基因网络中的信号传递。

Stochastic delay accelerates signaling in gene networks.

机构信息

Department of Mathematics, University of Houston, Texas, United States of America.

出版信息

PLoS Comput Biol. 2011 Nov;7(11):e1002264. doi: 10.1371/journal.pcbi.1002264. Epub 2011 Nov 10.

Abstract

The creation of protein from DNA is a dynamic process consisting of numerous reactions, such as transcription, translation and protein folding. Each of these reactions is further comprised of hundreds or thousands of sub-steps that must be completed before a protein is fully mature. Consequently, the time it takes to create a single protein depends on the number of steps in the reaction chain and the nature of each step. One way to account for these reactions in models of gene regulatory networks is to incorporate dynamical delay. However, the stochastic nature of the reactions necessary to produce protein leads to a waiting time that is randomly distributed. Here, we use queueing theory to examine the effects of such distributed delay on the propagation of information through transcriptionally regulated genetic networks. In an analytically tractable model we find that increasing the randomness in protein production delay can increase signaling speed in transcriptional networks. The effect is confirmed in stochastic simulations, and we demonstrate its impact in several common transcriptional motifs. In particular, we show that in feedforward loops signaling time and magnitude are significantly affected by distributed delay. In addition, delay has previously been shown to cause stable oscillations in circuits with negative feedback. We show that the period and the amplitude of the oscillations monotonically decrease as the variability of the delay time increases.

摘要

从 DNA 到蛋白质的合成是一个动态的过程,包含了许多反应,如转录、翻译和蛋白质折叠。这些反应中的每一个都进一步由数百或数千个亚步骤组成,这些亚步骤必须在蛋白质完全成熟之前完成。因此,合成一个蛋白质所需的时间取决于反应链中的步骤数量和每个步骤的性质。在基因调控网络的模型中,一种考虑这些反应的方法是引入动态延迟。然而,产生蛋白质所需的反应的随机性导致了随机分布的等待时间。在这里,我们使用排队论来研究这种分布延迟对转录调控遗传网络中信息传播的影响。在一个可分析的模型中,我们发现增加蛋白质产生延迟的随机性可以提高转录网络中的信号传输速度。这一效应在随机模拟中得到了证实,我们在几个常见的转录基序中证明了其影响。特别是,我们表明在正反馈回路中,信号传递时间和幅度受到分布延迟的显著影响。此外,延迟已被证明会导致具有负反馈的电路产生稳定的振荡。我们表明,随着延迟时间的可变性增加,振荡的周期和幅度单调减小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b07b/3213172/a68b3248d602/pcbi.1002264.g001.jpg

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