Mukherji Sutapa
Department of Protein Chemistry and Technology, Central Food Technological Research Institute, 570 020, Mysore, India.
Eur Phys J E Soft Matter. 2018 Jan 31;41(1):12. doi: 10.1140/epje/i2018-11617-8.
In this paper, we study through mathematical modelling the combined effect of transcriptional and translational regulation by proteins and small noncoding RNAs (sRNA) in a genetic feedback motif that has an important role in the survival of E. coli under stress associated with oxygen and energy availability. We show that subtle changes in this motif can bring in drastically different effects on the gene expression. In particular, we show that a threshold response in the gene expression changes to a bistable response as the regulation on sRNA synthesis or degradation is altered. These results are obtained under deterministic conditions. Next, we study how the gene expression is altered by additive and multiplicative noise which might arise due to probabilistic occurrences of different biochemical events. Using the Fokker-Planck formulation, we obtain steady-state probability distributions for sRNA concentration for the network motifs displaying bistability. The probability distributions are found to be bimodal with two peaks at low and high concentrations of sRNAs. We further study the variations in the probability distributions under different values of noise strength and correlations. The results presented here might be of interest for designing synthetic network for artificial control.
在本文中,我们通过数学建模研究了蛋白质和小非编码RNA(sRNA)在一个遗传反馈基序中的转录和翻译调控的联合效应,该基序在大肠杆菌在与氧气和能量可用性相关的应激条件下的存活中起着重要作用。我们表明,这个基序中的细微变化会对基因表达产生截然不同的影响。特别是,我们表明,随着对sRNA合成或降解的调控发生改变,基因表达中的阈值响应会转变为双稳态响应。这些结果是在确定性条件下获得的。接下来,我们研究了由于不同生化事件的概率性发生可能产生的加性和乘性噪声如何改变基因表达。使用福克-普朗克公式,我们获得了显示双稳态的网络基序中sRNA浓度的稳态概率分布。发现概率分布是双峰的,在低浓度和高浓度的sRNA处有两个峰值。我们进一步研究了在不同噪声强度和相关性值下概率分布的变化。这里呈现的结果可能对设计用于人工控制的合成网络具有重要意义。