Department of Physics, National Institute of Technology, Durgapur, 713209, India.
Eur Phys J E Soft Matter. 2021 Oct 25;44(10):131. doi: 10.1140/epje/s10189-021-00122-w.
Genetic circuits need a cellular environment to operate in, which naturally couples the circuit function with the overall functionality of gene regulatory network. To execute their functions, all gene circuits draw resources in the form of RNA polymerases, ribosomes, and tRNAs. Recent experiments pointed out that the role of resource competition on synthetic circuit outputs could be immense. However, the effect of complexity of the circuit architecture on resource sharing dynamics is yet unexplored. In this paper, we employ mathematical modelling and in-silico experiments to identify the sources of resource trade-off and to quantify its impact on the function of a genetic circuit, keeping our focus on regulation of immediate downstream proteins, which are often used as protein read-outs. We show that estimating gene expression dynamics from readings of downstream protein data might be unreliable when the resource is limited and ribosome affinities are asymmetric. We focus on the impact of mRNA copy number and ribosome binding site (RBS) strength on the nonlinear isocline that emerges with two regimes, prominently separated by a tipping point, and study how correlation and competition dominate each other depending on various circuit parameters. Focusing further on genetic toggle circuit, we have identified major effects of resource competition in this model motif and quantified the observations. The observations are testable in wet-lab experiments, as all the parameters chosen are experimentally relevant.
遗传回路需要细胞环境才能发挥作用,这自然将回路功能与基因调控网络的整体功能联系起来。为了执行其功能,所有基因回路都以 RNA 聚合酶、核糖体和 tRNA 的形式抽取资源。最近的实验指出,资源竞争对合成回路输出的影响可能是巨大的。然而,电路架构的复杂性对资源共享动态的影响尚未得到探索。在本文中,我们采用数学建模和计算机实验来确定资源权衡的来源,并量化其对遗传回路功能的影响,重点关注作为蛋白质读出的下游蛋白质的即时调节。我们表明,当资源有限且核糖体亲和力不对称时,从下游蛋白质数据的读数中估计基因表达动力学可能是不可靠的。我们专注于 mRNA 拷贝数和核糖体结合位点 (RBS) 强度对出现两个区域的非线性等倾线的影响,该等倾线由转折点明显分隔,并研究在不同的电路参数下,相关性和竞争如何相互主导。进一步关注遗传开关电路,我们确定了资源竞争在该模型基序中的主要影响,并对观察结果进行了量化。观察结果可在湿实验室实验中进行测试,因为选择的所有参数都是实验相关的。