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Trade-offs between retroactivity and noise in connected transcriptional components

机译:逆转录和连接的转录成分中的噪音之间的折衷

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At the interconnection of two gene transcriptional components in a biomolecular network, the noise in the downstream component can be reduced by increasing its gene copy number. However, this method of reducing noise increases the load applied to the upstream system, called retroactivity, thereby causing a perturbation in the upstream system. In this work, we quantify the error in the system trajectories caused by perturbations due to retroactivity and noise, and analyze the trade-off between these two perturbations. We model the system as a set of nonlinear chemical Langevin equations and quantify the trade-off by employing contraction theory for stochastic systems.
机译:在生物分子网络中两个基因转录成分的相互连接处,可以通过增加其基因拷贝数来降低下游成分中的噪音。但是,这种降低噪声的方法会增加施加到上游系统的负载,称为追溯性,从而在上游系统中引起干扰。在这项工作中,我们量化了由于追溯力和噪声引起的扰动引起的系统轨迹误差,并分析了这两种扰动之间的权衡。我们将系统建模为一组非线性化学Langevin方程,并通过对随机系统采用收缩理论来量化权衡。

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