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Multi-stable dynamics of the non-adiabatic repressilator

机译:非绝热再压缩器的多稳态动力学

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摘要

The assumption of the fast binding of transcription factors (TFs) to promoters is a typical point in studies of synthetic genetic circuits functioning in bacteria. Although the assumption is effective for simplifying the models, it becomes questionable in the light of in vivo measurements of the times TF spends searching for its cognate DNA sites. We investigated the dynamics of the full idealized model of the paradigmatic genetic oscillator, the repressilator, using deterministic mathematical modelling and stochastic simulations. We found (using experimentally approved parameter values) that decreases in the TF binding rate changes the type of transition between steady state and oscillation. As a result, this gives rise to the hysteresis region in the parameter space, where both the steady state and the oscillation coexist. We further show that the hysteresis is persistent over a considerable range of the parameter values, but the presence of the oscillations is limited by the low rate of TF dimer degradation. Finally, the stochastic simulation of the model confirms the hysteresis with switching between the two attractors, resulting in highly skewed period distributions. Moreover, intrinsic noise stipulates trains of large-amplitude modulations around the stable steady state outside the hysteresis region, which makes the period distributions bimodal.
机译:转录因子(TFs)与启动子快速结合的假设是细菌中合成遗传电路研究的一个典型观点。尽管该假设对于简化模型是有效的,但是鉴于TF用于搜索其同源DNA位点的时间的体内测量,这一假设令人怀疑。我们使用确定性数学建模和随机模拟研究了范式遗传振荡器,再加压器的完全理想化模型的动力学。我们发现(使用实验批准的参数值),TF结合速率的降低会改变稳态和振荡之间的跃迁类型。结果,这会在参数空间中产生一个磁滞区域,在该区域中,稳态和振荡都将同时存在。我们进一步表明,磁滞在参数值的相当大范围内是持久的,但是振荡的存在受到TF二聚体降解率低的限制。最后,该模型的随机模拟通过两个吸引子之间的切换确认了磁滞现象,从而导致周期分布高度偏斜。此外,固有噪声规定了磁滞区域外部稳定稳态周围的大幅度调制序列,这使得周期分布成为双峰。

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