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首页> 外文期刊>Journal of Molecular Biology >Positive autoregulation shapes response timing and intensity in two-component signal transduction systems.
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Positive autoregulation shapes response timing and intensity in two-component signal transduction systems.

机译:积极的自动调节功能可以在两组分信号转导系统中调节响应时间和强度。

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摘要

Positive feedback loops are regulatory elements that can modulate expression output, kinetics and noise in genetic circuits. Transcriptional regulators participating in such loops are often expressed from two promoters, one constitutive and one autoregulated. Here, we investigate the interplay of promoter strengths and the intensity of the stimulus activating the transcriptional regulator in defining the output of a positively autoregulated genetic circuit. Using a mathematical model of two-component regulatory systems, which are present in all domains of life, we establish that positive feedback strongly affects the steady-state output levels at both low and high levels of stimulus if the constitutive promoter of the regulator is weak. By contrast, the effect of positive feedback is negligible when the constitutive promoter is sufficiently strong, unless the stimulus intensity is very high. Furthermore, we determine that positive feedback can affect both transient and steady state output levels even in the simplest genetic regulatory systems. We tested our modeling predictions by abolishing the positive feedback loop in the two-component regulatory system PhoP/PhoQ of Salmonella enterica, which resulted in diminished induction of PhoP-activated genes.
机译:正反馈回路是可调节基因回路中表达输出,动力学和噪声的调节元件。参与这种环的转录调节子通常由两种启动子表达,一种是组成型启动子,另一种是自动调节型。在这里,我们研究启动子强度和激活转录调节剂的刺激强度之间的相互作用,以定义正向自调控遗传电路的输出。使用存在于生活所有领域的两成分调节系统的数学模型,我们确定,如果调节器的本构启动子较弱,则正反馈会强烈影响低水平和高水平刺激下的稳态输出水平。 。相反,当组成型启动子足够强时,除非刺激强度很高,否则正反馈的影响可以忽略不计。此外,我们确定即使在最简单的遗传调节系统中,正反馈也可以影响瞬态和稳态输出水平。我们通过取消肠沙门氏菌两组分调节系统PhoP / PhoQ中的正反馈回路来测试我们的建模预测,从而减少了PhoP激活基因的诱导。

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