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拮抗自动调节可加快大肠杆菌的同质响应。

Antagonistic autoregulation speeds up a homogeneous response in Escherichia coli.

机构信息

Instituto de Biología Molecular y Cellular de Plantas, CSIC-UPV, 46022 Valencia, Spain.

Logic of Genomic Systems Laboratory, CNB-CSIC, 28049 Madrid, Spain.

出版信息

Sci Rep. 2016 Oct 31;6:36196. doi: 10.1038/srep36196.

Abstract

By integrating positive and negative feedback loops, biological systems establish intricate gene expression patterns linked to multistability, pulsing, and oscillations. This depends on the specific characteristics of each interlinked feedback, and thus one would expect additional expression programs to be found. Here, we investigate one such program associated with an antagonistic positive and negative transcriptional autoregulatory motif derived from the multiple antibiotic resistance (mar) system of Escherichia coli. We studied the dynamics of the system by combining a predictive mathematical model with high-resolution experimental measures of the response both at the population and single-cell level. We show that in this motif the weak positive autoregulation does not slow down but rather enhances response speedup in combination with a strong negative feedback loop. This balance of feedback strengths anticipates a homogeneous population phenotype, which we corroborate experimentally. Theoretical analysis also emphasized the specific molecular properties that determine the dynamics of the mar phenotype. More broadly, response acceleration could provide a rationale for the presence of weak positive feedbacks in other biological scenarios exhibiting these interlinked regulatory architectures.

摘要

通过整合正反馈和负反馈回路,生物系统建立了与多稳定性、脉冲和振荡相关的复杂基因表达模式。这取决于每个相互关联的反馈的特定特征,因此人们预计会发现更多的表达程序。在这里,我们研究了与大肠杆菌多抗生素耐药(mar)系统衍生的拮抗正转录和负转录自调节基序相关的一个这样的程序。我们通过将预测数学模型与群体和单细胞水平的高分辨率实验响应测量相结合,研究了系统的动力学。我们表明,在这个基序中,弱正自调节不仅不会减缓,反而会增强与强负反馈回路相结合的响应加速。这种反馈强度的平衡预测了同质群体表型,我们通过实验证实了这一点。理论分析还强调了决定 mar 表型动力学的特定分子特性。更广泛地说,响应加速可以为在表现出这些相互关联的调节结构的其他生物场景中存在弱正反馈提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed12/5086920/47db3fff580b/srep36196-f1.jpg

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