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首页> 外文期刊>Journal of Molecular Biology >Negative autoregulation speeds the response times of transcription networks.
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Negative autoregulation speeds the response times of transcription networks.

机译:负自动调节可加快转录网络的响应时间。

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摘要

Cells regulate gene expression using networks of transcription interactions; it is of interest to discover the principles that govern the dynamical behavior of such networks. An important characteristic of these systems is the rise-time: the delay from the initiation of production until half maximal product concentration is reached. Here we employ synthetic gene circuits in Escherichia coli to measure the rise-times of non-self-regulated and of negatively autoregulated transcription units. Non-self-regulated units have a rise-time of one cell-cycle. We demonstrate experimentally that negative autoregulation feedback (also termed autogenous control) reduces the rise-time to about one fifth of a cell-cycle. This agrees with an analytical solution of a mathematical model for negative autoregulation. This may help in understanding the function of negative autoregulation, which appears in over 40% of known transcription factors in E.coli.
机译:细胞利用转录相互作用网络调节基因表达。有趣的是,发现了控制此类网络动态行为的原理。这些系统的重要特征是上升时间:从开始生产到达到最大产品浓度一半的延迟。在这里,我们在大肠杆菌中采用合成基因电路来测量非自我调节和负自我调节的转录单位的上升时间。非自我调节单位的上升时间为一个细胞周期。我们实验证明负的自动调节反馈(也称为自体控制)将上升时间减少到细胞周期的大约五分之一。这与负自动调节的数学模型的解析解一致。这可能有助于理解负自动调节的功能,这种负调节作用出现在大肠杆菌中40%以上的已知转录因子中。

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