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Negative auto-regulation increases the input dynamic-range of the arabinose system of Escherichia coli

机译:负自动调节会增加大肠杆菌阿拉伯糖系统的输入动态范围

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摘要

BackgroundGene regulation networks are made of recurring regulatory patterns, called network motifs. One of the most common network motifs is negative auto-regulation, in which a transcription factor represses its own production. Negative auto-regulation has several potential functions: it can shorten the response time (time to reach halfway to steady-state), stabilize expression against noise, and linearize the gene's input-output response curve. This latter function of negative auto-regulation, which increases the range of input signals over which downstream genes respond, has been studied by theory and synthetic gene circuits. Here we ask whether negative auto-regulation preserves this function also in the context of a natural system, where it is embedded within many additional interactions. To address this, we studied the negative auto-regulation motif in the arabinose utilization system of Escherichia coli, in which negative auto-regulation is part of a complex regulatory network.
机译:BackgroundGene调控网络由重复的调控模式组成,称为网络主题。最常见的网络基序之一是负自动调节,其中转录因子抑制其自身产生。负自动调节具有多个潜在功能:它可以缩短响应时间(达到稳态的一半时间),稳定表达以抵抗噪音,并使基因的输入输出响应曲线线性化。负自动调节的后一种功能,增加了下游基因响应的输入信号范围,已经通过理论和合成基因电路进行了研究。在这里,我们问否定的自动调节是否也可以在自然系统的上下文中保留此功能,因为自然系统将其嵌入许多其他交互中。为了解决这个问题,我们研究了大肠杆菌阿拉伯糖利用系统中的负自动调节基序,其中负自动调节是复杂调节网络的一部分。

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