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首页> 外文期刊>Nucleic Acids Research >Design and characterization of a dual-mode promoter with activation and repression capability for tuning gene expression in yeast
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Design and characterization of a dual-mode promoter with activation and repression capability for tuning gene expression in yeast

机译:具有激活和抑制功能的双模式启动子的设计和表征,用于调节酵母中的基因表达

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摘要

Modularity in controlling gene expression artificially is becoming an essential aspect of synthetic biology. Artificial transcriptional control of gene expression is one of the most well-developed methods for the design of novel synthetic regulatory networks. Such networks are intended to help understand natural cellular phenomena and to enable new biotechnological applications. Promoter sequence manipulation with cis-regulatory elements is a key approach to control gene expression transcriptionally. Here, we have designed a promoter that can be both activated and repressed, as a contribution to the library of synthetic biological 'parts'. Starting with the minimal cytochrome C (minCYC) promoter in yeast, we incorporated five steroid hormone responsive elements (SHREs) and one lac operator site, respectively, upstream and downstream of the TATA box. This allows activation through the testosterone-responsive androgen receptor, and repression through the LacI repressor. Exposure to varying concentrations of testosterone (to vary activation) and IPTG (to vary repression) demonstrated the ability to tune the promoter's output curve over a wide range. By integrating activating and repressing signals, the promoter permits a useful form of signal integration, and we are optimistic that it will serve as a component in future regulatory networks, including feedback controllers.
机译:人工控制基因表达的模块化正成为合成生物学的重要方面。基因表达的人工转录控制是设计新型合成调控网络的最先进方法之一。这样的网络旨在帮助理解自然细胞现象并实现新的生物技术应用。用顺式调控元件操纵启动子序列是控制基因表达转录的关键方法。在这里,我们设计了一种可以被激活和抑制的启动子,作为对合成生物学“部分”库的一种贡献。从酵母中最小的细胞色素C(minCYC)启动子开始,我们在TATA盒的上游和下游分别引入了五个类固醇激素响应元件(SHRE)和一个lac操纵子位点。这允许通过睾丸激素反应性雄激素受体激活,并通过LacI阻遏物抑制。暴露于不同浓度的睾丸激素(以改变激活)和IPTG(以改变阻抑)证明了能够在很宽的范围内调节启动子的输出曲线。通过整合激活和抑制信号,启动子可以实现信号整合的一种有用形式,我们乐观地认为,它将作为未来监管网络(包括反馈控制器)的组成部分。

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