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首页> 外文期刊>Journal of Molecular Biology >Novel aspects of the acid response network of E. coli K-12 are revealed by a study of transcriptional dynamics.
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Novel aspects of the acid response network of E. coli K-12 are revealed by a study of transcriptional dynamics.

机译:通过对转录动力学的研究揭示了大肠杆菌K-12酸反应网络的新方面。

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摘要

Understanding gene regulation and its adaptive significance requires not only a detailed knowledge of individual molecular interactions that give rise to changes in gene expression but also an overview of complete genetic networks and the ways in which components within them interact. Increasingly, such studies are being done using luminescent or fluorescent reporter proteins that enable monitoring of gene expression dynamics in real time, particularly during changes in expression. We show here that such an approach is valid for dissecting the responses of the AR2 or GAD network of Escherichia coli K-12 to changes in pH, which is one of the most complex networks known in E. coli. In addition to confirming several regulatory interactions that have been revealed by previous studies, this approach has identified new components in this system that lead to complex dynamics of gene expression following a drop in pH, including an auto-regulatory loop involving the YdeO activator protein and novel roles for the PhoP protein.
机译:要了解基因调控及其适应性意义,不仅需要对引起基因表达变化的单个分子相互作用的详细了解,而且还需要对完整的遗传网络及其组件相互作用的方式进行概述。越来越多地使用发光或荧光报告蛋白进行此类研究,这些蛋白能够实时监控基因表达动态,尤其是在表达变化期间。我们在这里显示,这种方法对于剖析大肠埃希氏大肠杆菌K-12的AR2或GAD网络对pH值变化的响应是有效的,pH是在大肠杆菌中已知的最复杂的网络之一。除了证实先前研究已经揭示的几种调控相互作用外,这种方法还确定了该系统中的新成分,这些成分导致pH下降后基因表达的复杂动态,包括涉及YdeO激活蛋白和蛋白质的自动调控环。 PhoP蛋白的新作用。

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