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Protein Engineering: New Approaches and Applications: Rewiring cell signalling through chimaeric regulatory protein engineering

机译:蛋白质工程:新方法和应用:通过嵌合调控蛋白质工程重新连接细胞信号

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摘要

Bacterial cells continuously sense and respond to their environment using their inherent signalling and gene regulatory networks. Cells are equipped with parallel signalling pathways, which can specifically cope with individual input signals, while interconnectivities between pathways lead to an enhanced complexity of regulatory responses that enable sophisticated adaptation. In principle, any cell signalling pathway may be rewired to respond to non-cognate signals by exchanging and recombining their underlying cognate signalling components. In the present article, we review the engineering strategies and use of chimaeric regulatory proteins in cell signalling pathways, especially the TCS (two-component signalling) system in bacteria, to achieve novel customized signalling or regulatory functions. We envisage that engineered chimaeric regulatory proteins can play an important role to aid both forward and reverse engineering of biological systems for many desired applications.
机译:细菌细胞利用其固有的信号传导和基因调节网络不断感知并响应其环境。细胞配备有并行的信号传导途径,可以专门处理单个输入信号,而途径之间的互连性则导致调节反应复杂性的提高,从而可以进行复杂的适应。原则上,任何细胞信号传导途径都可以通过交换和重组其潜在的关联信号传导成分而重新布线,以响应非关联信号。在本文中,我们综述了嵌合信号调节蛋白在细胞信号通路中的工程策略和应用,尤其是细菌中的TCS(双组分信号传导)系统,以实现新型的定制信号或调节功能。我们设想,工程化的嵌合调控蛋白可以发挥重要作用,以帮助对许多所需应用的生物系统进行正向和反向工程。

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