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用于扩展细菌传感功能的模块化受体平台

A Modular Receptor Platform To Expand the Sensing Repertoire of Bacteria.

作者信息

Chang Hung-Ju, Mayonove Pauline, Zavala Agustin, De Visch Angelique, Minard Philippe, Cohen-Gonsaud Martin, Bonnet Jerome

机构信息

Centre de Biochimie Structurale, INSERM U1054, CNRS UMR5048, University of Montpellier , 34090 Montpellier, France.

Institute for Integrative Biology of the Cell (I2BC), CEA, CNRS, Univ. Paris-Sud, Université Paris-Saclay , 91191 Gif-sur-Yvette, France.

出版信息

ACS Synth Biol. 2018 Jan 19;7(1):166-175. doi: 10.1021/acssynbio.7b00266. Epub 2017 Oct 30.

Abstract

Engineered bacteria promise to revolutionize diagnostics and therapeutics, yet many applications are precluded by the limited number of detectable signals. Here we present a general framework to engineer synthetic receptors enabling bacterial cells to respond to novel ligands. These receptors are activated via ligand-induced dimerization of a single-domain antibody fused to monomeric DNA-binding domains (split-DBDs). Using E. coli as a model system, we engineer both transmembrane and cytosolic receptors using a VHH for ligand detection and demonstrate the scalability of our platform by using the DBDs of two different transcriptional regulators. We provide a method to optimize receptor behavior by finely tuning protein expression levels and optimizing interdomain linker regions. Finally, we show that these receptors can be connected to downstream synthetic gene circuits for further signal processing. The general nature of the split-DBD principle and the versatility of antibody-based detection should support the deployment of these receptors into various hosts to detect ligands for which no receptor is found in nature.

摘要

工程细菌有望彻底改变诊断和治疗方法,但许多应用因可检测信号数量有限而受到限制。在此,我们提出了一个通用框架,用于构建合成受体,使细菌细胞能够对新型配体做出反应。这些受体通过与单体DNA结合结构域(分裂DNA结合结构域,split-DBDs)融合的单域抗体的配体诱导二聚化而被激活。以大肠杆菌作为模型系统,我们使用一个VHH进行配体检测,构建了跨膜和胞质受体,并通过使用两种不同转录调节因子的DNA结合结构域证明了我们平台的可扩展性。我们提供了一种通过精细调节蛋白质表达水平和优化结构域间连接区域来优化受体行为的方法。最后,我们表明这些受体可以连接到下游合成基因电路进行进一步的信号处理。分裂DNA结合结构域原理的通用性和基于抗体检测的多功能性应有助于将这些受体应用于各种宿主,以检测自然界中未发现受体的配体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2ad/5880506/6533a03da832/sb-2017-00266j_0001.jpg

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