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基于转录因子的生物传感器在小分子检测中的工程和优化进展。

Advances in engineering and optimization of transcription factor-based biosensors for plug-and-play small molecule detection.

机构信息

Department of Chemical Engineering and Applied Chemistry, University of Toronto, ON, Canada.

Department of Chemical Engineering and Applied Chemistry, University of Toronto, ON, Canada; Department of Microbiology, Immunology and Infectious Disease, University of Calgary, AB, Canada.

出版信息

Curr Opin Biotechnol. 2022 Aug;76:102753. doi: 10.1016/j.copbio.2022.102753. Epub 2022 Jul 21.

Abstract

Transcription factor (TF)-based biosensors have been applied in biotechnology for a variety of functions, including protein engineering, dynamic control, environmental detection, and point-of-care diagnostics. Such biosensors are promising analytical tools due to their wide range of detectable ligands and modular nature. However, designing biosensors tailored for applications of interest with the desired performance parameters, including ligand specificity, remains challenging. Biosensors often require significant engineering and tuning to meet desired specificity, sensitivity, dynamic range, and operating range parameters. Another limitation is the orthogonality of biosensors across hosts, given the role of the cellular context. Here, we describe recent advances and examples in the engineering and optimization of TF-based biosensors for plug-and-play small molecule detection. We highlight novel developments in TF discovery and biosensor design, TF specificity engineering, and biosensor tuning, with emphasis on emerging computational methods.

摘要

基于转录因子 (TF) 的生物传感器已在生物技术中得到广泛应用,具有多种功能,包括蛋白质工程、动态控制、环境检测和即时诊断。由于其广泛的可检测配体和模块化性质,此类生物传感器是很有前途的分析工具。然而,设计针对特定应用的生物传感器并具有所需的性能参数,包括配体特异性,仍然具有挑战性。生物传感器通常需要进行大量的工程设计和调整,以满足所需的特异性、灵敏度、动态范围和工作范围参数。另一个限制是生物传感器在宿主之间的正交性,因为细胞环境的作用。在这里,我们描述了用于即插即用小分子检测的基于 TF 的生物传感器的工程和优化方面的最新进展和实例。我们重点介绍了 TF 发现和生物传感器设计、TF 特异性工程以及生物传感器调整方面的新进展,重点介绍了新兴的计算方法。

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