Centre for Synthetic Biology (CSB), Ghent University, 9000 Ghent, Belgium.
Biosensors (Basel). 2023 May 30;13(6):590. doi: 10.3390/bios13060590.
All living organisms have evolved and fine-tuned specialized mechanisms to precisely monitor a vast array of different types of molecules. These natural mechanisms can be sourced by researchers to build Biological Sensors (BioS) by combining them with an easily measurable output, such as fluorescence. Because they are genetically encoded, BioS are cheap, fast, sustainable, portable, self-generating and highly sensitive and specific. Therefore, BioS hold the potential to become key enabling tools that stimulate innovation and scientific exploration in various disciplines. However, the main bottleneck in unlocking the full potential of BioS is the fact that there is no standardized, efficient and tunable platform available for the high-throughput construction and characterization of biosensors. Therefore, a modular, Golden Gate-based construction platform, called MoBioS, is introduced in this article. It allows for the fast and easy creation of transcription factor-based biosensor plasmids. As a proof of concept, its potential is demonstrated by creating eight different, functional and standardized biosensors that detect eight diverse molecules of industrial interest. In addition, the platform contains novel built-in features to facilitate fast and efficient biosensor engineering and response curve tuning.
所有生物都进化出了精细的专门机制,以精确监测大量不同类型的分子。研究人员可以通过将这些天然机制与易于测量的输出(如荧光)结合起来,构建生物传感器(BioS)。由于它们是基因编码的,因此 BioS 具有成本低、速度快、可持续、便携、自生成和高灵敏度、特异性的特点。因此,BioS 有可能成为刺激各个领域创新和科学探索的关键使能工具。然而,要充分发挥 BioS 的潜力,主要的瓶颈是缺乏标准化、高效和可调的高通量生物传感器构建和表征平台。因此,本文引入了一种基于 Golden Gate 的模块化构建平台,称为 MoBioS。它允许快速、轻松地创建基于转录因子的生物传感器质粒。作为概念验证,通过创建八个不同的、功能和标准化的生物传感器来证明其潜力,这些生物传感器可以检测八种具有工业价值的不同分子。此外,该平台还包含新的内置功能,以方便快速、高效的生物传感器工程和响应曲线调整。