Systems, Synthetic, and Physical Biology Graduate Program, Rice University, Houston, TX, USA.
Department of BioSciences, Rice University, Houston, TX, USA.
Nature. 2022 Nov;611(7936):548-553. doi: 10.1038/s41586-022-05356-y. Epub 2022 Nov 2.
Real-time chemical sensing is crucial for applications in environmental and health monitoring. Biosensors can detect a variety of molecules through genetic circuits that use these chemicals to trigger the synthesis of a coloured protein, thereby producing an optical signal. However, the process of protein expression limits the speed of this sensing to approximately half an hour, and optical signals are often difficult to detect in situ. Here we combine synthetic biology and materials engineering to develop biosensors that produce electrical readouts and have detection times of minutes. We programmed Escherichia coli to produce an electrical current in response to specific chemicals using a modular, eight-component, synthetic electron transport chain. As designed, this strain produced current following exposure to thiosulfate, an anion that causes microbial blooms, within 2 min. This amperometric sensor was then modified to detect an endocrine disruptor. The incorporation of a protein switch into the synthetic pathway and encapsulation of the bacteria with conductive nanomaterials enabled the detection of the endocrine disruptor in urban waterway samples within 3 min. Our results provide design rules to sense various chemicals with mass-transport-limited detection times and a new platform for miniature, low-power bioelectronic sensors that safeguard ecological and human health.
实时化学传感对于环境和健康监测等应用至关重要。生物传感器可以通过利用这些化学物质触发有色蛋白质合成的遗传电路来检测各种分子,从而产生光学信号。然而,蛋白质表达的过程将这种传感的速度限制在大约半小时左右,并且光学信号通常难以在原位检测。在这里,我们结合合成生物学和材料工程,开发出能够产生电读数且检测时间为分钟级的生物传感器。我们使用模块化的、由八个组件组成的合成电子传递链来编程大肠杆菌,使其对特定化学物质产生电流响应。按照设计,这种菌株在接触到引起微生物大量繁殖的阴离子硫代硫酸盐后,在 2 分钟内产生电流。然后,这个安培传感器被修改以检测内分泌干扰物。将蛋白质开关纳入合成途径,并将细菌用导电纳米材料封装,使我们能够在 3 分钟内检测到城市水道样本中的内分泌干扰物。我们的研究结果为利用具有传质限制的检测时间来检测各种化学物质提供了设计规则,并为保护生态和人类健康的微型、低功耗生物电子传感器提供了一个新平台。