Tunable Multiplexed Whole-Cell Biosensors as Environmental Diagnostics for ppb-Level Detection of Aromatic Pollutants

Roy, Rohita ; Ray, Shamayeeta ; Chowdhury, Arindam ; Anand, Ruchi (2021) Tunable Multiplexed Whole-Cell Biosensors as Environmental Diagnostics for ppb-Level Detection of Aromatic Pollutants ACS Sensors, 6 (5). pp. 1933-1939. ISSN 2379-3694

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Official URL: http://doi.org/10.1021/acssensors.1c00329

Related URL: http://dx.doi.org/10.1021/acssensors.1c00329

Abstract

Aromatics such as phenols, benzene, and toluene are carcinogenic xenobiotics which are known to pollute water resources. By employing synthetic biology approaches combined with a structure-guided design, we created a tunable array of whole-cell biosensors (WCBs). The MopR genetic system that has the natural ability to sense and degrade phenol was adapted to detect phenol down to ∼1 ppb, making this sensor capable of directly detecting phenol in permissible limits in drinking water. Importantly, by using a single WCB design, we engineered mutations into the MopR gene that enabled generation of a battery of sensors for a wide array of pollutants. The engineered WCBs were able to sense inert compounds like benzene and xylene which lack active functional groups, without any loss in sensitivity. Overall, this universal programmable biosensor platform can be used to create WCBs that can be deployed on field for rapid testing and screening of suitable drinking water sources.

Item Type:Article
Source:Copyright of this article belongs to American Chemical Society
Keywords:programmable sensors; structure-guided design; protein engineering; synthetic biology; BTEX ;luciferase
ID Code:126695
Deposited On:28 Sep 2022 06:03
Last Modified:28 Sep 2022 06:03

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