Enhanced electrochemical measurement of β-galactosidase activity in whole cells by coexpression of lactose permease, LacY

Author:

VanArsdale Eric123,Pitzer Juliana1,Wang Sally123,Stephens Kristina123,Chen Chen-yu123,Payne Gregory F23ORCID,Bentley William E123ORCID

Affiliation:

1. Fischell Department of Bioengineering, University of Maryland, College Park, MD 20742, USA

2. Institute for Bioscience & Biotechnology Research, University of Maryland, College Park, MD 20742, USA

3. Fischell Institute for Biomedical Devices, University of Maryland, College Park, MD 20742, USA

Abstract

Whole-cell biosensing links the sensing and computing capabilities of microbes to the generation of a detectable reporter. Whole cells enable dynamic biological computation (filtered noise, amplified signals, logic gating etc.). Enzymatic reporters enable in situ signal amplification. Electrochemical measurements are easily quantified and work in turbid environments. In this work we show how the coexpression of the lactose permease, LacY, dramatically improves electrochemical sensing of β-galactosidase (LacZ) expressed as a reporter in whole cells. The permease facilitates transport of the LacZ substrate, 4-aminophenyl β-d-galactopyranoside, which is converted to redox active p-aminophenol, which, in turn, is detected via cyclic voltammetry or chronocoulometry. We show a greater than fourfold improvement enabled by lacY coexpression in cells engineered to respond to bacterial signal molecules, pyocyanin and quorum-sensing autoinducer-2.

Funder

Division of Molecular and Cellular Biosciences

Division of Chemical, Bioengineering, Environmental, and Transport Systems

Biological and Environmental Research

Defense Threat Reduction Agency

Publisher

Future Science Ltd

Subject

General Biochemistry, Genetics and Molecular Biology,Biotechnology

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