Development of a M9‐based urea medium (M9U) for sensitive and real‐time monitoring of ureolytic activity of bacteria and cell‐free urease

Abstract The enzyme urease is widespread in nature and catalyzes the hydrolysis of urea to form ammonia and carbonic acid. The high proficiency of the enzyme is associated with a wide range of societal challenges. In agriculture, bacterial urease activity leads to loss of fertilizer through NH3 emis...

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Main Authors: Jens Jakob Sigurdarson, Simon Svane, Henrik Karring
Format: Article
Language:English
Published: Wiley 2020-03-01
Series:MicrobiologyOpen
Subjects:
Online Access:https://doi.org/10.1002/mbo3.976
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spelling doaj-d0c4cb0067c14b7e8247ff8aeebf8c9d2020-11-25T00:37:17ZengWileyMicrobiologyOpen2045-88272020-03-0193n/an/a10.1002/mbo3.976Development of a M9‐based urea medium (M9U) for sensitive and real‐time monitoring of ureolytic activity of bacteria and cell‐free ureaseJens Jakob Sigurdarson0Simon Svane1Henrik Karring2Department of Chemical Engineering, Biotechnology and Environmental Technology University of Southern Denmark Odense M DenmarkDepartment of Chemical Engineering, Biotechnology and Environmental Technology University of Southern Denmark Odense M DenmarkDepartment of Chemical Engineering, Biotechnology and Environmental Technology University of Southern Denmark Odense M DenmarkAbstract The enzyme urease is widespread in nature and catalyzes the hydrolysis of urea to form ammonia and carbonic acid. The high proficiency of the enzyme is associated with a wide range of societal challenges. In agriculture, bacterial urease activity leads to loss of fertilizer through NH3 emission, which has a negative impact on the environment and human health. Urease is also an essential virulence factor for several pathogenic bacteria. To screen for potential urease inhibitors, efficient, sensitive, and accurate urease activity assays are needed. However, most urease activity assays are labor‐intensive and become time‐consuming when used to screen multiple samples. Based on systematic optimization, we have developed a urea‐containing growth medium and method for continuous real‐time monitoring and screening of urease activity from both bacterial cells and pure urease in a plate reader setup. The defined M9‐based urea (M9U) medium was found to be more sensitive and suitable for a plate reader setup than both Christensen's urea broth (CUB) and Stuart's urea broth (SUB), which are established and well‐known complex urea media that formed the principle foundation of M9U. Furthermore, we show that urease activity measurements using the M9U medium in our plate reader‐based method allow reliable high‐throughput screening of urease inhibitors.https://doi.org/10.1002/mbo3.976ammoniahigh throughputinhibitorplate reader assayurease
collection DOAJ
language English
format Article
sources DOAJ
author Jens Jakob Sigurdarson
Simon Svane
Henrik Karring
spellingShingle Jens Jakob Sigurdarson
Simon Svane
Henrik Karring
Development of a M9‐based urea medium (M9U) for sensitive and real‐time monitoring of ureolytic activity of bacteria and cell‐free urease
MicrobiologyOpen
ammonia
high throughput
inhibitor
plate reader assay
urease
author_facet Jens Jakob Sigurdarson
Simon Svane
Henrik Karring
author_sort Jens Jakob Sigurdarson
title Development of a M9‐based urea medium (M9U) for sensitive and real‐time monitoring of ureolytic activity of bacteria and cell‐free urease
title_short Development of a M9‐based urea medium (M9U) for sensitive and real‐time monitoring of ureolytic activity of bacteria and cell‐free urease
title_full Development of a M9‐based urea medium (M9U) for sensitive and real‐time monitoring of ureolytic activity of bacteria and cell‐free urease
title_fullStr Development of a M9‐based urea medium (M9U) for sensitive and real‐time monitoring of ureolytic activity of bacteria and cell‐free urease
title_full_unstemmed Development of a M9‐based urea medium (M9U) for sensitive and real‐time monitoring of ureolytic activity of bacteria and cell‐free urease
title_sort development of a m9‐based urea medium (m9u) for sensitive and real‐time monitoring of ureolytic activity of bacteria and cell‐free urease
publisher Wiley
series MicrobiologyOpen
issn 2045-8827
publishDate 2020-03-01
description Abstract The enzyme urease is widespread in nature and catalyzes the hydrolysis of urea to form ammonia and carbonic acid. The high proficiency of the enzyme is associated with a wide range of societal challenges. In agriculture, bacterial urease activity leads to loss of fertilizer through NH3 emission, which has a negative impact on the environment and human health. Urease is also an essential virulence factor for several pathogenic bacteria. To screen for potential urease inhibitors, efficient, sensitive, and accurate urease activity assays are needed. However, most urease activity assays are labor‐intensive and become time‐consuming when used to screen multiple samples. Based on systematic optimization, we have developed a urea‐containing growth medium and method for continuous real‐time monitoring and screening of urease activity from both bacterial cells and pure urease in a plate reader setup. The defined M9‐based urea (M9U) medium was found to be more sensitive and suitable for a plate reader setup than both Christensen's urea broth (CUB) and Stuart's urea broth (SUB), which are established and well‐known complex urea media that formed the principle foundation of M9U. Furthermore, we show that urease activity measurements using the M9U medium in our plate reader‐based method allow reliable high‐throughput screening of urease inhibitors.
topic ammonia
high throughput
inhibitor
plate reader assay
urease
url https://doi.org/10.1002/mbo3.976
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AT henrikkarring developmentofam9basedureamediumm9uforsensitiveandrealtimemonitoringofureolyticactivityofbacteriaandcellfreeurease
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