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Natural phenolic compounds as biofilm inhibitors of multidrug-resistant Escherichia coli – the role of similar biological processes despite structural diversity

  • Multidrug-resistant gram-negative pathogens such as Escherichia coli have become increasingly difficult to treat and therefore alternative treatment options are needed. Targeting virulence factors like biofilm formation could be one such option. Inhibition of biofilm-related structures like curli and cellulose formation in E. coli has been shown for different phenolic natural compounds like epigallocatechin gallate. This study demonstrates this effect for other structurally unrelated phenolics, namely octyl gallate, scutellarein and wedelolactone. To verify whether these structurally different compounds influence identical pathways of biofilm formation in E. coli a broad comparative RNA-sequencing approach was chosen with additional RT-qPCR to gain initial insights into the pathways affected at the transcriptomic level. Bioinformatical analysis of the RNA-Seq data was performed using DESeq2, BioCyc and KEGG Mapper. The comparative bioinformatics analysis on the pathways revealed that, irrespective of their structure, all compounds mainly influenced similar biological processes. These pathways included bacterial motility, chemotaxis, biofilm formation as well as metabolic processes like arginine biosynthesis and tricarboxylic acid cycle. Overall, this work provides the first insights into the potential mechanisms of action of novel phenolic biofilm inhibitors and highlights the complex regulatory processes of biofilm formation in E. coli.

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Metadaten
Author: David Buchmann, Michael Schwabe, Romano Weiss, Andreas W. Kuss, Katharina SchauflerORCiD, Rabea Schlüter, Stefan Rödiger, Sebastian GuentherORCiD, Nadin Schultze
URN:urn:nbn:de:gbv:9-opus-88084
DOI:https://doi.org/10.3389/fmicb.2023.1232039
ISSN:1664-302X
Parent Title (English):Frontiers in Microbiology
Publisher:Frontiers Media S.A.
Place of publication:Lausanne
Document Type:Article
Language:English
Date of first Publication:2023/09/04
Release Date:2024/02/02
Tag:Escherichia coli; RNA-Seq; arginine biosynthesis; biofilm inhibitor; metabolic processes; motility; phenolic compounds; transcriptome
Volume:14
Article Number:1232039
Page Number:18
Faculties:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Pharmazie
Collections:Artikel aus DFG-gefördertem Publikationsfonds
Licence (German):License LogoCreative Commons - Namensnennung