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  4. Tetramerization is essential for the enzymatic function of the Pseudomonas aeruginosa virulence factor UDP-glucose pyrophosphorylase
 
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2024
Journal Article
Title

Tetramerization is essential for the enzymatic function of the Pseudomonas aeruginosa virulence factor UDP-glucose pyrophosphorylase

Abstract
Multidrug-resistant bacteria such as the opportunistic pathogen Pseudomonas aeruginosa, which causes life-threatening infections especially in immunocompromised individuals and cystic fibrosis patients, pose an increasing threat to public health. In the search for new treatment options, P. aeruginosa uridine diphosphate-glucose pyrophosphorylase (PaUGP) has been proposed as a novel drug target because it is required for the biosynthesis of important virulence factors and linked to pathogenicity in animal models. Here, we show that UGP-deficient P. aeruginosa exhibits severely reduced virulence against human lung tissue and cells, emphasizing the enzyme’s suitability as a drug target. To establish a basis for the development of selective PaUGP inhibitors, we solved the product-bound crystal structure of tetrameric PaUGP and conducted a comprehensive structure-function analysis, identifying key residues at two different molecular interfaces that are essential for tetramer integrity and catalytic activity and demonstrating that tetramerization is pivotal for PaUGP function. Importantly, we show that part of the PaUGP oligomerization interface is uniquely conserved across bacterial UGPs but does not exist in the human enzyme, therefore representing an allosteric site that may be targeted to selectively inhibit bacterial UGPs.
Author(s)
Dirr, L.
Cleeves, Sven
Fraunhofer-Institut für Toxikologie und Experimentelle Medizin ITEM  
Roth, I.R.
Li, L.
Fiebig, T.
Ve, T.
Häussler, S.
Braun, Armin  
Fraunhofer-Institut für Toxikologie und Experimentelle Medizin ITEM  
Itzstein, M. von
Führing, J.I.
Journal
mBio  
Open Access
DOI
10.1128/mbio.02114-23
Language
English
Fraunhofer-Institut für Toxikologie und Experimentelle Medizin ITEM  
Keyword(s)
  • antibiotic resistance

  • drug targets

  • galU

  • lipopolysaccharide

  • lung infection

  • oligomerization

  • opportunistic infections

  • precision-cut lung slices

  • protein structure-function

  • Pseudomonas aeruginosa

  • UDP-glucose pyrophosphorylase

  • virulence

  • virulence factors

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