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Scientific Reports / A novel FRET peptide assay reveals efficient Helicobacter pylori HtrA inhibition through zinc and copper binding

Authors :
Bernegger, Sabine
Brunner, Cyrill
Vizovišek, Matej
Fonovic, Marko
Cuciniello, Gaetano
Giordano, Flavia
Stanojlovic, Vesna
Jarzab, Miroslaw
Simister, Philip
Feller, Stephan M.
Obermeyer, Gerhard
Posselt, Gernot
Turk, Boris
Cabrele, Chiara
Schneider, Gisbert
Wessler, Silja
Publication Year :
2020
Publisher :
Springer Nature, 2020.

Abstract

Helicobacter pylori (H. pylori) secretes the chaperone and serine protease high temperature requirement A (HtrA) that cleaves gastric epithelial cell surface proteins to disrupt the epithelial integrity and barrier function. First inhibitory lead structures have demonstrated the essential role of HtrA in H. pylori physiology and pathogenesis. Comprehensive drug discovery techniques allowing high-throughput screening are now required to develop effective compounds. Here, we designed a novel fluorescence resonance energy transfer (FRET) peptide derived from a gel-based label-free proteomic approach (direct in-gel profiling of protease specificity) as a valuable substrate for H. pylori HtrA. Since serine proteases are often sensitive to metal ions, we investigated the influence of different divalent ions on the activity of HtrA. We identified Zn++ and Cu++ ions as inhibitors of H. pylori HtrA activity, as monitored by in vitro cleavage experiments using casein or E-cadherin as substrates and in the FRET peptide assay. Putative binding sites for Zn++ and Cu++ were then analyzed in thermal shift and microscale thermophoresis assays. The findings of this study will contribute to the development of novel metal ion-dependent protease inhibitors, which might help to fight bacterial infections. (VLID)5311015

Subjects

Subjects :
bacterial infections and mycoses

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.od......3941..9bd20235f01a0a3c8aa53be9fcca52a7