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An engineered protein-based submicromolar competitive inhibitor of the Staphylococcus aureus virulence factor aureolysin

Authors :
Soraia R. Mendes
Ulrich Eckhard
Arturo Rodríguez-Banqueri
Tibisay Guevara
Peter Czermak
Enrique Marcos
Andreas Vilcinskas
F. Xavier Gomis-Rüth
Source :
Computational and Structural Biotechnology Journal, Vol 20, Iss , Pp 534-544 (2022)
Publication Year :
2022
Publisher :
Elsevier, 2022.

Abstract

Aureolysin, a secreted metallopeptidase (MP) from the thermolysin family, functions as a major virulence factor in Staphylococcus aureus. No specific aureolysin inhibitors have yet been described, making this an important target for the development of novel antimicrobial drugs in times of rampant antibiotic resistance. Although small-molecule inhibitors are currently more common in the clinic, therapeutic proteins and peptides (TPs) are favourable due to their high selectivity, which reduces off-target toxicity and allows dosage tuning. The greater wax moth Galleria mellonella produces a unique defensive protein known as the insect metallopeptidase inhibitor (IMPI), which selectively inhibits some thermolysins from pathogenic bacteria. We determined the ability of IMPI to inhibit aureolysin in vitro and used crystal structures to ascertain its mechanism of action. This revealed that IMPI uses the “standard mechanism”, which has been poorly characterised for MPs in general. Accordingly, we designed a cohort of 12 single and multiple point mutants, the best of which (I57F) inhibited aureolysin with an estimated inhibition constant (Ki) of 346 nM. Given that animals lack thermolysins, our strategy may facilitate the development of safe TPs against staphylococcal infections, including strains resistant to conventional antibiotics.

Details

Language :
English
ISSN :
20010370
Volume :
20
Issue :
534-544
Database :
Directory of Open Access Journals
Journal :
Computational and Structural Biotechnology Journal
Publication Type :
Academic Journal
Accession number :
edsdoj.1e0c32ae4f5848d6a20d93f2fff9494e
Document Type :
article
Full Text :
https://doi.org/10.1016/j.csbj.2022.01.001