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Asymmetric Disulfanylbenzamides as Irreversible and Selective Inhibitors of Staphylococcus aureus Sortase A.


ABSTRACT: Staphylococcus aureus is one of the most frequent causes of nosocomial and community-acquired infections, with drug-resistant strains being responsible for tens of thousands of deaths per year. S. aureus sortase A inhibitors are designed to interfere with virulence determinants. We have identified disulfanylbenzamides as a new class of potent inhibitors against sortase A that act by covalent modification of the active-site cysteine. A broad series of derivatives were synthesized to derive structure-activity relationships (SAR). In vitro and in silico methods allowed the experimentally observed binding affinities and selectivities to be rationalized. The most active compounds were found to have single-digit micromolar Ki values and caused up to a 66?% reduction of S. aureus fibrinogen attachment at an effective inhibitor concentration of 10??M. This new molecule class exhibited minimal cytotoxicity, low bacterial growth inhibition and impaired sortase-mediated adherence of S. aureus cells.

SUBMITTER: Barthels F 

PROVIDER: S-EPMC7318353 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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Asymmetric Disulfanylbenzamides as Irreversible and Selective Inhibitors of Staphylococcus aureus Sortase A.

Barthels Fabian F   Marincola Gabriella G   Marciniak Tessa T   Konhäuser Matthias M   Hammerschmidt Stefan S   Bierlmeier Jan J   Distler Ute U   Wich Peter R PR   Tenzer Stefan S   Schwarzer Dirk D   Ziebuhr Wilma W   Schirmeister Tanja T  

ChemMedChem 20200325 10


Staphylococcus aureus is one of the most frequent causes of nosocomial and community-acquired infections, with drug-resistant strains being responsible for tens of thousands of deaths per year. S. aureus sortase A inhibitors are designed to interfere with virulence determinants. We have identified disulfanylbenzamides as a new class of potent inhibitors against sortase A that act by covalent modification of the active-site cysteine. A broad series of derivatives were synthesized to derive struct  ...[more]

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