Virtual Screening of Peptide and Peptidomimetic Fragments Targeted to Inhibit Bacterial Dithiol Oxidase DsbA.

Antibacterial drugs with novel scaffolds and new mechanisms of action are desperately needed to address the growing problem of antibiotic resistance. The periplasmic oxidative folding system in Gram-negative bacteria represents a possible target for anti-virulence antibacterials. By targeting virule...

Full description

Bibliographic Details
Main Authors: Wilko Duprez, Prabhakar Bachu, Martin J Stoermer, Stephanie Tay, Róisín M McMahon, David P Fairlie, Jennifer L Martin
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4520593?pdf=render
id doaj-2f95337ff29749fc959b5c5d047c8662
record_format Article
spelling doaj-2f95337ff29749fc959b5c5d047c86622020-11-25T02:13:36ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01107e013380510.1371/journal.pone.0133805Virtual Screening of Peptide and Peptidomimetic Fragments Targeted to Inhibit Bacterial Dithiol Oxidase DsbA.Wilko DuprezPrabhakar BachuMartin J StoermerStephanie TayRóisín M McMahonDavid P FairlieJennifer L MartinAntibacterial drugs with novel scaffolds and new mechanisms of action are desperately needed to address the growing problem of antibiotic resistance. The periplasmic oxidative folding system in Gram-negative bacteria represents a possible target for anti-virulence antibacterials. By targeting virulence rather than viability, development of resistance and side effects (through killing host native microbiota) might be minimized. Here, we undertook the design of peptidomimetic inhibitors targeting the interaction between the two key enzymes of oxidative folding, DsbA and DsbB, with the ultimate goal of preventing virulence factor assembly. Structures of DsbB--or peptides--complexed with DsbA revealed key interactions with the DsbA active site cysteine, and with a hydrophobic groove adjacent to the active site. The present work aimed to discover peptidomimetics that target the hydrophobic groove to generate non-covalent DsbA inhibitors. The previously reported structure of a Proteus mirabilis DsbA active site cysteine mutant, in a non-covalent complex with the heptapeptide PWATCDS, was used as an in silico template for virtual screening of a peptidomimetic fragment library. The highest scoring fragment compound and nine derivatives were synthesized and evaluated for DsbA binding and inhibition. These experiments discovered peptidomimetic fragments with inhibitory activity at millimolar concentrations. Although only weakly potent relative to larger covalent peptide inhibitors that interact through the active site cysteine, these fragments offer new opportunities as templates to build non-covalent inhibitors. The results suggest that non-covalent peptidomimetics may need to interact with sites beyond the hydrophobic groove in order to produce potent DsbA inhibitors.http://europepmc.org/articles/PMC4520593?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Wilko Duprez
Prabhakar Bachu
Martin J Stoermer
Stephanie Tay
Róisín M McMahon
David P Fairlie
Jennifer L Martin
spellingShingle Wilko Duprez
Prabhakar Bachu
Martin J Stoermer
Stephanie Tay
Róisín M McMahon
David P Fairlie
Jennifer L Martin
Virtual Screening of Peptide and Peptidomimetic Fragments Targeted to Inhibit Bacterial Dithiol Oxidase DsbA.
PLoS ONE
author_facet Wilko Duprez
Prabhakar Bachu
Martin J Stoermer
Stephanie Tay
Róisín M McMahon
David P Fairlie
Jennifer L Martin
author_sort Wilko Duprez
title Virtual Screening of Peptide and Peptidomimetic Fragments Targeted to Inhibit Bacterial Dithiol Oxidase DsbA.
title_short Virtual Screening of Peptide and Peptidomimetic Fragments Targeted to Inhibit Bacterial Dithiol Oxidase DsbA.
title_full Virtual Screening of Peptide and Peptidomimetic Fragments Targeted to Inhibit Bacterial Dithiol Oxidase DsbA.
title_fullStr Virtual Screening of Peptide and Peptidomimetic Fragments Targeted to Inhibit Bacterial Dithiol Oxidase DsbA.
title_full_unstemmed Virtual Screening of Peptide and Peptidomimetic Fragments Targeted to Inhibit Bacterial Dithiol Oxidase DsbA.
title_sort virtual screening of peptide and peptidomimetic fragments targeted to inhibit bacterial dithiol oxidase dsba.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Antibacterial drugs with novel scaffolds and new mechanisms of action are desperately needed to address the growing problem of antibiotic resistance. The periplasmic oxidative folding system in Gram-negative bacteria represents a possible target for anti-virulence antibacterials. By targeting virulence rather than viability, development of resistance and side effects (through killing host native microbiota) might be minimized. Here, we undertook the design of peptidomimetic inhibitors targeting the interaction between the two key enzymes of oxidative folding, DsbA and DsbB, with the ultimate goal of preventing virulence factor assembly. Structures of DsbB--or peptides--complexed with DsbA revealed key interactions with the DsbA active site cysteine, and with a hydrophobic groove adjacent to the active site. The present work aimed to discover peptidomimetics that target the hydrophobic groove to generate non-covalent DsbA inhibitors. The previously reported structure of a Proteus mirabilis DsbA active site cysteine mutant, in a non-covalent complex with the heptapeptide PWATCDS, was used as an in silico template for virtual screening of a peptidomimetic fragment library. The highest scoring fragment compound and nine derivatives were synthesized and evaluated for DsbA binding and inhibition. These experiments discovered peptidomimetic fragments with inhibitory activity at millimolar concentrations. Although only weakly potent relative to larger covalent peptide inhibitors that interact through the active site cysteine, these fragments offer new opportunities as templates to build non-covalent inhibitors. The results suggest that non-covalent peptidomimetics may need to interact with sites beyond the hydrophobic groove in order to produce potent DsbA inhibitors.
url http://europepmc.org/articles/PMC4520593?pdf=render
work_keys_str_mv AT wilkoduprez virtualscreeningofpeptideandpeptidomimeticfragmentstargetedtoinhibitbacterialdithioloxidasedsba
AT prabhakarbachu virtualscreeningofpeptideandpeptidomimeticfragmentstargetedtoinhibitbacterialdithioloxidasedsba
AT martinjstoermer virtualscreeningofpeptideandpeptidomimeticfragmentstargetedtoinhibitbacterialdithioloxidasedsba
AT stephanietay virtualscreeningofpeptideandpeptidomimeticfragmentstargetedtoinhibitbacterialdithioloxidasedsba
AT roisinmmcmahon virtualscreeningofpeptideandpeptidomimeticfragmentstargetedtoinhibitbacterialdithioloxidasedsba
AT davidpfairlie virtualscreeningofpeptideandpeptidomimeticfragmentstargetedtoinhibitbacterialdithioloxidasedsba
AT jenniferlmartin virtualscreeningofpeptideandpeptidomimeticfragmentstargetedtoinhibitbacterialdithioloxidasedsba
_version_ 1724904182448652288