Literature DB >> 34293284

Armeniaspirols inhibit the AAA+ proteases ClpXP and ClpYQ leading to cell division arrest in Gram-positive bacteria.

Puneet Labana1, Mark H Dornan1, Matthew Lafrenière1, Tomasz L Czarny2, Eric D Brown2, John P Pezacki1, Christopher N Boddy3.   

Abstract

Multi-drug-resistant bacteria present an urgent threat to modern medicine, creating a desperate need for antibiotics with new modes of action. As natural products remain an unsurpassed source for clinically viable antibiotic compounds, we investigate the mechanism of action of armeniaspirol. The armeniaspirols are a structurally unique class of Gram-positive antibiotic discovered from Streptomyces armeniacus for which resistance cannot be readily obtained. We show that armeniaspirol inhibits the ATP-dependent proteases ClpXP and ClpYQ in vitro and in the model Gram-positive Bacillus subtilis. This inhibition dysregulates the divisome and elongasome supported by an upregulation of key proteins FtsZ, DivIVA, and MreB inducing cell division arrest. The inhibition of ClpXP and ClpYQ to dysregulate cell division represents a unique antibiotic mechanism of action and armeniaspirol is the only known natural product inhibitor of the coveted anti-virulence target ClpP. Thus, armeniaspirol possesses a promising lead scaffold for antibiotic development with unique pharmacology.
Copyright © 2021 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  ClpXP; ClpYQ; antibiotic; divisome; mechanism of action

Mesh:

Substances:

Year:  2021        PMID: 34293284     DOI: 10.1016/j.chembiol.2021.07.001

Source DB:  PubMed          Journal:  Cell Chem Biol        ISSN: 2451-9448            Impact factor:   8.116


  3 in total

1.  Armeniaspirol analogues with more potent Gram-positive antibiotic activity show enhanced inhibition of the ATP-dependent proteases ClpXP and ClpYQ.

Authors:  Michael G Darnowski; Taylor D Lanosky; Puneet Labana; Jordan T Brazeau-Henrie; Nicholas D Calvert; Mark H Dornan; Claudia Natola; André R Paquette; Adam J Shuhendler; Christopher N Boddy
Journal:  RSC Med Chem       Date:  2022-02-14

2.  Resistance-Guided Mining of Bacterial Genotoxins Defines a Family of DNA Glycosylases.

Authors:  Noah P Bradley; Katherine L Wahl; Jacob L Steenwyk; Antonis Rokas; Brandt F Eichman
Journal:  mBio       Date:  2022-03-21       Impact factor: 7.786

3.  Total synthesis and mechanism of action of the antibiotic armeniaspirol A.

Authors:  Nanaji Arisetti; Hazel L S Fuchs; Janetta Coetzee; Manuel Orozco; Dominik Ruppelt; Armin Bauer; Dominik Heimann; Eric Kuhnert; Satya P Bhamidimarri; Jayesh A Bafna; Bettina Hinkelmann; Konstantin Eckel; Stephan A Sieber; Peter P Müller; Jennifer Herrmann; Rolf Müller; Mathias Winterhalter; Claudia Steinem; Mark Brönstrup
Journal:  Chem Sci       Date:  2021-11-24       Impact factor: 9.825

  3 in total

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