An allosteric inhibitor of bacterial Hsp70 chaperone potentiates antibiotics and mitigates resistance Journal Article


Authors: Hosfelt, J.; Richards, A.; Zheng, M.; Adura, C.; Nelson, B.; Yang, A.; Fay, A.; Resager, W.; Ueberheide, B.; Glickman, J. F.; Lupoli, T. J.
Article Title: An allosteric inhibitor of bacterial Hsp70 chaperone potentiates antibiotics and mitigates resistance
Abstract: DnaK is the bacterial homolog of Hsp70, an ATP-dependent chaperone that helps cofactor proteins to catalyze nascent protein folding and salvage misfolded proteins. In the pathogen Mycobacterium tuberculosis, the causative agent of tuberculosis (TB), DnaK and its cofactors are proposed antimycobacterial targets, yet few small-molecule inhibitors or probes exist for these families of proteins. Here, we describe the repurposing of a drug called telaprevir that is able to allosterically inhibit the ATPase activity of DnaK and to prevent chaperone function by mimicking peptide substrates. In mycobacterial cells, telaprevir disrupts DnaK- and cofactor-mediated cellular proteostasis, resulting in enhanced efficacy of aminoglycoside antibiotics and reduced resistance to the frontline TB drug rifampin. Hence, this work contributes to a small but growing collection of protein chaperone inhibitors, and it demonstrates that these molecules disrupt bacterial mechanisms of survival in the presence of different antibiotic classes. © 2021 Elsevier Ltd
Keywords: tuberculosis; resistance; hsp70; cofactors; mycobacteria; chaperones; dnaj; dnak; proteostasis; antibiotic adjuvants
Journal Title: Cell Chemical Biology
Volume: 29
Issue: 5
ISSN: 2451-9456
Publisher: Cell Press  
Date Published: 2022-05-19
Start Page: 854
End Page: 869.e9
Language: English
DOI: 10.1016/j.chembiol.2021.11.004
PUBMED: 34818532
PROVIDER: scopus
PMCID: PMC9124243
DOI/URL:
Notes: Article -- Export Date: 1 June 2022 -- Source: Scopus
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  1. Allison J Fay
    15 Fay