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Targeting host deoxycytidine kinase mitigates Staphylococcus aureus abscess formation.


ABSTRACT: Host-directed therapy (HDT) is an emerging approach to overcome antimicrobial resistance in pathogenic microorganisms. Specifically, HDT targets host-encoded factors required for pathogen replication and survival without interfering with microbial growth or metabolism, thereby eliminating the risk of resistance development. By applying HDT and a drug repurposing approach, we demonstrate that (R)-DI-87, a clinical-stage anti-cancer drug and potent inhibitor of mammalian deoxycytidine kinase (dCK), mitigates Staphylococcus aureus abscess formation in organ tissues upon invasive bloodstream infection. Mechanistically, (R)-DI-87 shields phagocytes from staphylococcal death-effector deoxyribonucleosides that target dCK and the mammalian purine salvage pathway-apoptosis axis. In this manner, (R)-DI-87-mediated protection of immune cells amplifies macrophage infiltration into deep-seated abscesses, a phenomenon coupled with enhanced pathogen control, ameliorated immunopathology, and reduced disease severity. Thus, pharmaceutical blockade of dCK represents an advanced anti-infective intervention strategy against which staphylococci cannot develop resistance and may help to fight fatal infectious diseases in hospitalized patients.

SUBMITTER: Winstel V 

PROVIDER: S-EPMC10462150 | biostudies-literature | 2023 Dec

REPOSITORIES: biostudies-literature

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Targeting host deoxycytidine kinase mitigates <i>Staphylococcus aureus</i> abscess formation.

Winstel Volker V   Abt Evan R ER   Le Thuc M TM   Radu Caius G CG  

bioRxiv : the preprint server for biology 20231208


Host-directed therapy (HDT) is an emerging approach to overcome antimicrobial resistance in pathogenic microorganisms. Specifically, HDT targets host-encoded factors required for pathogen replication and survival without interfering with microbial growth or metabolism, thereby eliminating the risk of resistance development. By applying HDT and a drug repurposing approach, we demonstrate that (<i>R</i>)-DI-87, a clinical-stage anti-cancer drug and potent inhibitor of mammalian deoxycytidine kinas  ...[more]

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