Uncovering nitroxoline activity spectrum, mode of action and resistance across Gram-negative bacteria

E Elisabetta Cacace M Manuela Tietgen M Meike Steinhauer A André Mateus T Tilman G. Schultze M Marina Eckermann M Marco Galardini V Vallo Varik A Alexandra Koumoutsi J Jordan J. Parzeller F Federico Corona A Askarbek Orakov M Michael Knopp A Amber Brauer-Nikonow P Peer Bork C Celia V. Romao M Michael Zimmermann P Peter Cloetens M Mikhail M. Savitski A Athanasios Typas S Stephan Göttig

Abstract

Abstract Nitroxoline is a bacteriostatic quinoline antibiotic, known to form complexes with metals. Its clinical indications are limited to uncomplicated urinary tract infections, with a susceptibility breakpoint only available for Escherichia coli . Here, we test > 1000 clinical isolates and demonstrate a much broader activity spectrum and species-specific bactericidal activity, including Gram-negative bacteria for which therapeutic options are limited due to multidrug resistance. By combining genetic and proteomic approaches with direct measurement of intracellular metals, we show that nitroxoline acts as a metallophore, inducing copper and zinc intoxication in bacterial cells. The compound displays additional effects on bacterial physiology, including alteration of outer membrane integrity, which underpins nitroxoline’s synergies with large-scaffold antibiotics and resensitization of colistin-resistant Enterobacteriaceae in vitro and in vivo. Furthermore, we identify conserved resistance mechanisms across bacterial species, often leading to nitroxoline efflux.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 22, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (21)

E

Elisabetta Cacace

M

Manuela Tietgen

M

Meike Steinhauer

A

André Mateus

T

Tilman G. Schultze

M

Marina Eckermann

M

Marco Galardini

V

Vallo Varik

A

Alexandra Koumoutsi

J

Jordan J. Parzeller

F

Federico Corona

A

Askarbek Orakov

M

Michael Knopp

A

Amber Brauer-Nikonow

P

Peer Bork

C

Celia V. Romao

M

Michael Zimmermann

P

Peter Cloetens

M

Mikhail M. Savitski

A

Athanasios Typas

S

Stephan Göttig