Structural basis of topoisomerase targeting by delafloxacin

S Shabir Najmudin X Xiao-Su Pan B Beijia Wang L Lata Govada N Naomi E. Chayen N Noelia Rubio M Milo S. P. Shaffer H Henry S. Rzepa L L. Mark Fisher M Mark R. Sanderson

Abstract

Abstract Delafloxacin is a potent anionic fluoroquinolone approved for the treatment of respiratory infections that acts by trapping the DNA cleavage complexes of bacterial topoisomerase IV and gyrase. Its N-1-pyridinyl-, C-7-azetidinyl- and C-8-chlorine substituents confer enhanced antibiotic activity against bacteria resistant to other fluoroquinolones, but its mode of action is unclear. Here we present the X-ray crystal structures of a delafloxacin-DNA cleavage complex obtained by co-crystallization with Streptococcus pneumoniae topo IV using a graphene nucleant and solved at 2.0 and 2.4 Å resolution. The two Mg2+-chelated delafloxacin molecules intercalated at the DNA cleavage site are bound in an unusual conformation involving interacting out-of-plane N-1-aromatic- and C-8-chlorine- substituents. The unprecedented resolution allows comprehensive imaging of water-metal ion links integrating enzyme and DNA through drug-bound and active-site Mg2+ ions plus the discovery of enzyme-bound K+ ions. Our studies on delafloxacin action suggest that intrinsic target affinity contributes to its activity against quinolone-resistant bacteria.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 01, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

S

Shabir Najmudin

X

Xiao-Su Pan

B

Beijia Wang

L

Lata Govada

N

Naomi E. Chayen

N

Noelia Rubio

M

Milo S. P. Shaffer

H

Henry S. Rzepa

L

L. Mark Fisher

M

Mark R. Sanderson