Structural mechanism of FusB-mediated rescue from fusidic acid inhibition of protein synthesis

A Adrián González-López X Xueliang Ge D Daniel S. D. Larsson C Carina Sihlbom Wallem S Suparna Sanyal M Maria Selmer

Abstract

Abstract The antibiotic resistance protein FusB rescues protein synthesis from inhibition by fusidic acid (FA), which locks elongation factor G (EF-G) to the ribosome after GTP hydrolysis. Here, we present time-resolved single–particle cryo-EM structures explaining the mechanism of FusB-mediated rescue. FusB binds to the FA-trapped EF-G on the ribosome, causing large-scale conformational changes of EF-G that break interactions with the ribosome, tRNA, and mRNA. This leads to dissociation of EF-G from the ribosome, followed by FA release. We also observe two independent binding sites of FusB on the classical-state ribosome, overlapping with the binding site of EF-G to each of the ribosomal subunits, yet not inhibiting tRNA delivery. The affinity of FusB to the ribosome and the concentration of FusB in S. aureus during FusB-mediated resistance support that direct binding of FusB to ribosomes could occur in the cell. Our results reveal an intricate resistance mechanism involving specific interactions of FusB with both EF-G and the ribosome, and a non-canonical release pathway of EF-G.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 18, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (6)

A

Adrián González-López

X

Xueliang Ge

D

Daniel S. D. Larsson

C

Carina Sihlbom Wallem

S

Suparna Sanyal

M

Maria Selmer