9P0P image
Deposition Date 2025-06-07
Release Date 2025-07-16
Last Version Date 2026-06-17
Entry Detail
PDB ID:
9P0P
Keywords:
Title:
Crystal structure of 23S rRNA methyltransferase Cfr, apoenzyme
Biological Source:
Source Organism(s):
Expression System(s):
Method Details:
Experimental Method:
Resolution:
2.50 Å
R-Value Free:
0.30
R-Value Work:
0.25
R-Value Observed:
0.25
Space Group:
P 21 21 21
Macromolecular Entities
Polymer Type:polypeptide(L)
Molecule:Ribosomal RNA large subunit m
Gene (Uniprot):cfr
Mutagens:N2K,N4G,F15W,I26M,S39T,K45T,V46N,L50Q,L68I,K86D,N87G,N94I,S172V,I200L,H243Y,L246K,N269K,H323N
Chain IDs:A
Chain Length:349
Number of Molecules:1
Biological Source:Staphylococcus aureus
Primary Citation
Structural Analysis of 23S rRNA Methylating Enzyme Cfr Reveals RNA-Binding Determinants for Methylation Regiospecificity and Antibiotic Resistance.
Acs Infect Dis. 12 653 664 (2026)
PMID: 41615325 DOI: 10.1021/acsinfecdis.5c00828

Abstact

The 23S rRNA methylating enzyme Cfr, found in pathogens including Staphylococcus aureus, Clostridium difficile, Escherichia coli, and Klebsiella pneumoniae, confers resistance to phenicols, lincosamides, oxazolidinones (including linezolid), pleuromutilins, and streptogramins A (the PhLOPS(A) phenotype). Cfr catalyzes methylation of the C8 position of the A2503 base in 23S rRNA, the recognition site of the above antibiotic classes. Along with the RlmN housekeeping enzyme, Cfr can also promote methylation of the C2 position of the same base. The molecular and structural basis of Cfr's dual substrate specificity is not known, which hinders our ability to design Cfr-targeting inhibitors necessary to curb PhLOPS(A) resistance. Here, we present the first crystal structure of Cfr and a detailed analysis of its possible interactions with rRNA. Using structure-guided mutagenesis, mass spectrometry analysis of in cellulo 23S rRNA methylated species, and in cellulo resistance studies, we identify the key amino acids essential for Cfr methylation and multidrug resistance activity. In particular, we found that Cfr's Q329 residue is important for C8-specific methylation. These data provide a framework for further studies of the biochemistry, structure, and inhibition of this important resistance determinant.

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