RNA polymerase mutations cause cephalosporin resistance in clinical <i>Neisseria gonorrhoeae</i> isolates.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 32011233.
- Also identified by DOI 10.7554/eLife.51407 and PMC identifier 7012608.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Increasing <i>Neisseria gonorrhoeae</i> resistance to ceftriaxone, the last antibiotic recommended for empiric gonorrhea treatment, poses an urgent public health threat. However, the genetic basis of reduced susceptibility to ceftriaxone is not completely understood: while most ceftriaxone resistance in clinical isolates is caused by target site mutations in <i>penA</i>, some isolates lack these mutations. We show that <i>penA</i>-independent ceftriaxone resistance has evolved multiple times through distinct mutations in <i>rpoB</i> and <i>rpoD</i>. We identify five mutations in these genes that each increase resistance to ceftriaxone, including one mutation that arose independently in two lineages, and show that clinical isolates from multiple lineages are a single nucleotide change from ceftriaxone resistance. These RNA polymerase mutations cause large-scale transcriptional changes without altering susceptibility to other antibiotics, reducing growth rate, or deranging cell morphology. These results underscore the unexpected diversity of pathways to resistance and the importance of continued surveillance for novel resistance mutations.
Medical subject headings
- Cephalosporin Resistance
- DNA-Directed RNA Polymerases
- Mutation, Missense
- Neisseria gonorrhoeae