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Updated: Dec 30, 2025

Markerless Gene Deletion by Floxed Cassette Allelic Exchange Mutagenesis in Chlamydia trachomatis
Published on: January 30, 2020
Inhibition of tRNA Synthetases Induces Persistence in Chlamydia
Nathan D Hatch1, Scot P Ouellette2
1Department of Pathology and Microbiology, College of Medicine, University of Nebraska Medical Center, Omaha, Nebraska, USA.
Abstract:
Chlamydia trachomatis is the leading cause of bacterial sexually transmitted infections, and Chlamydia pneumoniae causes community-acquired respiratory infections. In vivo, the host immune system will release gamma interferon (IFN-γ) to combat infection. IFN-γ activates human cells to produce the tryptophan (Trp)-catabolizing enzyme indoleamine 2,3-dioxygenase (IDO). Consequently, there is a reduction in cytosolic Trp in IFN-γ-activated host cells. In evolving to obligate intracellular dependence, Chlamydia has significantly reduced its genome size and content, as it relies on the host cell for various nutrients. Importantly, C. trachomatis and C. pneumoniae are Trp auxotrophs and are starved for this essential nutrient when the human host cell is exposed to IFN-γ. To survive this, chlamydiae enter an alternative developmental state referred to as persistence. Chlamydial persistence is characterized by a halt in the division cycle, aberrant morphology, and, in the case of IFN-γ-induced persistence, Trp codon-dependent changes in transcription. We hypothesize that these changes in transcription are dependent on the particular amino acid starvation state. To investigate the chlamydial response mechanisms acting when other amino acids become limiting, we tested the efficacy of prokaryote-specific tRNA synthetase inhibitors, indolmycin and AN3365, to mimic starvation of Trp and leucine, respectively. We show that these drugs block chlamydial growth and induce changes in morphology and transcription consistent with persistence. Importantly, growth inhibition was reversed when the compounds were removed from the medium. With these data, we find that indolmycin and AN3365 are valid tools that can be used to mimic the persistent state independently of IFN-γ.
Insights
Chlamydia bacteria enter a persistent state when starved of tryptophan, triggered by host immune responses. Novel drug treatments can mimic this persistence, offering new research tools.
Area of Science:
- Microbiology
- Immunology
- Molecular Biology
Background:
- Chlamydia trachomatis and Chlamydia pneumoniae cause significant human infections.
- Host gamma interferon (IFN-γ) induces tryptophan (Trp) starvation in host cells, a key factor in Chlamydia persistence.
- Chlamydiae are auxotrophs, relying on host cells for essential nutrients like Trp.
Purpose of the Study:
- To investigate Chlamydia's response mechanisms to amino acid starvation.
- To explore the use of specific inhibitors to mimic Chlamydia persistence.
- To understand the role of Trp starvation in Chlamydia transcriptional changes.
Main Methods:
- Utilized prokaryote-specific tRNA synthetase inhibitors, indolmycin and AN3365, to mimic Trp and leucine starvation.
- Observed effects on Chlamydia growth, morphology, and transcription.
- Assessed the reversibility of drug-induced effects.
Main Results:
- Indolmycin and AN3365 effectively inhibited Chlamydia growth.
- These inhibitors induced morphological and transcriptional changes characteristic of persistence.
- The observed effects were reversible upon compound removal, indicating a non-lethal induction of persistence.
Conclusions:
- Indolmycin and AN3365 are effective tools for inducing Chlamydia persistence independently of IFN-γ.
- These compounds provide a valuable method to study Chlamydia persistence mechanisms.
- The study highlights the link between specific amino acid starvation and Chlamydia developmental changes.
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