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Forward Genetic Approaches in Chlamydia trachomatis
Published on: October 23, 2013
Clinical Persistence of Chlamydia trachomatis Sexually Transmitted Strains Involves Novel Mutations in the Functional
Naraporn Somboonna1, Noa Ziklo1, Thomas E Ferrin2
1Center for Immunobiology and Vaccine Development, University of California San Francisco Benioff Children's Hospital Oakland Research Institute, Oakland, California, USA.
Abstract:
Clinical persistence of Chlamydia trachomatis (Ct) sexually transmitted infections (STIs) is a major public health concern. In vitro persistence is known to develop through interferon gamma (IFN-γ) induction of indoleamine 2,3-dioxygenase (IDO), which catabolizes tryptophan, an essential amino acid for Ct replication. The organism can recover from persistence by synthesizing tryptophan from indole, a substrate for the enzyme tryptophan synthase. The majority of Ct strains, except for reference strain B/TW-5/OT, contain an operon comprised of α and β subunits that encode TrpA and TrpB, respectively, and form a functional αββα tetramer. However, trpA mutations in ocular Ct strains, which are responsible for the blinding eye disease known as trachoma, abrogate tryptophan synthesis from indole. We examined serial urogenital samples from a woman who had recurrent Ct infections over 4 years despite antibiotic treatment. The Ct isolates from each infection episode were genome sequenced and analyzed for phenotypic, structural, and functional characteristics. All isolates contained identical mutations in trpA and developed aberrant bodies within intracellular inclusions, visualized by transmission electron microscopy, even when supplemented with indole following IFN-γ treatment. Each isolate displayed an altered αββα structure, could not synthesize tryptophan from indole, and had significantly lower trpBA expression but higher intracellular tryptophan levels compared with those of reference Ct strain F/IC-Cal3. Our data indicate that emergent mutations in the tryptophan operon, which were previously thought to be restricted only to ocular Ct strains, likely resulted in in vivo persistence in the described patient and represents a novel host-pathogen adaptive strategy for survival.IMPORTANCEChlamydia trachomatis (Ct) is the most common sexually transmitted bacterium with more than 131 million cases occurring annually worldwide. Ct infections are often asymptomatic, persisting for many years despite treatment. In vitro recovery from persistence occurs when indole is utilized by the organism's tryptophan synthase to synthesize tryptophan, an essential amino acid for replication. Ocular but not urogenital Ct strains contain mutations in the synthase that abrogate tryptophan synthesis. Here, we discovered that the genomes of serial isolates from a woman with recurrent, treated Ct STIs over many years were identical with a novel synthase mutation. This likely allowed long-term in vivo persistence where active infection resumed only when tryptophan became available. Our findings indicate an emerging adaptive host-pathogen evolutionary strategy for survival in the urogenital tract that will prompt the field to further explore chlamydial persistence, evaluate the genetics of mutant Ct strains and fitness within the host, and their implications for disease pathogenesis.
Insights
Chlamydia trachomatis (Ct) can persist in the body due to mutations in its tryptophan synthesis pathway, previously only seen in eye infections. This discovery reveals a new survival strategy for this common sexually transmitted infection.
Area of Science:
- Microbiology
- Infectious Diseases
- Genetics
Background:
- Chlamydia trachomatis (Ct) persistence is a significant public health issue, often linked to tryptophan metabolism.
- In vitro, Ct recovers from persistence by synthesizing tryptophan from indole using tryptophan synthase.
- Mutations in the trpA gene of ocular Ct strains prevent tryptophan synthesis from indole.
Purpose of the Study:
- To investigate the mechanisms of recurrent Chlamydia trachomatis infections in a patient despite antibiotic treatment.
- To analyze the genetic and functional characteristics of serial Ct isolates from a persistent infection.
- To understand the role of tryptophan operon mutations in in vivo Ct persistence.
Main Methods:
- Genome sequencing of serial Ct isolates from clinical samples.
- Transmission electron microscopy to visualize bacterial morphology.
- Phenotypic and functional analysis of tryptophan synthesis capabilities.
Main Results:
- All serial Ct isolates from the patient harbored identical trpA mutations, previously associated with ocular strains.
- These isolates showed impaired tryptophan synthesis from indole and altered cell structures.
- The mutations likely enabled long-term in vivo persistence, with infection resuming upon tryptophan availability.
Conclusions:
- Emergent trpA mutations in urogenital Ct strains can lead to in vivo persistence, representing a novel host-pathogen adaptive strategy.
- This finding expands our understanding of chlamydial persistence beyond in vitro models.
- Further research is needed on the genetics, fitness, and pathogenesis of these mutant Ct strains.
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Sexually Transmitted Infections
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Operon Model